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Proteomic data and structure analysis combined reveal interplay of structural rigidity and flexibility on selectivity of cysteine cathepsins

Communications Biology. 2023-04; 
Livija Tu ar; Jure Loboda; Francis Impens; Piotr Sosnowski; Emmy Van Quickelberghe; Robert Vidmar; Hans Demol; Koen Sedeyn; Xavier Saelens; Matej Vizovi ek; Marko Miheli ; Marko Fonovi ; Jaka Horvat; Gregor Kosec; Boris Turk; Kris Gevaert; Du an Turk
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摘要

Addressing the elusive specificity of cysteine cathepsins, which in contrast to caspases and trypsin-like proteases lack strict specificity determining P1 pocket, calls for innovative approaches. Proteomic analysis of cell lysates with human cathepsins K, V, B, L, S, and F identified 30,000 cleavage sites, which we analyzed by software platform SAPS-ESI (Statistical Approach to Peptidyl Substrate-Enzyme Specific Interactions). SAPS-ESI is used to generate clusters and training sets for support vector machine learning. Cleavage site predictions on the SARS-CoV-2 S protein, confirmed experimentally, expose the most probable first cut under physiological conditions and suggested furin-like behavior of cathepsins. ... More

关键词

Proteases, Drug discovery