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Borisova AS, Eneyskaya EV, Bobrov KS, Jana S, Logachev A, Polev DE, Lapidus AL, Ibatullin FM, Saleem U, Sandgren M, Payne CM, Kulminskaya AA, Ståhlberg J
Sequencing, biochemical characterization, crystal structure and molecular dynamics of cellobiohydrolase Cel7A from Geotrichum candidum 3C
FEBS Journal 282(23) (2015)
4515-4537
Geotrichum candidum 3C
(Ancestor NCBI TaxID 1173061,
species name lookup)
Taxonomic group: fungi / Ascomycota
(Phylum: Ascomycota)
The structure was elucidated in this paperNCBI PubMed ID: 26367132Publication DOI: 10.1111/febs.13509Journal NLM ID: 101229646Publisher: Blackwell Publishing
Correspondence: Ståhlberg J <Jerry.Stahlberg

slu.se>; Payne CM <Christy.Payne

uky.edu>; Kulminskaya AA <kulm

omrb.pnpi.spb.ru>
Institutions: Department of Chemistry and Biotechnology, Swedish University of Agricultural Sciences, Uppsala, Sweden, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Russia, Department of Chemical and Materials Engineering, University of Kentucky, Lexington, USA, Theodosius Dobzhansky Center for Genome Bioinformatics, St. Petersburg State University, St. Petersburg, Russia, Research Resource Centre «Molecular and Cell Technologies», St. Petersburg State University, St. Petersburg, Russia, Centre for Algorithmic Biotechnology, St. Petersburg Academic University, St. Petersburg, Russia, Department of Medical Physics, Peter the Great St. Petersburg Polytechnic University, St. Petersburg, Russia, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Orlova roscha, Russia
The ascomycete Geotrichum candidum is a versatile and efficient decay fungus that is involved, for example, in biodeterioration of compact discs; notably, the 3C strain was previously shown to degrade filter paper and cotton more efficiently than several industrial enzyme preparations. Glycoside hydrolase (GH) family 7 cellobiohydrolases (CBHs) are the primary constituents of industrial cellulase cocktails employed in biomass conversion, and feature tunnel-enclosed active sites that enable processive hydrolytic cleavage of cellulose chains. Understanding the structure-function relationships defining the activity and stability of GH7 CBHs is thus of keen interest. Accordingly, we report the comprehensive characterization of the GH7 CBH secreted by G. candidum (GcaCel7A). The bimodular cellulase consists of a family 1 cellulose-binding module (CBM) and linker connected to a GH7 catalytic domain that shares 64% sequence identity with the archetypal industrial GH7 CBH of Hypocrea jecorina (HjeCel7A). GcaCel7A shows activity on Avicel cellulose similar to HjeCel7A, with less product inhibition, but has a lower temperature optimum (50 °C versus 60-65 °C, respectively). Five crystal structures, with and without bound thio-oligosaccharides, show conformational diversity of tunnel-enclosing loops, including a form with partial tunnel collapse at subsite -4 not reported previously in GH7. Also, the first O-glycosylation site in a GH7 crystal structure is reported--on a loop where the glycan probably influences loop contacts across the active site and interactions with the cellulose surface. The GcaCel7A structures indicate higher loop flexibility than HjeCel7A, in accordance with sequence modifications. However, GcaCel7A retains small fluctuations in molecular simulations, suggesting high processivity and low endo-initiation probability, similar to HjeCel7A.
molecular dynamics, cellulase, Geotrichum candidum, X-ray structure, biomass degradation, Gotrichum candidum
Structure type: monomer
Location inside paper: p. 4529, column 1, paragraph 2
Aglycon: (->3) L-Ser (GcaCel7A)
Compound class: O-glycan, O-mannan
Contained glycoepitopes: IEDB_130701,IEDB_144983,IEDB_152206,IEDB_983930,SB_44,SB_67,SB_72
Methods: SDS-PAGE, MD simulations, MALDI-TOF, centrifugation, filtration, X-ray diffraction, ion exchange chromatograpy, hydrophobic interaction chromatograpy
Enzymes that release or process the structure: endo-b-N-acetylglucosaminidase
Biosynthesis and genetic data: genetic data
Comments, role: O-glycosylation site: Ser196
3D data: conformation data
Related record ID(s): 42443, 42444
NCBI Taxonomy refs (TaxIDs): 1173061Reference(s) to other database(s): GTC:G61491DK
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Borisova AS, Eneyskaya EV, Bobrov KS, Jana S, Logachev A, Polev DE, Lapidus AL, Ibatullin FM, Saleem U, Sandgren M, Payne CM, Kulminskaya AA, Ståhlberg J
Sequencing, biochemical characterization, crystal structure and molecular dynamics of cellobiohydrolase Cel7A from Geotrichum candidum 3C
FEBS Journal 282(23) (2015)
4515-4537
Geotrichum candidum 3C
(Ancestor NCBI TaxID 1173061,
species name lookup)
Taxonomic group: fungi / Ascomycota
(Phylum: Ascomycota)
The structure was elucidated in this paperNCBI PubMed ID: 26367132Publication DOI: 10.1111/febs.13509Journal NLM ID: 101229646Publisher: Blackwell Publishing
Correspondence: Ståhlberg J <Jerry.Stahlberg

slu.se>; Payne CM <Christy.Payne

uky.edu>; Kulminskaya AA <kulm

omrb.pnpi.spb.ru>
Institutions: Department of Chemistry and Biotechnology, Swedish University of Agricultural Sciences, Uppsala, Sweden, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Russia, Department of Chemical and Materials Engineering, University of Kentucky, Lexington, USA, Theodosius Dobzhansky Center for Genome Bioinformatics, St. Petersburg State University, St. Petersburg, Russia, Research Resource Centre «Molecular and Cell Technologies», St. Petersburg State University, St. Petersburg, Russia, Centre for Algorithmic Biotechnology, St. Petersburg Academic University, St. Petersburg, Russia, Department of Medical Physics, Peter the Great St. Petersburg Polytechnic University, St. Petersburg, Russia, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Orlova roscha, Russia
The ascomycete Geotrichum candidum is a versatile and efficient decay fungus that is involved, for example, in biodeterioration of compact discs; notably, the 3C strain was previously shown to degrade filter paper and cotton more efficiently than several industrial enzyme preparations. Glycoside hydrolase (GH) family 7 cellobiohydrolases (CBHs) are the primary constituents of industrial cellulase cocktails employed in biomass conversion, and feature tunnel-enclosed active sites that enable processive hydrolytic cleavage of cellulose chains. Understanding the structure-function relationships defining the activity and stability of GH7 CBHs is thus of keen interest. Accordingly, we report the comprehensive characterization of the GH7 CBH secreted by G. candidum (GcaCel7A). The bimodular cellulase consists of a family 1 cellulose-binding module (CBM) and linker connected to a GH7 catalytic domain that shares 64% sequence identity with the archetypal industrial GH7 CBH of Hypocrea jecorina (HjeCel7A). GcaCel7A shows activity on Avicel cellulose similar to HjeCel7A, with less product inhibition, but has a lower temperature optimum (50 °C versus 60-65 °C, respectively). Five crystal structures, with and without bound thio-oligosaccharides, show conformational diversity of tunnel-enclosing loops, including a form with partial tunnel collapse at subsite -4 not reported previously in GH7. Also, the first O-glycosylation site in a GH7 crystal structure is reported--on a loop where the glycan probably influences loop contacts across the active site and interactions with the cellulose surface. The GcaCel7A structures indicate higher loop flexibility than HjeCel7A, in accordance with sequence modifications. However, GcaCel7A retains small fluctuations in molecular simulations, suggesting high processivity and low endo-initiation probability, similar to HjeCel7A.
molecular dynamics, cellulase, Geotrichum candidum, X-ray structure, biomass degradation, Gotrichum candidum
Structure type: monomer
Location inside paper: p. 4521, column 1, paragraph 1
Aglycon: (->4) Asn-X-Ser/Thr (GcaCel7A)
Compound class: N-glycan
Contained glycoepitopes: IEDB_135813,IEDB_137340,IEDB_141807,IEDB_151531
Methods: SDS-PAGE, MD simulations, MALDI-TOF, centrifugation, filtration, X-ray diffraction, ion exchange chromatograpy, hydrophobic interaction chromatograpy
Enzymes that release or process the structure: endo-b-N-acetylglucosaminidase
Biosynthesis and genetic data: genetic data
Comments, role: N-glycosylation sites: Asn57, Asn432
Related record ID(s): 42329, 42444
NCBI Taxonomy refs (TaxIDs): 1173061Reference(s) to other database(s): GTC:G49108TO
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There is only one chemically distinct structure:
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Borisova AS, Eneyskaya EV, Bobrov KS, Jana S, Logachev A, Polev DE, Lapidus AL, Ibatullin FM, Saleem U, Sandgren M, Payne CM, Kulminskaya AA, Ståhlberg J
Sequencing, biochemical characterization, crystal structure and molecular dynamics of cellobiohydrolase Cel7A from Geotrichum candidum 3C
FEBS Journal 282(23) (2015)
4515-4537
b-D-GlcpNAc-(1-4)-b-D-GlcpNAc-(1--/(->4) Asn-X-Ser/Thr (GcaCel7A)/ |
Show graphically |
Geotrichum candidum 3C
(Ancestor NCBI TaxID 1173061,
species name lookup)
Taxonomic group: fungi / Ascomycota
(Phylum: Ascomycota)
The structure was elucidated in this paperNCBI PubMed ID: 26367132Publication DOI: 10.1111/febs.13509Journal NLM ID: 101229646Publisher: Blackwell Publishing
Correspondence: Ståhlberg J <Jerry.Stahlberg

slu.se>; Payne CM <Christy.Payne

uky.edu>; Kulminskaya AA <kulm

omrb.pnpi.spb.ru>
Institutions: Department of Chemistry and Biotechnology, Swedish University of Agricultural Sciences, Uppsala, Sweden, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Russia, Department of Chemical and Materials Engineering, University of Kentucky, Lexington, USA, Theodosius Dobzhansky Center for Genome Bioinformatics, St. Petersburg State University, St. Petersburg, Russia, Research Resource Centre «Molecular and Cell Technologies», St. Petersburg State University, St. Petersburg, Russia, Centre for Algorithmic Biotechnology, St. Petersburg Academic University, St. Petersburg, Russia, Department of Medical Physics, Peter the Great St. Petersburg Polytechnic University, St. Petersburg, Russia, National Research Centre «Kurchatov Institute», B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Orlova roscha, Russia
The ascomycete Geotrichum candidum is a versatile and efficient decay fungus that is involved, for example, in biodeterioration of compact discs; notably, the 3C strain was previously shown to degrade filter paper and cotton more efficiently than several industrial enzyme preparations. Glycoside hydrolase (GH) family 7 cellobiohydrolases (CBHs) are the primary constituents of industrial cellulase cocktails employed in biomass conversion, and feature tunnel-enclosed active sites that enable processive hydrolytic cleavage of cellulose chains. Understanding the structure-function relationships defining the activity and stability of GH7 CBHs is thus of keen interest. Accordingly, we report the comprehensive characterization of the GH7 CBH secreted by G. candidum (GcaCel7A). The bimodular cellulase consists of a family 1 cellulose-binding module (CBM) and linker connected to a GH7 catalytic domain that shares 64% sequence identity with the archetypal industrial GH7 CBH of Hypocrea jecorina (HjeCel7A). GcaCel7A shows activity on Avicel cellulose similar to HjeCel7A, with less product inhibition, but has a lower temperature optimum (50 °C versus 60-65 °C, respectively). Five crystal structures, with and without bound thio-oligosaccharides, show conformational diversity of tunnel-enclosing loops, including a form with partial tunnel collapse at subsite -4 not reported previously in GH7. Also, the first O-glycosylation site in a GH7 crystal structure is reported--on a loop where the glycan probably influences loop contacts across the active site and interactions with the cellulose surface. The GcaCel7A structures indicate higher loop flexibility than HjeCel7A, in accordance with sequence modifications. However, GcaCel7A retains small fluctuations in molecular simulations, suggesting high processivity and low endo-initiation probability, similar to HjeCel7A.
molecular dynamics, cellulase, Geotrichum candidum, X-ray structure, biomass degradation, Gotrichum candidum
Structure type: oligomer
Location inside paper: p. 4521, column 1, paragraph 1
Aglycon: (->4) Asn-X-Ser/Thr (GcaCel7A)
Compound class: N-glycan
Contained glycoepitopes: IEDB_135813,IEDB_137340,IEDB_141807,IEDB_151531,IEDB_153212,SB_74,SB_85
Methods: SDS-PAGE, MD simulations, MALDI-TOF, centrifugation, filtration, X-ray diffraction, ion exchange chromatograpy, hydrophobic interaction chromatograpy
Enzymes that release or process the structure: endo-β-N-acetylglucosaminidase
Biosynthesis and genetic data: genetic data
Comments, role: N-glycosylation site: Asn206
Related record ID(s): 42329, 42443
NCBI Taxonomy refs (TaxIDs): 1173061Reference(s) to other database(s): GTC:G42666HT
Show glycosyltransferases
There is only one chemically distinct structure:
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