Gene_locus Report for: human-ABHD18 Homo sapiens (Human) ABHD18 C4orf29 CD029 hypothetical protein
Relationship
(Below N is a link to NCBI taxonomic web page and E link to ESTHER at designed phylum.) > cellular organisms: N E > Eukaryota: N E > Opisthokonta: N E > Metazoa: N E > Eumetazoa: N E > Bilateria: N E > Deuterostomia: N E > Chordata: N E > Craniata: N E > Vertebrata: N E > Gnathostomata: N E > Teleostomi: N E > Euteleostomi: N E > Sarcopterygii: N E > Dipnotetrapodomorpha: N E > Tetrapoda: N E > Amniota: N E > Mammalia: N E > Theria: N E > Eutheria: N E > Boreoeutheria: N E > Euarchontoglires: N E > Primates: N E > Haplorrhini: N E > Simiiformes: N E > Catarrhini: N E > Hominoidea: N E > Hominidae: N E > Homininae: N E > Homo: N E > Homo sapiens: N E
A85-EsteraseD-FGH :
human-ESD Homo sapiens (Human) esterase D (EC 3.1.1.1) formylglutathione hydrolase.
ABHD6-Lip :
human-ABHD6 Homo sapiens (Human) ABHD6 Monoacylglycerol lipase EC: 3.1.1.23.
ABHD8 :
human-ABHD8 Homo sapiens (Human) Abhydrolase domain containing 8 (ABHD8) cDNA FLJ11743 fis, clone HEMBA1005517 .
ABHD10 :
human-ABHD10 Homo sapiens (Human) ABHDA ABHD10 Abhydrolase domain-containing protein 10, Mycophenolic acid acyl-glucuronide esterase, mitochondrial .
ABHD11-Acetyl_transferase :
human-ABHD11 Homo sapiens (Human) (EC 3.3.2.3) Abhydrolase domain-containing protein 11 williams-beuren syndrome critical region protein 21 .
ABHD12-PHARC :
human-ABHD12 Homo sapiens (Human) abhydrolase domain-containing protein 12. Protein C20orf22, flj90542, CT022, 2-arachidonoylglycerol hydrolase, Monoacylglycerol lipase ,
human-ABHD12B Homo sapiens (Human) Abhydrolase domain-containing protein 12B ABHD12B protein c14orf29 .
ABHD13-BEM46 :
human-ABHD13 Homo sapiens (Human) C13orf6 Q7L211 ABHDD_HUMAN ABHD13 Abhydrolase domain-containing protein 13 .
ABHD16 :
human-ABHD16A Homo sapiens (Human) Abhydrolase domain-containing protein 16A BAT5 (HLA-B-associated transcript 5) (NG26 protein) (G5) (PP199) ,
human-ABHD16B Homo sapiens (Human) ABHD16B PS-PLA1 lipase activity .
ABHD17-depalmitoylase :
human-ABHD17A Homo sapiens (Human) Abhydrolase domain-containing protein FAM108A1, C19orf27 ABHD17A ,
human-ABHD17B Homo sapiens (Human) CGI-67 C9orf77 FAM108B1 protein Abhydrolase domain-containing protein FAM108B1 ,
human-ABHD17C Homo sapiens (Human) Abhydrolase domain-containing protein FAM108C1 Q6PCB6 F108C_HUMAN .
abh_upf0017 :
human-ABHD1 Homo sapiens (Human) lung alpha/beta hydrolase 1 ,
human-ABHD2 Homo sapiens (Human) Monoacylglycerol lipase ABHD2 LABH2 LBH2 protein phps1-2 ,
human-ABHD3 Homo sapiens (Human) hypothetical 49.3 kda protein ,
human-ABHD15 Homo sapiens (Human) ABH15 Abhydrolase domain-containing protein 15 .
ACHE :
human-ACHE Homo sapiens (Human) acetylcholinesterase.
Acidic_Lipase :
human-LIPA Homo sapiens (Human) lysosomal acid lipase LICH_HUMAN gene LIPA, Lysosomal acid lipase/cholesteryl ester hydrolase (EC:3.1.1.13) LAL cholesterol esterase (wolman disease) Sebelipase,
human-LIPF Homo sapiens (Human) human gastric lipase,
human-LIPJ Homo sapiens (Human) Lipase member J lipase-like, ab-hydrolase domain containing 1 ,
human-LIPK Homo sapiens (Human) Lipase member K lipase-like, ab-hydrolase domain containing 2 LIPL2 ,
human-LIPM Homo sapiens (Human) LIPM LIPL3 ba304i5.1 ,
human-LIPN Homo sapiens (Human) lipase-like, Lipase-like abhydrolase domain-containing protein 4 .
ACPH_Peptidase_S9 :
human-APEH Homo sapiens (Human) acylamino acid-releasing enzyme APH APEH .
Acyl-CoA_Thioesterase :
human-ACOT1 Homo sapiens (Human) Inducible cytosolic acyl-coenzyme A thioester hydrolase Long chain Acyl-CoA hydrolase) (cte-i) (cte-ib) ,
human-ACOT2 Homo sapiens (Human) peroxisomal long-chain Acyl-CoA thioesterase 2 (zap128) (protein for mgc:3983) mitochondrial (EC 3.1.2.2) CTE-1a,
human-ACOT4 Homo sapiens (Human) Q8N9L9 Acyl-coenzyme A thioesterase 4, inducible (EC 3.1.2.2),
human-ACOT6 Homo sapiens (Human) Acyl-CoA thioesterase 6 (EC 3.1.2.2) ,
human-BAAT Homo sapiens (Human) bile acid CoA: amino acid n-acyltransferase (EC 3.1.2.2) .
Arb2_FAM172A :
human-f172a Homo sapiens (Human).Cotranscriptional regulator Protein FAM172A .
Arylacetamide_deacetylase :
human-AADAC Homo sapiens (Human) arylacetamide deacetylase ,
human-AADACL2 Homo sapiens (Human) similar to arylacetamide deacetylase (aadac) ,
human-AADACL3 Homo sapiens (Human) AADACL3 arylacetamide deacetylase-like 3 ADCL3 ,
human-AADACL4 Homo sapiens (Human) Arylacetamide deacetylase-like 4 ,
human-NCEH1 Homo sapiens (Human) NCEH1 KIAA1363 AADACL1 neutral cholesterol ester hydrolase 1 .
BCHE :
human-BCHE Homo sapiens (Human) butyrylcholinesterase.
Carboxypeptidase_S10 :
human-CPVL Homo sapiens (Human) carboxypeptidase, vitellogenic-like CP-Mac ou CPVL carboxypeptidase WUG ,
human-CTSA Homo sapiens (Human) protective protein associated with lysosomal beta-galactosidase ppt2 protein CTSA Cathepsin A, PPGB,
human-SCPEP1 Homo sapiens (Human) serine Retinoid-inducible serine carboxypeptidase RISC SCP1 (EC 3.4.16.-) .
Carb_B_Chordata :
human-CES1 Homo sapiens (Human) carboxylesterase CES1 hCE1 & for monocyte/macrophage serine-esterase 1 egasyn,
human-CES2 Homo sapiens (Human) carboxylesterase hCE-2,iCE, hiCE, CES2 gene cDNA FLJ76104 Cocaine esterase ,
human-CES3 Homo sapiens (Human) Carboxylesterase 3 (Brain) Liver carboxylesterase 31 homolog ,
human-CES4A Homo sapiens (Human) Carboxylesterase 4A Carboxylesterase 8 ,
human-CES5A Homo sapiens (Human) est5a CES7 Cauxin Carboxylesterase-like urinary excreted protein homolog .
CGI-58_ABHD5_ABHD4 :
human-ABHD4 Homo sapiens (Human) abhydrolase domain-containing protein 4 FLJ12816 similar to 2-hydroxymuconic semialdehyde hydrolase (EC 3.1.1.-) ,
human-ABHD5 Homo sapiens (Human) 39.1 kDa Comparative gene identification 58 (CGI-58)/Alpha Beta Hydrolase Domain 5 (ABHD5).
Cholesterol_esterase :
human-CEL Homo sapiens (Human) bile-salt-activated lipase, BSSL BAL CEL CEH carboxyl ester lipase chr 9.
CIB-CCG1-interacting-factor-B :
human-ABHD14A Homo sapiens (Human) Abhydrolase domain-containing protein 14A srsq1913 ,
human-CIB Homo sapiens (Human) Ccg1/TafII250-Interacting Factor B CIB MGC15429 Abhydrolase domain-containing protein 14B ABHD14B. lysine deacetylase.
CMBL :
human-CMBL Homo sapiens (Human) Carboxymethylenebutenolidase homolog .
DPP4N_Peptidase_S9 :
human-DPP4 Homo sapiens (Human) dipeptidyl peptidase IV (DPP4), T-cell activation antigen CD26,
human-DPP6 Homo sapiens (Human) (dipeptidylpeptidase VI) (dppx),
human-DPP8 Homo sapiens (Human) dipeptidyl peptidase 8 (DPP8),
human-DPP9 Homo sapiens (Human) dipeptidyl peptidase 9 DPP9 DPRP2,
human-DPP10 Homo sapiens (Human) DPP-10 Dipeptidyl peptidase IV-related protein-3 KIAA1492 protein (fragment),
human-FAP Homo sapiens (Human) fibroblast activation protein alpha FAPalpha, integral membrane serine protease seprase FAPA, FAP, SEPR.
Duf_676 :
human-FAM135A Homo sapiens (Human) F135A DKFZp781H2319 FLJ20176 fis KIAA1411 previously human-F135A ,
human-FAM135B Homo sapiens (Human) F135B loc51059 c8orfk32 protein .
Duf_726 :
human-TMCO4 Homo sapiens (Human) Transmembrane and coiled-coil domain-containing protein 4 .
Duf_829 :
human-TMEM53 Homo sapiens (Human) Transmembrane protein 53, FLJ22353, NET4 .
Epoxide_hydrolase :
human-EPHX1 Homo sapiens (Human) microsomal epoxide hydrolase HYEP mEH, epoxide hydratase EPHX1 ,
human-EPHX2 Homo sapiens (Human) epoxide hydrolase 2, Bifunctional epoxide hydrolase 2 cytosolic (EPHX2) (EC 3.3.2.3) Lipid-phosphate phosphatase (EC 3.1.3.76),
human-EPHX3 Homo sapiens (Human) Epoxide hydrolase 3 (EPHX3) Abhydrolase domain-containing protein 9 (ABHD9) FLJ22408 ,
human-EPHX4 Homo sapiens (Human) Epoxide hydrolase 4 EPHX4 ABHD7 EPHXRP Abhydrolase domain-containing protein 7 .
FSH1 :
human-OVCA2 Homo sapiens (Human) Candidate tumor suppressor in ovarian cancer .
Hepatic_Lipase :
human-LIPC Homo sapiens (Human) LIPC hepatic triacylglycerol lipase HTGL .
Hormone-sensitive_lipase_like :
human-LIPE Human mRNA (Human) hormone sensitive lipase HSL .
Hydrolase_RBBP9_YdeN :
human-RBBP9 Homo sapiens (Human) Retinoblastoma-binding protein 9 and 10 (rbbp-10) (b5t overexpressed gene protein) (bog protein).
Kynurenine-formamidase :
human-AFMID Homo sapiens (Human) Kynurenine formamidase .
LIDHydrolase :
human-LDAH Homo sapiens (Human) lipid droplet-associated hydrolase (LDAH) C2orf43 .
Lipase_3 :
human-DAGLA Homo sapiens (Human) DAGLA Sn1-specific diacylglycerol lipase alpha DGL-alpha, neural stem cell-derived dendrite regulator KIAA0659 ,
human-DAGLB Homo sapiens (Human) DAGLB Sn1-specific diacylglycerol lipase beta kccr13l FLJ36639 .
Lipoprotein_Lipase :
human-LIPG Homo sapiens (Human) endothelial lipase LIPE_HUMAN flj43354 ,
human-LPL Homo sapiens (Human) Lipoprotein lipase LPL, LIPD.
LYsophospholipase_carboxylesterase :
human-LYPLA1 Homo sapiens (Human) lysophospholipase I (LYPLA1) APT1, acyl-protein thioesterase 1 S-depalmitoylase,
human-LYPLA2 Homo sapiens (Human) acyl-protein thioesterase dJ886K2.4 lysophospholipase II APT2,
human-LYPLAL1 Homo sapiens (Human) LYPLAL1 26.3 kda protein lysophospholipase-like 1.
Maspardin-ACP33-SPG21_like :
human-SPG21 Homo sapiens (Human) Maspardin spg21 acid cluster protein 33 ACP33 sbm-019 (gl010)flj24010 Maspardin .
MEST-like :
human-MEST Homo sapiens (Human) MEST mesoderm-specific transcript .
Monoglyceridelipase_lysophospholip :
human-MGLL Homo sapiens (Human) Monoglyceride lipase (MAGL) lysophospholipase homolog.
Ndr_family :
human-NDRG1 Homo sapiens (Human) N-myc downstream-regulated gene 1 protein (cap43,rit42, ndr1 DRG1, PROXY1, RTP, TDD5),
human-NDRG2 Homo sapiens (Human) ndrg2 protein N-myc downstream-regulated gene 2 protein (syld709613 protein) ndr1-related protein 2,
human-NDRG3 Homo sapiens (Human) ndrg3 protein ndr1-related development protein ndr3 otthump00000030883 otthump00000030882,
human-NDRG4 Homo sapiens (Human) NDRG4, N-myc downstream-regulated gene 4 protein (smap-8) flj42011 flj16174 flj44611 .
Neuroligin :
human-NLGN1 Homo sapiens (Human) Neuroligin 1 KIAA1070 protein,
human-NLGN2 Homo sapiens (Human) neuroligin 2 (KIAA1366),
human-NLGN3 Homo sapiens (Human) Neuroligin 3 KIAA1480 ,
human-NLGN4X Homo sapiens (Human) Neuroligin-4, X-linked (HNLX) Neuroligin4 KIAA0951,
human-NLGN4Y Homo sapiens (Human) Neuroligin-4, Y-linked precursor (Neuroligin Y) KIAA0951 .
NLS3-Tex30 :
human-KANSL3 Homo sapiens (Human) KAT8 regulatory NSL complex subunit 3, Testis development protein PRTD, KIAA1310, PRTD, SI1, FLJ10081, NSL3, Rcd1 ,
human-TEX30 Homo sapiens (Human) testis expressed 30 C13orf27 chromosome 13 open reading frame 27 .
PAF-Acetylhydrolase :
human-PAFAH2 Homo sapiens (Human) (EC 3.1.1.47) platelet-activating factor acetylhydrolase 2, cytoplasmic (serine dependent phospholipase a2) (hsd-pla2), PAFAH2, PAFA2 PAF-AH ,
human-PLA2G7 Homo sapiens (Human) plasma PAF acetylhydrolase Phospholipase A2 groupe 7 PLA2G7 PAFAH PAF-AH Lp-PLA(2).
Palmitoyl-protein_thioesterase :
human-PPT1 Homo sapiens (Human) palmitoyl-protein thioesterase (PPT),
human-PPT2 Homo sapiens (Human) 34.9 kda protein (palmitoyl-protein thioesterase-2).
Pancreatic_lipase :
human-PNLIP Homo sapiens (Human) triacylglycerol lipase (pancreatic lipase),
human-PNLIPRP1 Homo sapiens (Human) pancreatic lipase related protein 1,
human-PNLIPRP2 Homo sapiens (Human) pancreatic lipase related protein 2 PLRP2,
human-PNLIPRP3 Homo sapiens (Human) Pancreatic lipase-related protein 3 .
PC-sterol_acyltransferase :
human-LCAT Homo sapiens (Human) phosphatidylcholine-sterol acyltransferase. Lecithin-cholesterol acyltransferase,
human-PLA2G15 Homo sapiens (Human) Group XV phospholipase A2 lcat-like lysophospholipase (llpl) (unq341/pro540).
Pectinacetylesterase-Notum :
human-NOTUM Homo sapiens (Human) Protein notum homolog.
PGAP1 :
human-PGAP1 Homo sapiens (Human)GPI inositol-deacylase PGAP1 117.8 kd protein in ste2-frs2 intergenic region ,
human-SERAC1 Homo sapiens (Human) Protein SERAC1 .
Phospholipase :
human-LIPH Homo sapiens (Human) membrane-bound phosphatidic acid-selective phospholipase a1-alpha, LPD lipase-related protein mPA-PLA1 alpha ,
human-LIPI Homo sapiens (Human) membrane-associated phosphatidic acid-selective phospholipase a1 beta mPA-PLA1 beta (LPD lipase) Cancer/testis antigen 17 CT17 ,
human-PLA1A Homo sapiens (Human) Phospholipase A1 member A, phosphatidylserine-specific phospholipase A1 deltaC .
PPase_methylesterase_euk :
human-PPME1 Homo sapiens (Human) protein phosphatase PP2A methylesterase-1 (EC 3.1.1.-) (pme-1).
Prolylcarboxypeptidase :
human-DPP7 Homo sapiens (Human), Dipeptidyl peptidase 2, quiescent cell proline dipeptidase precursor, DPP7, DPP2, QPP,
human-PRCP Homo sapiens (Human) Lysosomal Pro-X carboxypeptidase C prolylcarboxypeptidase , Angiotensinase C, Proline carboxypeptidase (EC3.4.16.2),
human-PRSS16 Homo sapiens (Human) PRSS16 protease, serine, 16 (thymus) TSSP thymus-specific serine protease precursor (EC 3.4.-.-) .
S9N_PPCE_Peptidase_S9 :
human-PREP Homo sapiens (Human) Prolyl endopeptidase PE, Post-proline cleaving enzyme PPCE, prolyl oligopeptidase POP.
S9N_PREPL_Peptidase_S9 :
human-PREPL Homo sapiens (Human) PREPL Prolylendopeptidase-like KIAA0436.
SERHL :
human-SERHL2 Homo sapiens (Human) serine hydrolase-like protein 2 SERHL2 chomosome 22 .
Thioesterase :
human-FASN Homo sapiens (Human) FAS FASN Fatty acid synthase Thioesterase domain (EC 2.3.1.85),
human-OLAH Homo sapiens (Human) s-acyl fatty acid synthase thioesterase, medium chain OLAH THEDC1 SAST (EC 3.1.2.14).
Thyroglobulin :
human-TG Homo sapiens (Human) Thyroglobulin TG Tg.
Valacyclovir-hydrolase :
human-BPHL Homo sapiens (Human) biphenyl hydrolase-like DJ40E16.6.3, breast epithelial mucin-associated antigen AG BPHL (mcnaa), Valacyclovir hydrolase VACVase
Molecular evidence
Database
No mutation No structure No kinetic No Substrate No inhibitor
Sequence
Graphical view for this peptide sequence: human-ABHD18 Colored MSA for ABHD18 (raw)
MGVSKLDILYRRLLLTKLFIRGWGRPEDLKRLFEFRKMIGNRERCQNLVS
SDYPVHIDKIEEQSDCKILDGHFVSPMAHYVPDIMPIESVIARFQFIVPK
EWNSKYRPVCIHLAGTGDHHYWRRRTLMARPMIKEARMASLLLENPYYGC
RKPKDQVRSSLKNVSDLFVMGGALVLESAALLHWLEREGYGPLGMTGISM
GGHMASLAVSNWPKPMPLIPCLSWSTASGVFTTGVLSKPINWRELEKQYY
TQTVYEEEIIHMLEYCGTDSFKMGQEFVKHFTSSADKLTNLNLVSRTLNL
DISNQVVSQKPADCHNSSKTSVSATSEGLLLQDTSKMKRFNQTLSTNKSG
YTSRNPQSYHLLSKEQSRNSLRKESLIFMKGVMDECTHVANFSVPVDPSL
IIVVQAKEDAYIPRTGVRSLQEIWPGCEIRYLEGGHISAYLFKQGLFR
Legend
This sequence has been compared to family alignement (MSA)
red => minority aminoacid
blue => majority aminoacid
color intensity => conservation rate
title => sequence position(MSA position)aminoacid rate
Catalytic site
Catalytic site in the MSA
M G V S K L D I L Y R R L L L T K L F I R G W G R P E D L K R L F E F R K M I G N R E R C Q N L V S S D Y P V H I D K I E E Q S D C K I L D G H F V S P M A H Y V P D I M P I E S V I A R F Q F I V P K E W N S K Y R P V C I H L A G T G D H H Y W R R R T L M A R P M I K E A R M A S L L L E N P Y Y G C R K P K D Q V R S S L K N V S D L F V M G G A L V L E S A A L L H W L E R E G Y G P L G M T G I S M G G H M A S L A V S N W P K P M P L I P C L S W S T A S G V F T T G V L S K P I N W R E L E K Q Y Y T Q T V Y E E E I I H M L E Y C G T D S F K M G Q E F V K H F T S S A D K L T N L N L V S R T L N L D I S N Q V V S Q K P A D C H N S S K T S V S A T S E G L L L Q D T S K M K R F N Q T L S T N K S G Y T S R N P Q S Y H L L S K E Q S R N S L R K E S L I F M K G V M D E C T H V A N F S V P V D P S L I I V V Q A K E D A Y I P R T G V R S L Q E I W P G C E I R Y L E G G H I S A Y L F K Q G L F R
References
Title: Generation and annotation of the DNA sequences of human chromosomes 2 and 4
Hillier LW , Graves TA , Fulton RS , Fulton LA , Pepin KH , Minx P , Wagner-McPherson C , Layman D , Wylie K and Wilson RK <111 more author(s)>
Hillier LW , Graves TA , Fulton RS , Fulton LA , Pepin KH , Minx P , Wagner-McPherson C , Layman D , Wylie K , Sekhon M , Becker MC , Fewell GA , Delehaunty KD , Miner TL , Nash WE , Kremitzki C , Oddy L , Du H , Sun H , Bradshaw-Cordum H , Ali J , Carter J , Cordes M , Harris A , Isak A , Van Brunt A , Nguyen C , Du F , Courtney L , Kalicki J , Ozersky P , Abbott S , Armstrong J , Belter EA , Caruso L , Cedroni M , Cotton M , Davidson T , Desai A , Elliott G , Erb T , Fronick C , Gaige T , Haakenson W , Haglund K , Holmes A , Harkins R , Kim K , Kruchowski SS , Strong CM , Grewal N , Goyea E , Hou S , Levy A , Martinka S , Mead K , McLellan MD , Meyer R , Randall-Maher J , Tomlinson C , Dauphin-Kohlberg S , Kozlowicz-Reilly A , Shah N , Swearengen-Shahid S , Snider J , Strong JT , Thompson J , Yoakum M , Leonard S , Pearman C , Trani L , Radionenko M , Waligorski JE , Wang C , Rock SM , Tin-Wollam AM , Maupin R , Latreille P , Wendl MC , Yang SP , Pohl C , Wallis JW , Spieth J , Bieri TA , Berkowicz N , Nelson JO , Osborne J , Ding L , Sabo A , Shotland Y , Sinha P , Wohldmann PE , Cook LL , Hickenbotham MT , Eldred J , Williams D , Jones TA , She X , Ciccarelli FD , Izaurralde E , Taylor J , Schmutz J , Myers RM , Cox DR , Huang X , McPherson JD , Mardis ER , Clifton SW , Warren WC , Chinwalla AT , Eddy SR , Marra MA , Ovcharenko I , Furey TS , Miller W , Eichler EE , Bork P , Suyama M , Torrents D , Waterston RH , Wilson RK (- 111)
Ref: Nature, 434 :724, 2005 : PubMed Abstract ESTHER: Hillier_2005_Nature_434_724 PubMedSearch: Hillier 2005 Nature 434 724 PubMedID: 15815621 Gene_locus related to this paper: human-ABHD1 ,
human-LDAH ,
human-ABHD18 ,
human-KANSL3 ,
human-PGAP1 ,
human-PREPL Abstract
Human chromosome 2 is unique to the human lineage in being the product of a head-to-head fusion of two intermediate-sized ancestral chromosomes. Chromosome 4 has received attention primarily related to the search for the Huntington's disease gene, but also for genes associated with Wolf-Hirschhorn syndrome, polycystic kidney disease and a form of muscular dystrophy. Here we present approximately 237 million base pairs of sequence for chromosome 2, and 186 million base pairs for chromosome 4, representing more than 99.6% of their euchromatic sequences. Our initial analyses have identified 1,346 protein-coding genes and 1,239 pseudogenes on chromosome 2, and 796 protein-coding genes and 778 pseudogenes on chromosome 4. Extensive analyses confirm the underlying construction of the sequence, and expand our understanding of the structure and evolution of mammalian chromosomes, including gene deserts, segmental duplications and highly variant regions.
         Title: Complete sequencing and characterization of 21,243 full-length human cDNAs
Ota T , Suzuki Y , Nishikawa T , Otsuki T , Sugiyama T , Irie R , Wakamatsu A , Hayashi K , Sato H and Sugano S <144 more author(s)>
Ota T , Suzuki Y , Nishikawa T , Otsuki T , Sugiyama T , Irie R , Wakamatsu A , Hayashi K , Sato H , Nagai K , Kimura K , Makita H , Sekine M , Obayashi M , Nishi T , Shibahara T , Tanaka T , Ishii S , Yamamoto J , Saito K , Kawai Y , Isono Y , Nakamura Y , Nagahari K , Murakami K , Yasuda T , Iwayanagi T , Wagatsuma M , Shiratori A , Sudo H , Hosoiri T , Kaku Y , Kodaira H , Kondo H , Sugawara M , Takahashi M , Kanda K , Yokoi T , Furuya T , Kikkawa E , Omura Y , Abe K , Kamihara K , Katsuta N , Sato K , Tanikawa M , Yamazaki M , Ninomiya K , Ishibashi T , Yamashita H , Murakawa K , Fujimori K , Tanai H , Kimata M , Watanabe M , Hiraoka S , Chiba Y , Ishida S , Ono Y , Takiguchi S , Watanabe S , Yosida M , Hotuta T , Kusano J , Kanehori K , Takahashi-Fujii A , Hara H , Tanase TO , Nomura Y , Togiya S , Komai F , Hara R , Takeuchi K , Arita M , Imose N , Musashino K , Yuuki H , Oshima A , Sasaki N , Aotsuka S , Yoshikawa Y , Matsunawa H , Ichihara T , Shiohata N , Sano S , Moriya S , Momiyama H , Satoh N , Takami S , Terashima Y , Suzuki O , Nakagawa S , Senoh A , Mizoguchi H , Goto Y , Shimizu F , Wakebe H , Hishigaki H , Watanabe T , Sugiyama A , Takemoto M , Kawakami B , Watanabe K , Kumagai A , Itakura S , Fukuzumi Y , Fujimori Y , Komiyama M , Tashiro H , Tanigami A , Fujiwara T , Ono T , Yamada K , Fujii Y , Ozaki K , Hirao M , Ohmori Y , Kawabata A , Hikiji T , Kobatake N , Inagaki H , Ikema Y , Okamoto S , Okitani R , Kawakami T , Noguchi S , Itoh T , Shigeta K , Senba T , Matsumura K , Nakajima Y , Mizuno T , Morinaga M , Sasaki M , Togashi T , Oyama M , Hata H , Komatsu T , Mizushima-Sugano J , Satoh T , Shirai Y , Takahashi Y , Nakagawa K , Okumura K , Nagase T , Nomura N , Kikuchi H , Masuho Y , Yamashita R , Nakai K , Yada T , Ohara O , Isogai T , Sugano S (- 144)
Ref: Nat Genet, 36 :40, 2004 : PubMed Abstract ESTHER: Ota_2004_Nat.Genet_36_40 PubMedSearch: Ota 2004 Nat.Genet 36 40 PubMedID: 14702039 Gene_locus related to this paper: human-ABHD1 ,
human-ABHD4 ,
human-ABHD12 ,
human-ABHD16A ,
human-ACOT1 ,
human-LDAH ,
human-ABHD18 ,
human-CES1 ,
human-CES4A ,
human-CES5A ,
human-CPVL ,
human-DAGLB ,
human-EPHX2 ,
human-KANSL3 ,
human-LIPA ,
human-LPL ,
human-MEST ,
human-NDRG1 ,
human-NLGN1 ,
human-NLGN4X ,
human-PRCP ,
human-PRSS16 ,
human-SERAC1 ,
human-TMEM53 Abstract
As a base for human transcriptome and functional genomics, we created the "full-length long Japan" (FLJ) collection of sequenced human cDNAs. We determined the entire sequence of 21,243 selected clones and found that 14,490 cDNAs (10,897 clusters) were unique to the FLJ collection. About half of them (5,416) seemed to be protein-coding. Of those, 1,999 clusters had not been predicted by computational methods. The distribution of GC content of nonpredicted cDNAs had a peak at approximately 58% compared with a peak at approximately 42%for predicted cDNAs. Thus, there seems to be a slight bias against GC-rich transcripts in current gene prediction procedures. The rest of the cDNAs unique to the FLJ collection (5,481) contained no obvious open reading frames (ORFs) and thus are candidate noncoding RNAs. About one-fourth of them (1,378) showed a clear pattern of splicing. The distribution of GC content of noncoding cDNAs was narrow and had a peak at approximately 42%, relatively low compared with that of protein-coding cDNAs.
         Title: The sequence of the human genome
Venter JC , Adams MD , Myers EW , Li PW , Mural RJ , Sutton GG , Smith HO , Yandell M , Evans CA and Zhu X <264 more author(s)>
Venter JC , Adams MD , Myers EW , Li PW , Mural RJ , Sutton GG , Smith HO , Yandell M , Evans CA , Holt RA , Gocayne JD , Amanatides P , Ballew RM , Huson DH , Wortman JR , Zhang Q , Kodira CD , Zheng XH , Chen L , Skupski M , Subramanian G , Thomas PD , Zhang J , Gabor Miklos GL , Nelson C , Broder S , Clark AG , Nadeau J , McKusick VA , Zinder N , Levine AJ , Roberts RJ , Simon M , Slayman C , Hunkapiller M , Bolanos R , Delcher A , Dew I , Fasulo D , Flanigan M , Florea L , Halpern A , Hannenhalli S , Kravitz S , Levy S , Mobarry C , Reinert K , Remington K , Abu-Threideh J , Beasley E , Biddick K , Bonazzi V , Brandon R , Cargill M , Chandramouliswaran I , Charlab R , Chaturvedi K , Deng Z , Di Francesco V , Dunn P , Eilbeck K , Evangelista C , Gabrielian AE , Gan W , Ge W , Gong F , Gu Z , Guan P , Heiman TJ , Higgins ME , Ji RR , Ke Z , Ketchum KA , Lai Z , Lei Y , Li Z , Li J , Liang Y , Lin X , Lu F , Merkulov GV , Milshina N , Moore HM , Naik AK , Narayan VA , Neelam B , Nusskern D , Rusch DB , Salzberg S , Shao W , Shue B , Sun J , Wang Z , Wang A , Wang X , Wang J , Wei M , Wides R , Xiao C , Yan C , Yao A , Ye J , Zhan M , Zhang W , Zhang H , Zhao Q , Zheng L , Zhong F , Zhong W , Zhu S , Zhao S , Gilbert D , Baumhueter S , Spier G , Carter C , Cravchik A , Woodage T , Ali F , An H , Awe A , Baldwin D , Baden H , Barnstead M , Barrow I , Beeson K , Busam D , Carver A , Center A , Cheng ML , Curry L , Danaher S , Davenport L , Desilets R , Dietz S , Dodson K , Doup L , Ferriera S , Garg N , Gluecksmann A , Hart B , Haynes J , Haynes C , Heiner C , Hladun S , Hostin D , Houck J , Howland T , Ibegwam C , Johnson J , Kalush F , Kline L , Koduru S , Love A , Mann F , May D , McCawley S , McIntosh T , McMullen I , Moy M , Moy L , Murphy B , Nelson K , Pfannkoch C , Pratts E , Puri V , Qureshi H , Reardon M , Rodriguez R , Rogers YH , Romblad D , Ruhfel B , Scott R , Sitter C , Smallwood M , Stewart E , Strong R , Suh E , Thomas R , Tint NN , Tse S , Vech C , Wang G , Wetter J , Williams S , Williams M , Windsor S , Winn-Deen E , Wolfe K , Zaveri J , Zaveri K , Abril JF , Guigo R , Campbell MJ , Sjolander KV , Karlak B , Kejariwal A , Mi H , Lazareva B , Hatton T , Narechania A , Diemer K , Muruganujan A , Guo N , Sato S , Bafna V , Istrail S , Lippert R , Schwartz R , Walenz B , Yooseph S , Allen D , Basu A , Baxendale J , Blick L , Caminha M , Carnes-Stine J , Caulk P , Chiang YH , Coyne M , Dahlke C , Mays A , Dombroski M , Donnelly M , Ely D , Esparham S , Fosler C , Gire H , Glanowski S , Glasser K , Glodek A , Gorokhov M , Graham K , Gropman B , Harris M , Heil J , Henderson S , Hoover J , Jennings D , Jordan C , Jordan J , Kasha J , Kagan L , Kraft C , Levitsky A , Lewis M , Liu X , Lopez J , Ma D , Majoros W , McDaniel J , Murphy S , Newman M , Nguyen T , Nguyen N , Nodell M , Pan S , Peck J , Peterson M , Rowe W , Sanders R , Scott J , Simpson M , Smith T , Sprague A , Stockwell T , Turner R , Venter E , Wang M , Wen M , Wu D , Wu M , Xia A , Zandieh A , Zhu X (- 264)
Ref: Science, 291 :1304, 2001 : PubMed Abstract ESTHER: Venter_2001_Science_291_1304 PubMedSearch: Venter 2001 Science 291 1304 PubMedID: 11181995 Gene_locus related to this paper: human-AADAC ,
human-ABHD1 ,
human-ABHD10 ,
human-ABHD11 ,
human-ACHE ,
human-BCHE ,
human-LDAH ,
human-ABHD18 ,
human-CMBL ,
human-ABHD17A ,
human-KANSL3 ,
human-LIPA ,
human-LYPLAL1 ,
human-NDRG2 ,
human-NLGN3 ,
human-NLGN4X ,
human-NLGN4Y ,
human-PAFAH2 ,
human-PREPL ,
human-RBBP9 ,
human-SPG21 Abstract
A 2.91-billion base pair (bp) consensus sequence of the euchromatic portion of the human genome was generated by the whole-genome shotgun sequencing method. The 14.8-billion bp DNA sequence was generated over 9 months from 27,271,853 high-quality sequence reads (5.11-fold coverage of the genome) from both ends of plasmid clones made from the DNA of five individuals. Two assembly strategies-a whole-genome assembly and a regional chromosome assembly-were used, each combining sequence data from Celera and the publicly funded genome effort. The public data were shredded into 550-bp segments to create a 2.9-fold coverage of those genome regions that had been sequenced, without including biases inherent in the cloning and assembly procedure used by the publicly funded group. This brought the effective coverage in the assemblies to eightfold, reducing the number and size of gaps in the final assembly over what would be obtained with 5.11-fold coverage. The two assembly strategies yielded very similar results that largely agree with independent mapping data. The assemblies effectively cover the euchromatic regions of the human chromosomes. More than 90% of the genome is in scaffold assemblies of 100,000 bp or more, and 25% of the genome is in scaffolds of 10 million bp or larger. Analysis of the genome sequence revealed 26,588 protein-encoding transcripts for which there was strong corroborating evidence and an additional approximately 12,000 computationally derived genes with mouse matches or other weak supporting evidence. Although gene-dense clusters are obvious, almost half the genes are dispersed in low G+C sequence separated by large tracts of apparently noncoding sequence. Only 1.1% of the genome is spanned by exons, whereas 24% is in introns, with 75% of the genome being intergenic DNA. Duplications of segmental blocks, ranging in size up to chromosomal lengths, are abundant throughout the genome and reveal a complex evolutionary history. Comparative genomic analysis indicates vertebrate expansions of genes associated with neuronal function, with tissue-specific developmental regulation, and with the hemostasis and immune systems. DNA sequence comparisons between the consensus sequence and publicly funded genome data provided locations of 2.1 million single-nucleotide polymorphisms (SNPs). A random pair of human haploid genomes differed at a rate of 1 bp per 1250 on average, but there was marked heterogeneity in the level of polymorphism across the genome. Less than 1% of all SNPs resulted in variation in proteins, but the task of determining which SNPs have functional consequences remains an open challenge.
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