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An ester bond underlies the mechanical strength of a pathogen surface protein

Nat Commun. 2021-08; 
Hai Lei, Quan Ma, Wenfei Li, Jing Wen, Haibo Ma, Meng Qin, Wei Wang, Yi Cao
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Custom Vector Construction … were custom synthesized codon-optimized for expression in Escherichia Coli (GenScript, China), and designed to include 5′ BamHI, 3′ BglII, and KpnI restriction sites. The genes encoding the chimeras used in this work were constructed in the pQE80L vector (Qiagen, … Get A Quote

摘要

Gram-positive bacteria can resist large mechanical perturbations during their invasion and colonization by secreting various surface proteins with intramolecular isopeptide or ester bonds. Compared to isopeptide bonds, ester bonds are prone to hydrolysis. It remains elusive whether ester bonds can completely block mechanical extension similarly to isopeptide bonds, or whether ester bonds dissipate mechanical energy by bond rupture. Here, we show that an ester-bond containing stalk domain of Cpe0147 is inextensible even at forces > 2 nN. The ester bond locks the structure to a partially unfolded conformation, in which the ester bond remains largely water inaccessible. This allows the ester bond to withstan... More

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