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Structural basis for midbody targeting of spastin by the ESCRT-III protein CHMP1B

机译:ESCRT-III蛋白CHMP1B靶向spastin的中体的结构基础

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摘要

The endosomal sorting complex required for transport (ESCRT) machinery, including ESCRT-III, localizes to the midbody and participates in the membrane-abscission step of cytokinesis. The ESCRT-III protein charged multivesicular body protein 1B (CHMP1B) is required for recruitment of the MIT domain-containing protein spastin, a microtubule-severing enzyme, to the midbody. The 2.5-angstrom structure of the C-terminal tail of CHMP1B with the MIT domain of spastin reveals a specific, high-affinity complex involving a noncanonical binding site between the first and third helices of the MIT domain. The structural interface is twice as large as that of the MIT domain of the VPS4-CHMP complex, consistent with the high affinity of the interaction. A series of unique hydrogen-bonding interactions and close packing of small side chains discriminate against the other ten human ESCRT-III subunits. Point mutants in the CHMP1B binding site of spastin block recruitment of spastin to the midbody and impair cytokinesis.
机译:运输(ESCRT)机械所需的内体分选复合物,包括ESCRT-III,位于中体并参与胞质分裂的膜脱落步骤。需要将带ESCRT-III蛋白的多囊泡体蛋白1B(CHMP1B)募集到包含MIT域的蛋白spastin(一种微管切断酶)。 CHMP1B带有spastin的MIT域的C末端尾巴的2.5埃结构揭示了一种特定的高亲和力复合物,该复合物涉及MIT域的第一个和第三个螺旋之间的非规范结合位点。结构界面的大小是VPS4-CHMP复合体的MIT域的两倍,这与相互作用的高亲和力一致。一系列独特的氢键相互作用和小侧链的紧密堆积可区别其他十种人类ESCRT-III亚基。 spastin的CHMP1B结合位点中的点突变体阻止spastin募集到中体并损害胞质分裂。

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