Report for Then J

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References (7)

Title : A disulfide bridge in the calcium binding site of a polyester hydrolase increases its thermal stability and activity against polyethylene terephthalate - Then_2016_FEBS.Open.Bio_6_425
Author(s) : Then J , Wei R , Oeser T , Gerdts A , Schmidt J , Barth M , Zimmermann W
Ref : FEBS Open Bio , 6 :425 , 2016
Abstract : Then_2016_FEBS.Open.Bio_6_425
ESTHER : Then_2016_FEBS.Open.Bio_6_425
PubMedSearch : Then_2016_FEBS.Open.Bio_6_425
PubMedID: 27419048
Gene_locus related to this paper: thefu-q6a0i4

Title : Engineered bacterial polyester hydrolases efficiently degrade polyethylene terephthalate due to relieved product inhibition - Wei_2016_Biotechnol.Bioeng_113_1658
Author(s) : Wei R , Oeser T , Schmidt J , Meier R , Barth M , Then J , Zimmermann W
Ref : Biotechnol Bioeng , 113 :1658 , 2016
Abstract : Wei_2016_Biotechnol.Bioeng_113_1658
ESTHER : Wei_2016_Biotechnol.Bioeng_113_1658
PubMedSearch : Wei_2016_Biotechnol.Bioeng_113_1658
PubMedID: 26804057
Gene_locus related to this paper: 9bact-g9by57 , thefu-q6a0i4

Title : A dual enzyme system composed of a polyester hydrolase and a carboxylesterase enhances the biocatalytic degradation of polyethylene terephthalate films - Barth_2016_Biotechnol.J_11_1082
Author(s) : Barth M , Honak A , Oeser T , Wei R , Belisario-Ferrari MR , Then J , Schmidt J , Zimmermann W
Ref : Biotechnol J , 11 :1082 , 2016
Abstract : Barth_2016_Biotechnol.J_11_1082
ESTHER : Barth_2016_Biotechnol.J_11_1082
PubMedSearch : Barth_2016_Biotechnol.J_11_1082
PubMedID: 27214855
Gene_locus related to this paper: 9bact-g9by57 , thefu-1831

Title : Effect of Tris, MOPS, and phosphate buffers on the hydrolysis of polyethylene terephthalate films by polyester hydrolases - Schmidt_2016_FEBS.Open.Bio_6_919
Author(s) : Schmidt J , Wei R , Oeser T , Belisario-Ferrari MR , Barth M , Then J , Zimmermann W
Ref : FEBS Open Bio , 6 :919 , 2016
Abstract : Schmidt_2016_FEBS.Open.Bio_6_919
ESTHER : Schmidt_2016_FEBS.Open.Bio_6_919
PubMedSearch : Schmidt_2016_FEBS.Open.Bio_6_919
PubMedID: 27642555

Title : Ca2+ and Mg2+ binding site engineering increases the degradation of polyethylene terephthalate films by polyester hydrolases from Thermobifida fusca - Then_2015_Biotechnol.J_10_592
Author(s) : Then J , Wei R , Oeser T , Barth M , Belisario-Ferrari MR , Schmidt J , Zimmermann W
Ref : Biotechnol J , 10 :592 , 2015
Abstract : Then_2015_Biotechnol.J_10_592
ESTHER : Then_2015_Biotechnol.J_10_592
PubMedSearch : Then_2015_Biotechnol.J_10_592
PubMedID: 25545638

Title : Functional characterization and structural modeling of synthetic polyester-degrading hydrolases from Thermomonospora curvata - Wei_2014_AMB.Express_4_44
Author(s) : Wei R , Oeser T , Then J , Kuhn N , Barth M , Schmidt J , Zimmermann W
Ref : AMB Express , 4 :44 , 2014
Abstract : Wei_2014_AMB.Express_4_44
ESTHER : Wei_2014_AMB.Express_4_44
PubMedSearch : Wei_2014_AMB.Express_4_44
PubMedID: 25405080
Gene_locus related to this paper: thecd-d1a9g5 , thecd-d1a2h1

Title : Structural and functional studies on a thermostable polyethylene terephthalate degrading hydrolase from Thermobifida fusca - Roth_2014_Appl.Microbiol.Biotechnol_98_7815
Author(s) : Roth C , Wei R , Oeser T , Then J , Follner C , Zimmermann W , Strater N
Ref : Applied Microbiology & Biotechnology , 98 :7815 , 2014
Abstract : Roth_2014_Appl.Microbiol.Biotechnol_98_7815
ESTHER : Roth_2014_Appl.Microbiol.Biotechnol_98_7815
PubMedSearch : Roth_2014_Appl.Microbiol.Biotechnol_98_7815
PubMedID: 24728714
Gene_locus related to this paper: thefu-q6a0i4