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首页> 外文期刊>Journal of cell biology >A novel role for the CBF3 kinetochore–scaffold complex in regulating septin dynamics and cytokinesis
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A novel role for the CBF3 kinetochore–scaffold complex in regulating septin dynamics and cytokinesis

机译:CBF3 Kinetochore-Scaffold复合物在调节Septin Dynamics和Cytokinesis中的一种新颖作用

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摘要

In budding yeast, the kinetochore scaffold complex centromere binding factor 3 (CBF3) is required to form kinetochores on centromere DNA and to allow proper chromosome segregation. We have previously shown that SKP1 and SGT1 balance the assembly and turnover of CBF3 complexes, a cycle that we suggest is independent of its role in chromosome segregation (Rodrigo-Brenni, M.C., S. Thomas, D.C. Bouck, and K.B. Kaplan. 2004. Mol. Biol. Cell. 15:3366–3378). We provide evidence that this cycle contributes to a second, kinetochore-independent function of CBF3. In this study, we show that inhibiting the assembly of CBF3 causes disorganized septins and defects in cell polarity that give rise to cytokinesis failures. Specifically, we show that septin ring separation and disassembly is delayed in anaphase, suggesting that CBF3 regulates septin dynamics. Only mutations that affect the CBF3 cycle, and not mutants in outer kinetochore subunits, cause defects in septins. These results demonstrate a novel role for CBF3 in regulating cytokinesis, a role that is reminiscent of passenger proteins. Consistent with this possibility, we find that CBF3 interacts with Bir1p, the homologue of the passenger protein Survivin. Mutants in Bir1p similarly affect septin organization, leading us to propose that CBF3 and Bir1p act as passenger proteins to coordinate chromosome segregation with cytokinesis.
机译:在萌芽酵母中,需要Kinetochore支架复合符号结合因子3(CBF3)需要在Centromere DNA上形成Kinetochores并允许适当的染色体隔离。我们之前已经表明SKP1和SGT1平衡CBF3复合物的组装和营业额,我们建议的循环与其在染色体隔离中的作用无关(Rodrigo-Brenni,MC,S. Thomas,DC Bouck和KB Kaplan。2004。摩尔。BIOL。细胞。15:3366-3378)。我们提供了证据表明该循环有助于CBF3的第二个Kinetochore的功能。在这项研究中,我们表明,抑制CBF3的组装导致细胞极性的紊乱调节和缺陷导致细胞因子失败。具体而言,我们表明Septin环分离和拆卸在后期延迟,表明CBF3调节静止动力学。只有影响CBF3循环的突变,而不是外血管沉积亚基的突变体,导致静止的缺陷。这些结果表明CBF3在调节细胞因子方面的一种新颖作用,这是让乘客蛋白质中死的作用。与这种可能性一致,我们发现CBF3与BiR1P相互作用,乘客蛋白质Survivin的同源物。 BiR1P中的突变体同样影响SEPTIN组织,导致我们提出CBF3和BIR1P作为乘用剂蛋白,以坐标用细胞因子坐标偏析。

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