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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Ibd1p, a possible spindle pole body associated protein, regulates nuclear division and bud separation in Saccharomyces cerevisiae.
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Ibd1p, a possible spindle pole body associated protein, regulates nuclear division and bud separation in Saccharomyces cerevisiae.

机译:Ibd1p是一种可能的纺锤极体相关蛋白,可调节酿酒酵母中的核分裂和芽分离。

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摘要

The proper spatial and temporal coordination of mitosis and cytokinesis is essential for maintaining genomic integrity. We describe the identification and characterization of the Saccharomyces cerevisiae IBD1 gene, which encodes a novel protein that regulates the proper nuclear division and bud separation. IBD1 was identified by the limited homology to byr4, a dosage-dependent regulator of cytokinesis in Schizosaccharomyces pombe. IBD1 is not an essential gene, and the knock-out cells show no growth defects except for the reduced mating efficiency [1]. However, upon ectopic expression from an inducible promoter, IBD1 is lethal to the cell and leads to abnormal nuclear division and bud separation. In detail, approximately 90% of the IBD1 overexpressing cells arrest at large bud stages with dividing or divided nuclei. In some IBD1 overexpressing cells, spindle elongation and chromosome separation occur within the mother cell, leading to anucleated and binucleate daughter cells. The anucleated cell can not bud, but the binucleate cell proceeds through another cell cycle(s) to produce a cell with multiple nuclei and multiple buds. Observations of the F-actin and chitin rings in the IBD1 overexpressing cells reveal that these cells lose the polarity for bud site selection and growth or attain the hyper-polarity for growth. Consistent with the phenotypes, the IBD1 overexpressing cells contain a broad range of DNA content, from 2 to 4 N or more. A functional Ibd1p-GFP fusion protein localizes to a single dot at the nuclear DNA boundary in the divided nuclei or to double dots in dividing nuclei, suggesting its localization on the spindle pole body (SPB). The cross-species expressions of IBD1 in S. pombe and byr4 in S. cerevisiae cause defects in shape, implicating the presence of a conserved mechanism for the control of cytokinesis in eukaryotes. We propose that Ibd1p is an SPB associated protein that links proper nuclear division to cytokinesis and bud separation.
机译:有丝分裂和胞质分裂的适当的时空协调对于维持基因组完整性至关重要。我们描述了酿酒酵母IBD1基因的鉴定和表征,该基因编码一种调节适当的核分裂和芽分离的新型蛋白质。 IBD1是通过与byr4的有限同源性鉴定的,byr4是粟酒裂殖酵母中胞质分裂的剂量依赖性调节剂。 IBD1不是必需的基因,敲除的细胞除交配效率降低外没有生长缺陷[1]。但是,从诱导型启动子异位表达后,IBD1对细胞具有致死性,并导致异常的核分裂和芽分离。详细地,大约90%的IBD1过表达细胞在分裂或分裂的核的大芽期停滞。在某些IBD1过表达细胞中,母细胞内发生纺锤体伸长和染色体分离,从而导致无核和双核子细胞。无核的细胞不能发芽,但是双核的细胞会经历另一个细胞周期,从而产生具有多个核和多个芽的细胞。对IBD1过表达细胞中F-肌动蛋白和几丁质环的观察表明,这些细胞失去了芽位选择和生长的极性,或达到了生长的超极性。与表型一致,IBD1过表达细胞包含2到4 N或更多的广泛DNA含量。功能性的Ibd1p-GFP融合蛋白位于分裂核的DNA边界处的单个点或分裂核中的双点,表明其位于纺锤极体(SPB)上。粟酒裂殖酵母中IBD1的种间表达和酿酒酵母中的byr4的种间表达引起形状缺陷,这暗示了在真核生物中控制胞质分裂的保守机制的存在。我们建议,Ibd1p是一种与SPB相关的蛋白,可将适当的核分裂与胞质分裂和芽分离联系起来。

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