Elucidating quantitative stability/flexibility relationships within thioredoxin and its fragments using a distance constraint model
about
Calculating ensemble averaged descriptions of protein rigidity without samplingRedistribution of flexibility in stabilizing antibody fragment mutants follows Le Châtelier's principleA case study comparing quantitative stability-flexibility relationships across five metallo-β-lactamases highlighting differences within NDM-1.Method for identification of rigid domains and hinge residues in proteins based on exhaustive enumeration.Helix/coil nucleation: a local response to global demands.Novel Ricin Subunit Antigens With Enhanced Capacity to Elicit Toxin-Neutralizing Antibody Responses in Mice.Predicting the melting point of human C-type lysozyme mutantsA signal processing method to explore similarity in protein flexibility.Ensemble properties of network rigidity reveal allosteric mechanisms.Changes in Lysozyme Flexibility upon Mutation Are Frequent, Large and Long-Ranged.Ensemble-based methods for describing protein dynamicsNonadditivity in conformational entropy upon molecular rigidification reveals a universal mechanism affecting folding cooperativity.Allosteric response is both conserved and variable across three CheY orthologs.Variations within class-A β-lactamase physiochemical properties reflect evolutionary and environmental patterns, but not antibiotic specificityNew insight into long-range nonadditivity within protein double-mutant cyclesThree dimensional structure directs T-cell epitope dominance associated with allergy.Rigidity Emerges during Antibody Evolution in Three Distinct Antibody Systems: Evidence from QSFR Analysis of Fab Fragments.Unifying mechanical and thermodynamic descriptions across the thioredoxin protein family.Thermodynamic stability and flexibility characteristics of antibody fragment complexes.Nonadditivity in the alpha-helix to coil transition.Hydrogen bond networks determine emergent mechanical and thermodynamic properties across a protein familyConformational Entropy of an Ideal Cross-Linking Polymer Chain.Characterizing protein motions from structure.Dynamics and thermodynamic properties of CXCL7 chemokine.
P2860
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P2860
Elucidating quantitative stability/flexibility relationships within thioredoxin and its fragments using a distance constraint model
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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2006年学术文章
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2006年学术文章
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name
Elucidating quantitative stabi ...... ng a distance constraint model
@ast
Elucidating quantitative stabi ...... ng a distance constraint model
@en
type
label
Elucidating quantitative stabi ...... ng a distance constraint model
@ast
Elucidating quantitative stabi ...... ng a distance constraint model
@en
prefLabel
Elucidating quantitative stabi ...... ng a distance constraint model
@ast
Elucidating quantitative stabi ...... ng a distance constraint model
@en
P2093
P2860
P1476
Elucidating quantitative stabi ...... ng a distance constraint model
@en
P2093
Dennis R Livesay
Donald J Jacobs
Jeremy Hules
Maria Luisa Tasayco
P2860
P304
P356
10.1016/J.JMB.2006.02.015
P407
P577
2006-02-24T00:00:00Z