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首页> 外文期刊>Journal of Cell Science >A NIMA homologue promotes chromatin condensation in fission yeast.
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A NIMA homologue promotes chromatin condensation in fission yeast.

机译:NIMA同系物促进裂变酵母中的染色质凝聚。

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摘要

Entry into mitosis requires p34(cdc2), which activates downstream mitotic events through phosphorylation of key target proteins. In Aspergillus nidulans, the NIMA protein kinase has been identified as a potential downstream target and plays a role in regulating chromatin condensation at mitosis. nimA- mutants arrest in a state that physically resembles interphase even though p34(cdc2) is fully active. Despite evidence for the existence of NIMA-like activities in a variety of cell types, the only bona fide NIMA homologue that has been identified is the nim-1 gene of Neurospora crassa. We report here the isolation of a fission yeast NIMA homologue, and have designated this gene fin1 and the 83 kDa predicted protein p83(fin1). Overexpression of fin1 promotes premature chromatin condensation from any point in the cell cycle independently of p34(cdc2) function. Like NIMA, p83(fin1) levels fluctuate through the cell cycle, peaking in mitosis and levels are greatly elevated by removal of C-terminal PEST sequences. Deletion of fin1 results in viable but elongated cells, indicative of a cell cycle delay. Genetic analysis has placed this delay in G2 but, unlike in nimA mutants of Aspergillus, p34(cdc2) activation appears to be delayed. Interaction of fin1 mutants with other strains defective in chromatin organisation also support the hypothesis of p83(fin1) playing a role in this process at the onset of mitosis. These data indicate that NIMA-related kinases may be a general feature of the cell cycle and chromatin organisation at mitosis.
机译:进入有丝分裂需要p34(cdc2),它通过关键靶蛋白的磷酸化激活下游有丝分裂事件。在构巢曲霉中,NIMA蛋白激酶已被鉴定为潜在的下游靶标,并在有丝分裂时调节染色质凝结中发挥作用。即使p34(cdc2)完全活跃,nimA突变体也会以类似于相间状态的状态停滞。尽管有证据表明在多种细胞类型中都存在类似NIMA的活性,但唯一已确定的真正的NIMA同源物是Neurospora crassa的nim-1基因。我们在这里报告裂变酵母NIMA同系物的分离,并已指定此基因fin1和83 kDa预测蛋白p83(fin1)。 fin1的过度表达可促进细胞周期中任何点的染色质早缩,而与p34(cdc2)功能无关。像NIMA一样,p83(fin1)水平在整个细胞周期中波动,有丝分裂达到峰值,并且通过去除C端PEST序列而大大提高了水平。 fin1的删除导致有活力的但延长的细胞,表明细胞周期延迟。遗传分析已将此延迟置于G2中,但与曲霉菌的nimA突变体不同,p34(cdc2)激活似乎被延迟了。 fin1突变体与染色质组织缺陷的其他菌株的相互作用也支持p83(fin1)在有丝分裂开始时在此过程中起作用的假说。这些数据表明,与NIMA相关的激酶可能是有丝分裂时细胞周期和染色质组织的一般特征。

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