An intramolecular chaperone inserted in bacteriophage P22 coat protein mediates its chaperonin-independent folding

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Abstract

The bacteriophage P22 coat protein has the common HK97-like fold but with a genetically inserted domain (I-domain). The role of the I-domain, positioned at the outermost surface of the capsid, is unknown. We hypothesize that the I-domain may act as an intramolecular chaperone because the coat protein folds independently, and many folding mutants are localized to the I-domain.The functionofthe I-domain was investigatedbygenerating the coat protein core without its I-domain and the isolated I-domain. The core coat protein shows a pronounced folding defect. The isolated I-domain folds autonomously and has a high thermodynamic stability and fast folding kinetics in the presence of apeptidyl prolyl isomerase. Thus, the I-domain provides thermodynamic stability to the full-length coat protein so that it can fold reasonably efficiently while still allowing the HK97-like core to retain the flexibility required for conformational switching during procapsid assembly and maturation. © 2013 by The American Society for Biochemistry and Molecular Biology, Inc.

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Suhanovsky, M. M., & Teschke, C. M. (2013). An intramolecular chaperone inserted in bacteriophage P22 coat protein mediates its chaperonin-independent folding. Journal of Biological Chemistry, 288(47), 33772–33783. https://doi.org/10.1074/jbc.M113.515312

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