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  • Cryo-EM structure of the Mon1-Ccz1-RMC1 complex reveals molecular basis of metazoan RAB7A activation.

Cryo-EM structure of the Mon1-Ccz1-RMC1 complex reveals molecular basis of metazoan RAB7A activation.

Proceedings of the National Academy of Sciences of the United States of America (2023-05-22)
Xin Yong, Guowen Jia, Zhe Liu, Chunzhuang Zhou, Jiamin Yi, Yingying Tang, Li Chen, Lu Chen, Yuan Wang, Qingxiang Sun, Daniel D Billadeau, Zhaoming Su, Da Jia
摘要

Understanding of the evolution of metazoans from their unicellular ancestors is a fundamental question in biology. In contrast to fungi which utilize the Mon1-Ccz1 dimeric complex to activate the small GTPase RAB7A, metazoans rely on the Mon1-Ccz1-RMC1 trimeric complex. Here, we report a near-atomic resolution cryogenic-electron microscopy structure of the Drosophila Mon1-Ccz1-RMC1 complex. RMC1 acts as a scaffolding subunit and binds to both Mon1 and Ccz1 on the surface opposite to the RAB7A-binding site, with many of the RMC1-contacting residues from Mon1 and Ccz1 unique to metazoans, explaining the binding specificity. Significantly, the assembly of RMC1 with Mon1-Ccz1 is required for cellular RAB7A activation, autophagic functions and organismal development in zebrafish. Our studies offer a molecular explanation for the different degree of subunit conservation across species, and provide an excellent example of how metazoan-specific proteins take over existing functions in unicellular organisms.

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Protease Inhibitor Cocktail, for use with mammalian cell and tissue extracts, DMSO solution
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磷酸酶抑制剂混合物2, aqueous solution (dark coloration may develop upon storage, which does not affect the activity)