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Michaelis-Menten kinetics of the TEV-P and selected variants with... |  Download Table
Michaelis-Menten kinetics of the TEV-P and selected variants with... | Download Table

Characterization of a randomized FRET library for protease specificity  determination - Molecular BioSystems (RSC Publishing) DOI:10.1039/B709290C
Characterization of a randomized FRET library for protease specificity determination - Molecular BioSystems (RSC Publishing) DOI:10.1039/B709290C

Proteolytic Cleavage—Mechanisms, Function, and “Omic” Approaches for a  Near-Ubiquitous Posttranslational Modification | Chemical Reviews
Proteolytic Cleavage—Mechanisms, Function, and “Omic” Approaches for a Near-Ubiquitous Posttranslational Modification | Chemical Reviews

Engineering of TEV protease variants by yeast ER sequestration screening  (YESS) of combinatorial libraries
Engineering of TEV protease variants by yeast ER sequestration screening (YESS) of combinatorial libraries

Directed evolution improves the catalytic efficiency of TEV protease
Directed evolution improves the catalytic efficiency of TEV protease

YESS 2.0, a Tunable Platform for Enzyme Evolution, Yields Highly Active TEV  Protease Variants | ACS Synthetic Biology
YESS 2.0, a Tunable Platform for Enzyme Evolution, Yields Highly Active TEV Protease Variants | ACS Synthetic Biology

Phage-Related Ribosomal Protease (Prp) of Staphylococcus aureus: In Vitro  Michaelis–Menten Kinetics, Screening for Inhibitors, and Crystal Structure  of a Covalent Inhibition Product Complex | Biochemistry
Phage-Related Ribosomal Protease (Prp) of Staphylococcus aureus: In Vitro Michaelis–Menten Kinetics, Screening for Inhibitors, and Crystal Structure of a Covalent Inhibition Product Complex | Biochemistry

TEV protease - Wikipedia
TEV protease - Wikipedia

Directed evolution improves the catalytic efficiency of TEV protease
Directed evolution improves the catalytic efficiency of TEV protease

YESS 2.0, a Tunable Platform for Enzyme Evolution, Yields Highly Active TEV  Protease Variants | ACS Synthetic Biology
YESS 2.0, a Tunable Platform for Enzyme Evolution, Yields Highly Active TEV Protease Variants | ACS Synthetic Biology

Engineering of TEV protease variants by yeast ER sequestration screening  (YESS) of combinatorial libraries
Engineering of TEV protease variants by yeast ER sequestration screening (YESS) of combinatorial libraries

Protease Substrate Identification Using N-terminomics | ACS Chemical Biology
Protease Substrate Identification Using N-terminomics | ACS Chemical Biology

Tobacco etch virus (TEV) protease with multiple mutations to improve  solubility and reduce selfв•'cleavage exhibits enhance
Tobacco etch virus (TEV) protease with multiple mutations to improve solubility and reduce selfв•'cleavage exhibits enhance

PDF] Engineering of TEV protease variants by yeast ER sequestration  screening (YESS) of combinatorial libraries | Semantic Scholar
PDF] Engineering of TEV protease variants by yeast ER sequestration screening (YESS) of combinatorial libraries | Semantic Scholar

IJMS | Free Full-Text | A Leucyl-tRNA Synthetase Urzyme: Authenticity of  tRNA Synthetase Catalytic Activities and Promiscuous Phosphorylation of  Leucyl-5′AMP
IJMS | Free Full-Text | A Leucyl-tRNA Synthetase Urzyme: Authenticity of tRNA Synthetase Catalytic Activities and Promiscuous Phosphorylation of Leucyl-5′AMP

Improved yield, stability, and cleavage reaction of a novel tobacco etch  virus protease mutant | SpringerLink
Improved yield, stability, and cleavage reaction of a novel tobacco etch virus protease mutant | SpringerLink

PDF) A Novel Method for High-Level Production of TEV Protease by  Superfolder GFP Tag
PDF) A Novel Method for High-Level Production of TEV Protease by Superfolder GFP Tag

Tobacco etch virus (TEV) protease with multiple mutations to improve  solubility and reduce selfв•'cleavage exhibits enhance
Tobacco etch virus (TEV) protease with multiple mutations to improve solubility and reduce selfв•'cleavage exhibits enhance

Massively parallel, computationally-guided design of a pro-enzyme | bioRxiv
Massively parallel, computationally-guided design of a pro-enzyme | bioRxiv

Making the cut with protease engineering - ScienceDirect
Making the cut with protease engineering - ScienceDirect

Engineered ChymotrypsiN for Mass Spectrometry-Based Detection of Protein  Glycosylation | ACS Chemical Biology
Engineered ChymotrypsiN for Mass Spectrometry-Based Detection of Protein Glycosylation | ACS Chemical Biology