camsi-MES4

Camellia sinensis (Tea plant) (Thea sinensis) methyl esterase (MES) CsMES4

Comment

Other strains: Camellia sinensis (Tea plant) (Thea sinensis)\; Camellia sinensis var. sinensis (China tea). Hydrolyze methyl salicylate (MeSA), methyl indole-3-acetate (MeIAA), and methyl jasmonate (MeJA) to produce salicylic acid, indole-3-acetic acid, and jasmonic acid

Relationship

Family : Hydroxynitrile_lyase

Block : X

Position in NCBI Life Tree : Camellia sinensis

(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 > Viridiplantae N E > Streptophyta N E > Streptophytina N E > Embryophyta N E > Tracheophyta N E > Euphyllophyta N E > Spermatophyta N E > Magnoliophyta N E > Mesangiospermae N E > eudicotyledons N E > Gunneridae N E > Pentapetalae N E > asterids N E > Ericales N E > Theaceae N E > Camellia N E > Camellia sinensis N E

Molecular evidence

No mutation

No structure

No kinetic

No disease

No inhibitor

Database

Sequence

Peptide

MEAAKQQTHT HFILVHGLCH GAWCWYKLKP LLESHGHKVT ALDLSASGIN MKKIEEIRTF YDYTVPLMEV MESLPPGEKV VLVGHSLGGL NLALAMDKFP QKISTAVFVT AFMPDTVHKP SFVIEQSLKG TTPESWLDTK FESYGTPEMP LTSMLLGPKF LASKLYQLCP IQDFTLATTL VRPGSLFLED LAHANNFSNE GYGSVTRVFV VCNEDYTIPE EYQRWMIENS GGVKEVKEIK GADHMAMFSK PRELCCYLLE IANKHT

References (1)

Title : Functional Characterization of the Methyl Esterase MES4 in Hydrolytic Activity of Methylated Phytohormones in Tea Plants Based on Multi-Omics Analysis - Li_2026_J.Agric.Food.Chem__
Author(s) : Li D , Wang Y , Jin Y , Zhao Y , Lu Q , Ren N , Qin J , Chen Q , Liang X , Li Q
Ref : Journal of Agricultural and Food Chemistry , : , 2026
Abstract :
PubMedSearch : Li_2026_J.Agric.Food.Chem__
PubMedID: 41672412
Gene_locus related to this paper: camsi-MES4