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2
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Separable Crossover-Promoting and Crossover-Constraining Aspects of Zip1 Activity during Budding Yeast Meiosis.芽殖酵母减数分裂过程中Zip1活性的可分离的交叉促进和交叉限制方面
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10
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本文引用的文献

1
Two distinct surveillance mechanisms monitor meiotic chromosome metabolism in budding yeast.两种不同的监测机制可监测出芽酵母中的减数分裂染色体代谢。
Curr Biol. 2006 Dec 19;16(24):2473-9. doi: 10.1016/j.cub.2006.10.069.
2
The meiosis-specific zip4 protein regulates crossover distribution by promoting synaptonemal complex formation together with zip2.减数分裂特异性zip4蛋白通过与zip2共同促进联会复合体的形成来调节交叉分布。
Dev Cell. 2006 Jun;10(6):809-19. doi: 10.1016/j.devcel.2006.04.003.
3
Chromosome sites play dual roles to establish homologous synapsis during meiosis in C. elegans.在秀丽隐杆线虫减数分裂过程中,染色体位点在建立同源联会方面发挥着双重作用。
Cell. 2005 Dec 16;123(6):1037-50. doi: 10.1016/j.cell.2005.09.034.
4
A conserved checkpoint monitors meiotic chromosome synapsis in Caenorhabditis elegans.一个保守的检查点监测秀丽隐杆线虫中的减数分裂染色体联会。
Science. 2005 Dec 9;310(5754):1683-6. doi: 10.1126/science.1117468.
5
The FK506 binding protein Fpr3 counteracts protein phosphatase 1 to maintain meiotic recombination checkpoint activity.FK506结合蛋白Fpr3可对抗蛋白磷酸酶1,以维持减数分裂重组检查点活性。
Cell. 2005 Sep 23;122(6):861-73. doi: 10.1016/j.cell.2005.07.010.
6
A synaptonemal complex protein promotes homology-independent centromere coupling.一种联会复合体蛋白促进非同源依赖的着丝粒偶联。
Science. 2005 May 6;308(5723):870-3. doi: 10.1126/science.1108283.
7
Mnd1 is required for meiotic interhomolog repair.减数分裂同源染色体修复需要Mnd1。
Curr Biol. 2004 May 4;14(9):752-62. doi: 10.1016/j.cub.2004.04.030.
8
Imposition of crossover interference through the nonrandom distribution of synapsis initiation complexes.通过联会起始复合物的非随机分布施加交叉干涉。
Cell. 2004 Mar 19;116(6):795-802. doi: 10.1016/s0092-8674(04)00249-1.
9
Control of landmark events in meiosis by the CDK Cdc28 and the meiosis-specific kinase Ime2.细胞周期蛋白依赖性激酶Cdc28和减数分裂特异性激酶Ime2对减数分裂中标志性事件的调控。
Genes Dev. 2003 Jun 15;17(12):1524-39. doi: 10.1101/gad.1101503. Epub 2003 Jun 3.
10
A role for Ddc1 in signaling meiotic double-strand breaks at the pachytene checkpoint.Ddc1在粗线期检查点信号传导减数分裂双链断裂中的作用。
Genes Dev. 2002 Feb 1;16(3):363-76. doi: 10.1101/gad.938102.

一种新的非无效ZIP1等位基因在酿酒酵母中引发带有联会染色体的减数分裂停滞。

A novel nonnull ZIP1 allele triggers meiotic arrest with synapsed chromosomes in Saccharomyces cerevisiae.

作者信息

Mitra Neal, Roeder G Shirleen

机构信息

Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, Connecticut 06520-8103, USA.

出版信息

Genetics. 2007 Jun;176(2):773-87. doi: 10.1534/genetics.107.071100. Epub 2007 Apr 15.

DOI:10.1534/genetics.107.071100
PMID:17435220
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1894607/
Abstract

During meiotic prophase, assembly of the synaptonemal complex (SC) brings homologous chromosomes into close apposition along their lengths. The Zip1 protein is a major building block of the SC in Saccharomyces cerevisiae. In the absence of Zip1, SC fails to form, cells arrest or delay in meiotic prophase (depending on strain background), and crossing over is reduced. We created a novel allele of ZIP1, zip1-4LA, in which four leucine residues in the central coiled-coil domain have been replaced by alanines. In the zip1-4LA mutant, apparently normal SC assembles with wild-type kinetics; however, crossing over is delayed and decreased compared to wild type. The zip1-4LA mutant undergoes strong checkpoint-induced arrest in meiotic prophase; the defect in cell cycle progression is even more severe than that of the zip1 null mutant. When the zip1-4LA mutation is combined with the pch2 checkpoint mutation, cells sporulate with wild-type efficiency and crossing over occurs at wild-type levels. This result suggests that the zip1-4LA defect in recombination is an indirect consequence of cell cycle arrest. Previous studies have suggested that the Pch2 protein acts in a checkpoint pathway that monitors chromosome synapsis. We hypothesize that the zip1-4LA mutant assembles aberrant SC that triggers the synapsis checkpoint.

摘要

在减数分裂前期,联会复合体(SC)的组装使同源染色体沿其长度紧密并列。Zip1蛋白是酿酒酵母中SC的主要组成部分。在没有Zip1的情况下,SC无法形成,细胞在减数分裂前期停滞或延迟(取决于菌株背景),并且交叉互换减少。我们创建了一个新的ZIP1等位基因zip1-4LA,其中中央卷曲螺旋结构域中的四个亮氨酸残基被丙氨酸取代。在zip1-4LA突变体中,明显正常的SC以野生型动力学组装;然而,与野生型相比,交叉互换延迟且减少。zip1-4LA突变体在减数分裂前期经历强烈的检查点诱导的停滞;细胞周期进程中的缺陷比zip1缺失突变体更严重。当zip1-4LA突变与pch2检查点突变结合时,细胞以野生型效率形成孢子,并且交叉互换以野生型水平发生。这一结果表明,zip1-4LA在重组中的缺陷是细胞周期停滞的间接后果。先前的研究表明,Pch2蛋白在监测染色体联会的检查点途径中起作用。我们假设zip1-4LA突变体组装异常的SC,从而触发联会检查点。