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DIAPH3 缺失将微管与有丝分裂错误、神经发生缺陷和大脑功能障碍联系起来。

DIAPH3 deficiency links microtubules to mitotic errors, defective neurogenesis, and brain dysfunction.

机构信息

Université catholique de Louvain, Institute of Neuroscience, Developmental Neurobiology, Brussels, Belgium.

Université catholique de Louvain, Institute of Neuroscience, Mammalian Development and Cell Biology, Brussels, Belgium.

出版信息

Elife. 2021 Apr 26;10:e61974. doi: 10.7554/eLife.61974.

Abstract

Diaphanous (DIAPH) three (DIAPH3) is a member of the formin proteins that have the capacity to nucleate and elongate actin filaments and, therefore, to remodel the cytoskeleton. DIAPH3 is essential for cytokinesis as its dysfunction impairs the contractile ring and produces multinucleated cells. Here, we report that DIAPH3 localizes at the centrosome during mitosis and regulates the assembly and bipolarity of the mitotic spindle. DIAPH3-deficient cells display disorganized cytoskeleton and multipolar spindles. DIAPH3 deficiency disrupts the expression and/or stability of several proteins including the kinetochore-associated protein SPAG5. DIAPH3 and SPAG5 have similar expression patterns in the developing brain and overlapping subcellular localization during mitosis. Knockdown of SPAG5 phenocopies DIAPH3 deficiency, whereas its overexpression rescues the DIAHP3 knockdown phenotype. Conditional inactivation of in mouse cerebral cortex profoundly disrupts neurogenesis, depleting cortical progenitors and neurons, leading to cortical malformation and autistic-like behavior. Our data uncover the uncharacterized functions of DIAPH3 and provide evidence that this protein belongs to a molecular toolbox that links microtubule dynamics during mitosis to aneuploidy, cell death, fate determination defects, and cortical malformation.

摘要

细丝蛋白(DIAPH)三(DIAPH3)是形成蛋白的成员,具有成核和延长肌动蛋白丝的能力,因此能够重塑细胞骨架。DIAPH3 对胞质分裂是必不可少的,因为其功能障碍会损害收缩环并产生多核细胞。在这里,我们报告 DIAPH3 在有丝分裂期间定位于中心体,并调节有丝分裂纺锤体的组装和双极性。DIAPH3 缺陷细胞表现出细胞骨架紊乱和多极纺锤体。DIAPH3 缺乏会破坏包括着丝粒相关蛋白 SPAG5 在内的几种蛋白质的表达和/或稳定性。DIAPH3 和 SPAG5 在发育中的大脑中具有相似的表达模式,并在有丝分裂期间具有重叠的亚细胞定位。SPAG5 的敲低可模拟 DIAPH3 缺乏表型,而过表达 SPAG5 可挽救 DIAPH3 敲低表型。在小鼠大脑皮层中条件性失活 会严重破坏神经发生,耗尽皮质祖细胞和神经元,导致皮质畸形和类似自闭症的行为。我们的数据揭示了 DIAPH3 的未被表征的功能,并提供了证据表明该蛋白属于一个分子工具箱,该工具箱将有丝分裂期间的微管动力学与非整倍体、细胞死亡、命运决定缺陷和皮质畸形联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1141/8102060/ca71f76f6e9d/elife-61974-fig1.jpg

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