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首页> 外文期刊>Molecular biology of the cell >Functional Analysis of Human Microtubule-based Motor Proteins, the Kinesins and Dyneins, in Mitosis/Cytokinesis Using RNA Interference
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Functional Analysis of Human Microtubule-based Motor Proteins, the Kinesins and Dyneins, in Mitosis/Cytokinesis Using RNA Interference

机译:基于RNA干扰的人类有丝微管运动蛋白,驱动蛋白和动力蛋白在有丝分裂/胞质分裂中的功能分析

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摘要

Microtubule (MT)-based motor proteins, kinesins and dyneins, play important roles in multiple cellular processes including cell division. In this study, we describe the generation and use of an Escherichia coli RNase III-prepared human kinesin/dynein esiRNA library to systematically analyze the functions of all human kinesin/dynein MT motor proteins. Our results indicate that at least 12 kinesins are involved in mitosis and cytokinesis. Eg5 (a member of the kinesin-5 family), Kif2A (a member of the kinesin-13 family), and KifC1 (a member of the kinesin-14 family) are crucial for spindle formation; KifC1, MCAK (a member of the kinesin-13 family), CENP-E (a member of the kinesin-7 family), Kif14 (a member of the kinesin-3 family), Kif18 (a member of the kinesin-8 family), and Kid (a member of the kinesin-10 family) are required for chromosome congression and alignment; Kif4A and Kif4B (members of the kinesin-4 family) have roles in anaphase spindle dynamics; and Kif4A, Kif4B, MKLP1, and MKLP2 (members of the kinesin-6 family) are essential for cytokinesis. Using immunofluorescence analysis, time-lapse microscopy, and rescue experiments, we investigate the roles of these 12 kinesins in detail.
机译:基于微管(MT)的运动蛋白,驱动蛋白和动力蛋白在多种细胞过程(包括细胞分裂)中发挥重要作用。在这项研究中,我们描述了大肠杆菌RNase III制备的人驱动蛋白/动力蛋白esiRNA文库的产生和使用,以系统分析所有人驱动蛋白/动力蛋白MT电机蛋白的功能。我们的结果表明,至少12种驱动蛋白参与有丝分裂和胞质分裂。 Eg5(kinesin-5家族的成员),Kif2A(kinesin-13家族的成员)和KifC1(kinesin-14家族的成员)对于纺锤体形成至关重要。 KifC1,MCAK(kinesin-13家族成员),CENP-E(kinesin-7家族成员),Kif14(kinesin-3家族成员),Kif18(kinesin-8家族成员) )和Kid(驱动蛋白10家族的成员)进行染色体大会和比对; Kif4A和Kif4B(驱动蛋白4家族的成员)在后期纺锤体动力学中起作用; Kif4A,Kif4B,MKLP1和MKLP2(驱动蛋白6家族的成员)对于胞质分裂是必不可少的。使用免疫荧光分析,延时显微镜和救援实验,我们详细研究了这12种驱动蛋白的作用。

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