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首页> 外文期刊>Cellular and molecular life sciences: CMLS >A novel family of katanin-like 2 protein isoforms (KATNAL2), interacting with nucleotide-binding proteins Nubp1 and Nubp2, are key regulators of different MT-based processes in mammalian cells
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A novel family of katanin-like 2 protein isoforms (KATNAL2), interacting with nucleotide-binding proteins Nubp1 and Nubp2, are key regulators of different MT-based processes in mammalian cells

机译:与核苷酸结合蛋白Nupp1和Nupp2相互作用的新型的类单宁蛋白2蛋白同工型(KATNAL2)是哺乳动物细胞中基于MT的不同过程的关键调控因子

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摘要

Katanins are microtubule (MT)-severing AAA proteins with high phylogenetic conservation throughout the eukaryotes. They have been functionally implicated in processes requiring MT remodeling, such as spindle assembly in mitosis and meiosis, assembly/disassembly of flagella and cilia and neuronal morphogenesis. Here, we uncover a novel family of katanin-like 2 proteins (KATNAL2) in mouse, consisting of five alternatively spliced isoforms encoded by the Katnal2 genomic locus. We further demonstrate that in vivo these isoforms are able to interact with themselves, with each other and moreover directly and independently with MRP/MinD-type P-loop NTPases Nubp1 and Nubp2, which are integral components of centrioles, negative regulators of ciliogenesis and implicated in centriole duplication in mammalian cells. We find KATNAL2 localized on interphase MTs, centrioles, mitotic spindle, midbody and the axoneme and basal body of sensory cilia in cultured murine cells. shRNAi of Katnal2 results in inefficient cytokinesis and severe phenotypes of enlarged cells and nuclei, increased numbers of centrioles and the manifestation of aberrant multipolar mitotic spindles, mitotic defects, chromosome bridges, multinuclearity, increased MT acetylation and an altered cell cycle pattern. Silencing or stable overexpression of KATNAL2 isoforms drastically reduces ciliogenesis. In conclusion, KATNAL2s are multitasking enzymes involved in the same cell type in critically important processes affecting cytokinesis, MT dynamics, and ciliogenesis and are also implicated in cell cycle progression.
机译:Katanins是微管(MT)切割的AAA蛋白,在整个真核生物中具有高度的系统发育保守性。它们在功能上涉及需要MT重塑的过程,例如有丝分裂和减数分裂中的纺锤体组装,鞭毛和纤毛的组装/拆卸以及神经元形态发生。在这里,我们发现了一个新的家族中的类茄蛋白2家族蛋白(KATNAL2),该家族由Katnal2基因座编码的5个可变剪接的同工型组成。我们进一步证明,在体内这些同工型能够彼此相互作用,而且可以直接和独立地与MRP / MinD型P环NTPases Nubp1和Nubp2相互作用,它们是中心粒的组成部分,纤毛发生的负调控因子,并与之相关。在哺乳动物细胞中的中心粒复制中。我们发现KATNAL2定位于培养的鼠细胞中的相间MT,中心粒,有丝分裂纺锤体,中体以及感觉纤毛的轴突和基体。 Katnal2的shRNAi导致无效的胞质分裂和严重的细胞和细胞核表型,中心粒数量增加以及异常的多极有丝分裂纺锤体,有丝分裂缺陷,染色体桥,多核,MT乙酰化增加和细胞周期模式改变的表现。沉默或稳定的KATNAL2亚型的过表达会大大减少纤毛发生。总之,KATNAL2s是影响细胞分裂,MT动态和纤毛发生的至关重要过程中涉及同一细胞类型的多任务酶,也与细胞周期进程有关。

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