Protein stability by number: high-throughput and statistical approaches to one of protein science's most difficult problems.
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Consensus protein designProtein stability: computation, sequence statistics, and new experimental methodsEffectiveness and limitations of local structural entropy optimization in the thermal stabilization of mesophilic and thermophilic adenylate kinasesStructural and dynamic properties that govern the stability of an engineered fibronectin type III domainConsensus design of a NOD receptor leucine rich repeat domain with binding affinity for a muramyl dipeptide, a bacterial cell wall fragmentStabilizing proteins from sequence statistics: the interplay of conservation and correlation in triosephosphate isomerase stability.Improved drug-like properties of therapeutic proteins by directed evolution.Construction of a stability landscape of the CH3 domain of human IgG1 by combining directed evolution with high throughput sequencing.Ligands for glaucoma-associated myocilin discovered by a generic binding assayDeep mutational scanning: a new style of protein scienceExploring the protein stability landscape: Bacillus subtilis lipase A as a model for detergent tolerance.A robust cosolvent-compatible halohydrin dehalogenase by computational library design.A fundamental protein property, thermodynamic stability, revealed solely from large-scale measurements of protein function.Modulating protein stability - directed evolution strategies for improved protein function.SDM: a server for predicting effects of mutations on protein stability.High-throughput identification of protein mutant stability computed from a double mutant fitness landscape.Optically induced thermal gradients for protein characterization in nanolitre-scale samples in microfluidic devices.Protein evolution analysis of S-hydroxynitrile lyase by complete sequence design utilizing the INTMSAlign software.Consensus engineering of sucrose phosphorylase: the outcome reflects the sequence input.Protein Stability: Enhancement and Measurement.Towards cell-free isobutanol production: Development of a novel immobilized enzyme system.Modeling protein folding in vivo.Rapid determination of protein stability and ligand binding by differential scanning fluorimetry of GFP-tagged proteins
P2860
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P2860
Protein stability by number: high-throughput and statistical approaches to one of protein science's most difficult problems.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 15 April 2011
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Protein stability by number: h ...... nce's most difficult problems.
@en
Protein stability by number: h ...... nce's most difficult problems.
@nl
type
label
Protein stability by number: h ...... nce's most difficult problems.
@en
Protein stability by number: h ...... nce's most difficult problems.
@nl
prefLabel
Protein stability by number: h ...... nce's most difficult problems.
@en
Protein stability by number: h ...... nce's most difficult problems.
@nl
P2860
P1476
Protein stability by number: h ...... ence's most difficult problems
@en
P2093
Brandon J Sullivan
Jason J Lavinder
P2860
P304
P356
10.1016/J.CBPA.2011.03.015
P577
2011-04-15T00:00:00Z