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BIMAAPC3是烟曲霉后期促进复合体/细胞周期体的一个组成部分,在缺乏NIMA功能时,它是G2期阻止进入有丝分裂的检查点所必需的。

BIMAAPC3, a component of the Aspergillus anaphase promoting complex/cyclosome, is required for a G2 checkpoint blocking entry into mitosis in the absence of NIMA function.

作者信息

Lies C M, Cheng J, James S W, Morris N R, O'Connell M J, Mirabito P M

机构信息

Molecular and Cellular Biology Section, School of Biological Sciences, University of Kentucky, Lexington, KY 40506-0225, USA.

出版信息

J Cell Sci. 1998 May;111 ( Pt 10):1453-65. doi: 10.1242/jcs.111.10.1453.

Abstract

Temperature sensitive (ts) nimA mutants of Aspergillus nidulans arrest at a unique point in G2 which is post activation of CDC2. Here we show that this G2 arrest is due to loss of nimA function and that it is dependent on BIMAAPC3, a component of the anaphase promoting complex/cyclosome (APC/C). Whereas nimA single mutants arrested in G2 with decondensed chromatin and interphase microtubule arrays, nimA, bimAAPC3 double mutants arrested growth with condensed chromatin and aster-like microtubule arrays. nimA, bimAAPC3 double mutants entered mitosis with kinetics similar to bimAAPC3 single mutants and wild-type cells, indicating a checkpoint-like role for BIMAAPC3 in G2. Even cells which had been depleted for NIMA protein and which contained insignificant levels of NIMA kinase activity entered mitosis on inactivation of bimAAPC3. BIMAAPC3 was present in a >25S complex containing BIMEAPC1, and bimAAPC3 mutants were sensitive to elevated CYCLIN B expression, consistent with BIMAAPC3 being a component of the APC/C. Inactivation of bimAAPC3 had little affect on the steady state levels of the B-type cyclin, NIMECyclin B. Our results indicate that BIMAAPC3, and most likely the APC/C itself, is activated in G2 in nimA mutants. We propose that APC/C activation is part of a novel, late G2 checkpoint, which responds to a defective process or structure in nimA mutants, and which prevents inappropriate entry into mitosis.

摘要

构巢曲霉的温度敏感(ts)nimA突变体在G2期的一个独特时间点停滞,该时间点在CDC2激活之后。我们在此表明,这种G2期停滞是由于nimA功能丧失所致,并且它依赖于后期促进复合物/细胞周期体(APC/C)的一个组分BIMAAPC3。虽然nimA单突变体在G2期停滞,染色质解聚且具有间期微管阵列,但nimA、bimAAPC3双突变体则以染色质凝聚和星状微管阵列的形式停滞生长。nimA、bimAAPC3双突变体进入有丝分裂的动力学与bimAAPC3单突变体和野生型细胞相似,表明BIMAAPC3在G2期具有类似关卡的作用。即使是NIMA蛋白已被耗尽且NIMA激酶活性水平极低的细胞,在bimAAPC3失活时也会进入有丝分裂。BIMAAPC3存在于一个包含BIMEAPC1的>25S复合物中,并且bimAAPC3突变体对细胞周期蛋白B表达升高敏感,这与BIMAAPC3作为APC/C的一个组分相一致。bimAAPC3失活对B型细胞周期蛋白NIMECyclin B的稳态水平影响很小。我们的结果表明,在nimA突变体中,BIMAAPC3以及很可能APC/C本身在G2期被激活。我们提出,APC/C激活是一个新的G2期晚期关卡的一部分,该关卡对nimA突变体中的缺陷过程或结构作出反应,并防止不适当进入有丝分裂。

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