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X 连锁智力障碍相关泛素连接酶 Mid2 与 Astrin 相互作用并调节 Astrin 水平以促进细胞分裂。

The X-Linked-Intellectual-Disability-Associated Ubiquitin Ligase Mid2 Interacts with Astrin and Regulates Astrin Levels to Promote Cell Division.

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, CA 90095, USA.

Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, CA 90095, USA; Program in Bioengineering, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Cell Rep. 2016 Jan 12;14(2):180-8. doi: 10.1016/j.celrep.2015.12.035. Epub 2015 Dec 31.

Abstract

Mid1 and Mid2 are ubiquitin ligases that regulate microtubule dynamics and whose mutation is associated with X-linked developmental disorders. We show that astrin, a microtubule-organizing protein, co-purifies with Mid1 and Mid2, has an overlapping localization with Mid1 and Mid2 at intercellular bridge microtubules, is ubiquitinated by Mid2 on lysine 409, and is degraded during cytokinesis. Mid2 depletion led to astrin stabilization during cytokinesis, cytokinetic defects, multinucleated cells, and cell death. Similarly, expression of a K409A mutant astrin in astrin-depleted cells led to the accumulation of K409A on intercellular bridge microtubules and an increase in cytokinetic defects, multinucleated cells, and cell death. These results indicate that Mid2 regulates cell division through the ubiquitination of astrin on K409, which is critical for its degradation and proper cytokinesis. These results could help explain how mutation of MID2 leads to misregulation of microtubule organization and the downstream disease pathology associated with X-linked intellectual disabilities.

摘要

Mid1 和 Mid2 是泛素连接酶,可调节微管动力学,其突变与 X 连锁发育障碍有关。我们发现 astrin 是一种微管组织蛋白,可与 Mid1 和 Mid2 共纯化,与 Mid1 和 Mid2 在细胞间桥微管上有重叠定位,可被 Mid2 在赖氨酸 409 上泛素化,并在胞质分裂过程中降解。Mid2 耗尽导致 astrin 在胞质分裂过程中稳定,胞质分裂缺陷,多核细胞和细胞死亡。类似地,在 astrin 耗尽的细胞中表达 K409A 突变 astrin 导致 K409A 在细胞间桥微管上积累,并增加胞质分裂缺陷、多核细胞和细胞死亡。这些结果表明 Mid2 通过 astrin 在 K409 上的泛素化来调节细胞分裂,这对其降解和正常胞质分裂至关重要。这些结果可以帮助解释为什么 MID2 的突变会导致微管组织的失调以及与 X 连锁智力障碍相关的下游疾病病理。

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