Journey to the center of the protein: allostery from multitemperature multiconformer X-ray crystallography.


Journal

Acta crystallographica. Section D, Structural biology
ISSN: 2059-7983
Titre abrégé: Acta Crystallogr D Struct Biol
Pays: United States
ID NLM: 101676043

Informations de publication

Date de publication:
01 Feb 2019
Historique:
received: 06 04 2018
accepted: 19 12 2018
entrez: 2 3 2019
pubmed: 2 3 2019
medline: 14 6 2019
Statut: ppublish

Résumé

Proteins inherently fluctuate between conformations to perform functions in the cell. For example, they sample product-binding, transition-state-stabilizing and product-release states during catalysis, and they integrate signals from remote regions of the structure for allosteric regulation. However, there is a lack of understanding of how these dynamic processes occur at the basic atomic level. This gap can be at least partially addressed by combining variable-temperature (instead of traditional cryogenic temperature) X-ray crystallography with algorithms for modeling alternative conformations based on electron-density maps, in an approach called multitemperature multiconformer X-ray crystallography (MMX). Here, the use of MMX to reveal alternative conformations at different sites in a protein structure and to estimate the degree of energetic coupling between them is discussed. These insights can suggest testable hypotheses about allosteric mechanisms. Temperature is an easily manipulated experimental parameter, so the MMX approach is widely applicable to any protein that yields well diffracting crystals. Moreover, the general principles of MMX are extensible to other perturbations such as pH, pressure, ligand concentration etc. Future work will explore strategies for leveraging X-ray data across such perturbation series to more quantitatively measure how different parts of a protein structure are coupled to each other, and the consequences thereof for allostery and other aspects of protein function.

Identifiants

pubmed: 30821702
pii: S2059798318017941
doi: 10.1107/S2059798318017941
pmc: PMC6400254
doi:

Substances chimiques

Ligands 0
Proteins 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

123-137

Informations de copyright

open access.

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Auteurs

Daniel A Keedy (DA)

Structural Biology Initiative, CUNY Advanced Science Research Center, New York, USA.

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