Single point mutations in disordered proteins: linking sequence, ensemble, and function

13 December 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Mutations in genomic DNA often result in single-point missense mutations in proteins. For most folded proteins, the functional effect of these missense mutations can be understood by their impact on structure. However, missense mutations in intrinsically disordered protein regions (IDRs) remain poorly understood. In IDRs, function can depend on the structural ensemble - the collection of accessible, interchanging conformations that is encoded in their amino acid sequence. We argue that, analogously to folded proteins, single point mutations in IDRs can alter their structural ensemble, and consequently alter their biological function. To make this argument, we first provide experimental evidence from the literature showcasing how single point missense mutations in IDRs affect their ensemble dimensions. Then, we use genomic data from patients to show that disease-linked missense mutations occurring in IDRs can, in many cases, affect the IDR ensembles. We hope this analysis prompts further study of disease-linked, single-point mutations in IDRs.

Keywords

Intrinsically disordered proteins
Ensemble structure
Missense mutations
Single nucleotide polymorphosm
clinvar

Supplementary weblinks

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