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Im30 Idps Form A Membrane-Protective Carpet Upon Super-Complex Disassembly

COMMUNICATIONS BIOLOGY(2020)

引用 13|浏览31
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摘要
Members of the phage shock protein A (PspA) family, including the inner membrane-associated protein of 30kDa (IM30), are suggested to stabilize stressed cellular membranes. Furthermore, IM30 is essential in thylakoid membrane-containing chloroplasts and cyanobacteria, where it is involved in membrane biogenesis and/or remodeling. While it is well known that PspA and IM30 bind to membranes, the mechanism of membrane stabilization is still enigmatic. Here we report that ring-shaped IM30 super-complexes disassemble on membranes, resulting in formation of a membrane-protecting protein carpet. Upon ring dissociation, the C-terminal domain of IM30 unfolds, and the protomers self-assemble on membranes. IM30 assemblies at membranes have been observed before in vivo and were associated with stress response in cyanobacteria and chloroplasts. These assemblies likely correspond to the here identified carpet structures. Our study defines the thus far enigmatic structural basis for the physiological function of IM30 and related proteins, including PspA, and highlights a hitherto unrecognized concept of membrane stabilization by intrinsically disordered proteins. Junglas et al. probe into the mechanism of membrane stabilization by the inner membrane-associated protein of 30kDa (IM30), a member of the phage shock protein A (PspA) family, and report that ring-shaped IM30 super-complexes disassemble upon binding to negatively charged membrane surfaces, involving partly unfolding of the monomers and formation of a membrane-protecting carpet. This study highlights the structural role of intrinsically disordered proteins in membrane stabilization.
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