生物
蛋白质亚单位
GTP酶
计算生物学
细胞生物学
进化生物学
遗传学
基因
作者
Yong Xin,Guowen Jia,Zhe Liu,Chenchen Zhou,Jiamin Yi,Yingying Tang,Li Chen,Lu Chen,Yuan Wang,Qingxiang Sun,Daniel D. Billadeau,Zhaoming Su,Da Jia
标识
DOI:10.1073/pnas.2301725120
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI