Force-induced remodelling of proteins and their complexes.

Abstract:

:Force can drive conformational changes in proteins, as well as modulate their stability and the affinity of their complexes, allowing a mechanical input to be converted into a biochemical output. These properties have been utilised by nature and force is now recognised to be widely used at the cellular level. The effects of force on the biophysical properties of biological systems can be large and varied. As these effects are only apparent in the presence of force, studies on the same proteins using traditional ensemble biophysical methods can yield apparently conflicting results. Where appropriate, therefore, force measurements should be integrated with other experimental approaches to understand the physiological context of the system under study.

journal_name

Curr Opin Struct Biol

authors

Chen Y,Radford SE,Brockwell DJ

doi

10.1016/j.sbi.2015.02.001

subject

Has Abstract

pub_date

2015-02-01 00:00:00

pages

89-99

eissn

0959-440X

issn

1879-033X

pii

S0959-440X(15)00010-X

journal_volume

30

pub_type

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