Article ID Journal Published Year Pages File Type
1391310 Chemistry & Biology 2012 9 Pages PDF
Abstract

SummarySmall heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation through binding nonnative target proteins. Due to their heterogeneity, these sHSP:target complexes remain poorly understood. We present a nanoelectrospray mass spectrometry analysis algorithm for estimating the distribution of stoichiometries comprising a polydisperse ensemble of oligomers. We thus elucidate the organization of complexes formed between sHSPs and different target proteins. We find that binding is mass dependent, with the resultant complexes reflecting the native quaternary architecture of the target, indicating that protection happens early in the denaturation. Our data therefore explain the apparent paradox of how variable complex morphologies result from the generic mechanism of protection afforded by sHSPs. Our approach is applicable to a range of polydisperse proteins and provides a means for the automated and accurate interpretation of mass spectra derived from heterogeneous protein assemblies.

► Heterogeneous complexes of small heat-shock proteins with destabilized targets ► Organization of intact complexes interrogated by means of mass spectrometry ► Mass spectra deconvoluted by using CHAMP, a data analysis algorithm ► Small heat-shock proteins protect targets rapidly and in a mass-dependent manner

Related Topics
Physical Sciences and Engineering Chemistry Organic Chemistry
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