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Architecturally complex -glycopeptidases are customized for mucin recognition and hydrolysis

Proc Natl Acad Sci U S A. 2021-03; 
Benjamin Pluvinage, Elizabeth Ficko-Blean, Ilit Noach, Christopher Stuart, Nicole Thompson, Hayden McClure, Nakita Buenbrazo, Warren Wakarchuk, Alisdair B Boraston
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GenParts™ DNA Fragments  The gene fragment encoding for the ZmpC construct was amplified from an Escherichia coli codon optimized gene (synthesized by GenScript) based on the sequence from C. perfringens strain CP4. Get A Quote

摘要

A challenge faced by peptidases is the recognition of highly diverse substrates. A feature of some peptidase families is the capacity to specifically use post-translationally added glycans present on their protein substrates as a recognition determinant. This is ultimately critical to enabling peptide bond hydrolysis. This class of enzyme is also frequently large and architecturally sophisticated. However, the molecular details underpinning glycan recognition by these -glycopeptidases, the importance of these interactions, and the functional roles of their ancillary domains remain unclear. Here, using the ZmpA, ZmpB, and ZmpC M60 peptidases as model proteins, we provide structural and functional insight into h... More

关键词

Clostridium, O-glycan, mucin, multimodular, structure