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October 31, 2016Proceedings of the National Academy of Sciences305 citationsOpen Access

SARS-CoV 3CL protease cleaves its C-terminal autoprocessing site by novel subsite cooperativity

TMTomonari MuramatsuCTChie TakemotoYKYongTae Kim

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Abstract

and the direct involvement of Phe(P2) itself. In contrast, the N-terminal prosequence with Leu(P2) does not cause such conformational changes for the S3' subsite formation. In fact, the mutation of Phe(P2) to Leu in the C-terminal autoprocessing site abolishes the dependence on Phe(P3'). These mechanisms explain why Phe is required at the P3' position when the P2 position is occupied by Phe rather than Leu, which reveals a type of subsite cooperativity. Moreover, the peptide consisting of P4-P1 with Leu(P2) inhibits protease activity, whereas that with Phe(P2) exhibits a much smaller inhibitory effect, because Phe(P3') is missing. Thus, this subsite cooperativity likely exists to avoid the autoinhibition of the enzyme by its mature C-terminal sequence, and to retain the efficient C-terminal autoprocessing by the use of Phe(P2).

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Cite This Study

Muramatsu et al. (2016) studied this question.

synapsesocial.com/papers/6a189e1d70dbaace42cf7e45https://doi.org/10.1073/pnas.1601327113
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