bioRxiv · 10.1101/2024.12.05.627008
Unambiguous assignment of kinked beta sheets leads to insights into molecular grammar of reversibility in biomolecular condensates
Abstract
Kinked-{beta} sheets are short peptide motifs that appear as distortions in {beta}-strands and often mediate formation of reversible amyloid fibrils in prion-like proteins. Standard methods for assigning secondary structures cannot distinguish these esoteric motifs. Here, we provide a supervised machine learning based structural quantification map to unambiguously characterize Kinked-{beta} sheets from coordinate data. We find that these motifs, although deviating from standard {beta}-strand region of the Ramachandran plot, scatter around the allowed regions. We also demonstrate the applicability of our technique in wresting out LARKS, which are kinked {beta}-strands with designated sequence. Additionally, from our exhaustive simulation generated conformations, we create a repository of potential kinked peptide-segments that can be used as a screening-library for assigning beta-kinks in unresolved coordinate dataset. Overall, our map for Kinked-{beta} provides a robust framework for detailed structural and kinetics investigation of these important motifs in prion-like proteins that lead to formation of amyloid fibrils.
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Roy, I., Appadurai, R., Srivastava, A.. 2024-12-06. Unambiguous assignment of kinked beta sheets leads to insights into molecular grammar of reversibility in biomolecular condensates. https://doi.org/10.1101/2024.12.05.627008
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