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Versand Vierte Motivation cellulose binding domain Predigen Stabil Mehlschwitze

Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials |  Biomacromolecules
Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials | Biomacromolecules

Cellulose binding domain assisted immobilization of lipase (GSlip–CBD) onto  cellulosic nanogel: characterization and application in organic medium -  ScienceDirect
Cellulose binding domain assisted immobilization of lipase (GSlip–CBD) onto cellulosic nanogel: characterization and application in organic medium - ScienceDirect

Solved Entymes Type1 Dockerin S-Layer Binding Module Gram | Chegg.com
Solved Entymes Type1 Dockerin S-Layer Binding Module Gram | Chegg.com

Cellulose-binding domains: Biotechnological applications - ScienceDirect
Cellulose-binding domains: Biotechnological applications - ScienceDirect

Aromatic amino acids in the cellulose binding domain of Penicillium  crustosum endoglucanase EGL1 differentially contribute to the cellulose  affinity of the enzyme | PLOS ONE
Aromatic amino acids in the cellulose binding domain of Penicillium crustosum endoglucanase EGL1 differentially contribute to the cellulose affinity of the enzyme | PLOS ONE

Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials |  Biomacromolecules
Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials | Biomacromolecules

Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials |  Biomacromolecules
Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials | Biomacromolecules

Nanobody-Functionalized Cellulose for Capturing SARS-CoV-2 | Applied and  Environmental Microbiology
Nanobody-Functionalized Cellulose for Capturing SARS-CoV-2 | Applied and Environmental Microbiology

Enhancement of Cellulolytic Enzyme Activity by Clustering Cellulose Binding  Domains on Nanoscaffolds - Kim - 2011 - Small - Wiley Online Library
Enhancement of Cellulolytic Enzyme Activity by Clustering Cellulose Binding Domains on Nanoscaffolds - Kim - 2011 - Small - Wiley Online Library

Figure 2 from Structural and functional studies of fungal cellulose-binding  domains by NMR spectroscopy | Semantic Scholar
Figure 2 from Structural and functional studies of fungal cellulose-binding domains by NMR spectroscopy | Semantic Scholar

Class I hydrophobin fusion with cellulose binding domain for its soluble  expression and facile purification - ScienceDirect
Class I hydrophobin fusion with cellulose binding domain for its soluble expression and facile purification - ScienceDirect

Nanobody-Functionalized Cellulose for Capturing SARS-CoV-2 | Applied and  Environmental Microbiology
Nanobody-Functionalized Cellulose for Capturing SARS-CoV-2 | Applied and Environmental Microbiology

Bioengineered textiles with peptide binders that capture SARS-CoV-2 viral  particles | Communications Materials
Bioengineered textiles with peptide binders that capture SARS-CoV-2 viral particles | Communications Materials

Paper-based diagnostics in the antigen-depletion regime: High-density  immobilization of rcSso7d-cellulose-binding domain fusion proteins for  efficient target capture - ScienceDirect
Paper-based diagnostics in the antigen-depletion regime: High-density immobilization of rcSso7d-cellulose-binding domain fusion proteins for efficient target capture - ScienceDirect

Binding affinity of family 4 carbohydrate binding module on cellulose films  of nanocrystals and nanofibrils - ScienceDirect
Binding affinity of family 4 carbohydrate binding module on cellulose films of nanocrystals and nanofibrils - ScienceDirect

Reduced Type-A Carbohydrate-Binding Module Interactions to Cellulose Leads  to Improved Endocellulase Activity | bioRxiv
Reduced Type-A Carbohydrate-Binding Module Interactions to Cellulose Leads to Improved Endocellulase Activity | bioRxiv

Team:Pasteur Paris/Science - 2016.igem.org
Team:Pasteur Paris/Science - 2016.igem.org

Polymers | Free Full-Text | Carbohydrate-Binding Modules of Potential  Resources: Occurrence in Nature, Function, and Application in Fiber  Recognition and Treatment
Polymers | Free Full-Text | Carbohydrate-Binding Modules of Potential Resources: Occurrence in Nature, Function, and Application in Fiber Recognition and Treatment

Cellulose binding experiments of the CBD domain of P. crustosum... |  Download Scientific Diagram
Cellulose binding experiments of the CBD domain of P. crustosum... | Download Scientific Diagram

Acoustic force spectroscopy reveals subtle differences in cellulose  unbinding behavior of carbohydrate-binding modules | PNAS
Acoustic force spectroscopy reveals subtle differences in cellulose unbinding behavior of carbohydrate-binding modules | PNAS

Aromatic amino acids in the cellulose binding domain of Penicillium  crustosum endoglucanase EGL1 differentially contribute to the cellulose  affinity of the enzyme | PLOS ONE
Aromatic amino acids in the cellulose binding domain of Penicillium crustosum endoglucanase EGL1 differentially contribute to the cellulose affinity of the enzyme | PLOS ONE

Frontiers | Carbohydrate Binding Modules: Diversity of Domain Architecture  in Amylases and Cellulases From Filamentous Microorganisms
Frontiers | Carbohydrate Binding Modules: Diversity of Domain Architecture in Amylases and Cellulases From Filamentous Microorganisms

Cellulose binding domain assisted immobilization of lipase (GSlip–CBD) onto  cellulosic nanogel: characterization and application in organic medium -  ScienceDirect
Cellulose binding domain assisted immobilization of lipase (GSlip–CBD) onto cellulosic nanogel: characterization and application in organic medium - ScienceDirect

Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials |  Biomacromolecules
Binding Forces of Cellulose Binding Modules on Cellulosic Nanomaterials | Biomacromolecules

PDB-101: Molecule of the Month: Cellulases and Bioenergy
PDB-101: Molecule of the Month: Cellulases and Bioenergy

Specificity of O-glycosylation in enhancing the stability and cellulose  binding affinity of Family 1 carbohydrate-binding modules | PNAS
Specificity of O-glycosylation in enhancing the stability and cellulose binding affinity of Family 1 carbohydrate-binding modules | PNAS

Bacterial cellulose degradation system could | EurekAlert!
Bacterial cellulose degradation system could | EurekAlert!

RCSB PDB - 1ULO: N-TERMINAL CELLULOSE-BINDING DOMAIN FROM CELLULOMONAS FIMI  BETA-1,4-GLUCANASE C, NMR, MINIMIZED AVERAGE STRUCTURE
RCSB PDB - 1ULO: N-TERMINAL CELLULOSE-BINDING DOMAIN FROM CELLULOMONAS FIMI BETA-1,4-GLUCANASE C, NMR, MINIMIZED AVERAGE STRUCTURE