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酿酒酵母的Spo12蛋白:一种有丝分裂退出的调节因子,其细胞周期依赖性降解由后期促进复合物介导。

The Spo12 protein of Saccharomyces cerevisiae: a regulator of mitotic exit whose cell cycle-dependent degradation is mediated by the anaphase-promoting complex.

作者信息

Shah R, Jensen S, Frenz L M, Johnson A L, Johnston L H

机构信息

National Institute for Medical Research, Medical Research Council, London NW7 1AA, United Kingdom.

出版信息

Genetics. 2001 Nov;159(3):965-80. doi: 10.1093/genetics/159.3.965.

DOI:10.1093/genetics/159.3.965
PMID:11729145
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1461877/
Abstract

The Spo12 protein plays a regulatory role in two of the most fundamental processes of biology, mitosis and meiosis, and yet its biochemical function remains elusive. In this study we concentrate on the genetic and biochemical analysis of its mitotic function. Since high-copy SPO12 is able to suppress a wide variety of mitotic exit mutants, all of which arrest with high Clb-Cdc28 activity, we speculated whether SPO12 is able to facilitate exit from mitosis when overexpressed by antagonizing mitotic kinase activity. We show, however, that Spo12 is not a potent regulator of Clb-Cdc28 activity and can function independently of either the cyclin-dependent kinase inhibitor (CDKi), Sic1, or the anaphase-promoting complex (APC) regulator, Hct1. Spo12 protein level is regulated by the APC and the protein is degraded in G1 by an Hct1-dependent mechanism. We also demonstrate that in addition to localizing to the nucleus Spo12 is a nucleolar protein. We propose a model where overexpression of Spo12 may lead to the delocalization of a small amount of Cdc14 from the nucleolus, resulting in a sufficient lowering of mitotic kinase levels to facilitate mitotic exit. Finally, site-directed mutagenesis of highly conserved residues in the Spo12 protein sequence abolishes both its mitotic suppressor activity as well as its meiotic function. This result is the first indication that Spo12 may carry out the same biochemical function in mitosis as it does in meiosis.

摘要

Spo12蛋白在生物学中两个最基本的过程——有丝分裂和减数分裂中发挥调节作用,但其生化功能仍不清楚。在本研究中,我们专注于对其有丝分裂功能进行遗传和生化分析。由于高拷贝的SPO12能够抑制多种有丝分裂退出突变体,所有这些突变体都因高Clb-Cdc28活性而停滞,我们推测当SPO12过表达时,它是否能够通过拮抗有丝分裂激酶活性来促进有丝分裂退出。然而,我们发现Spo12不是Clb-Cdc28活性的有效调节因子,其功能独立于细胞周期蛋白依赖性激酶抑制剂(CDKi)Sic1或后期促进复合物(APC)调节因子Hct1。Spo12蛋白水平受APC调节,并且该蛋白在G1期通过依赖Hct1的机制被降解。我们还证明,除了定位于细胞核外,Spo12还是一种核仁蛋白。我们提出了一个模型,其中Spo12的过表达可能导致少量Cdc14从核仁中脱离,从而使有丝分裂激酶水平充分降低,以促进有丝分裂退出。最后,对Spo12蛋白序列中高度保守的残基进行定点诱变,消除了其有丝分裂抑制活性以及减数分裂功能。这一结果首次表明,Spo12在有丝分裂中可能执行与其在减数分裂中相同的生化功能。

相似文献

1
The Spo12 protein of Saccharomyces cerevisiae: a regulator of mitotic exit whose cell cycle-dependent degradation is mediated by the anaphase-promoting complex.酿酒酵母的Spo12蛋白:一种有丝分裂退出的调节因子,其细胞周期依赖性降解由后期促进复合物介导。
Genetics. 2001 Nov;159(3):965-80. doi: 10.1093/genetics/159.3.965.
2
A late mitotic regulatory network controlling cyclin destruction in Saccharomyces cerevisiae.一个控制酿酒酵母细胞周期蛋白降解的后期有丝分裂调控网络。
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3
Inhibitory phosphorylation of the APC regulator Hct1 is controlled by the kinase Cdc28 and the phosphatase Cdc14.细胞周期后期促进复合物(APC)调节因子Hct1的抑制性磷酸化由激酶Cdc28和磷酸酶Cdc14控制。
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本文引用的文献

1
spo12 is a multicopy suppressor of mcs3 that is periodically expressed in fission yeast mitosis.spo12是mcs3的多拷贝抑制因子,在裂殖酵母有丝分裂过程中周期性表达。
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Cdc14 activates cdc15 to promote mitotic exit in budding yeast.在芽殖酵母中,Cdc14激活Cdc15以促进有丝分裂退出。
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Progression into and out of mitosis.有丝分裂的进入与退出。
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The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms.SIR2/3/4复合物及单独的SIR2通过两种不同机制延长酿酒酵母的寿命。
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Cfi1 prevents premature exit from mitosis by anchoring Cdc14 phosphatase in the nucleolus.Cfi1通过将Cdc14磷酸酶锚定在核仁中来防止有丝分裂过早退出。
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Net1, a Sir2-associated nucleolar protein required for rDNA silencing and nucleolar integrity.Net1,一种与Sir2相关的核仁蛋白,是核糖体DNA沉默和核仁完整性所必需的。
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Exit from mitosis is triggered by Tem1-dependent release of the protein phosphatase Cdc14 from nucleolar RENT complex.有丝分裂的退出是由Tem1依赖的蛋白磷酸酶Cdc14从核仁RENT复合物中释放所触发的。
Cell. 1999 Apr 16;97(2):233-44. doi: 10.1016/s0092-8674(00)80733-3.