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A Meiotic Chromosomal Core Consisting of Cohesin Complex Proteins Recruits DNA Recombination Proteins and Promotes Synapsis in the Absence of an Axial Element in Mammalian Meiotic Cells

机译:凝聚素复合蛋白组成的减数分裂染色体核心招募DNA重组蛋白并促进哺乳动物减数分裂细胞中缺乏轴突的突触。

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摘要

The behavior of meiotic chromosomes differs in several respects from that of their mitotic counterparts, resulting in the generation of genetically distinct haploid cells. This has been attributed in part to a meiosis-specific chromatin-associated protein structure, the synaptonemal complex. This complex consist of two parallel axial elements, each one associated with a pair of sister chromatids, and a transverse filament located between the synapsed homologous chromosomes. Recently, a different protein structure, the cohesin complex, was shown to be associated with meiotic chromosomes and to be required for chromosome segregation. To explore the functions of the two different protein structures, the synaptonemal complex and the cohesin complex, in mammalian male meiotic cells, we have analyzed how absence of the axial element affects early meiotic chromosome behavior. We find that the synaptonemal complex protein 3 (SCP3) is a main determinant of axial-element assembly and is required for attachment of this structure to meiotic chromosomes, whereas SCP2 helps shape the in vivo structure of the axial element. We also show that formation of a cohesin-containing chromosomal core in meiotic nuclei does not require SCP3 or SCP2. Our results also suggest that the cohesin core recruits recombination proteins and promotes synapsis between homologous chromosomes in the absence of an axial element. A model for early meiotic chromosome pairing and synapsis is proposed.
机译:减数分裂染色体的行为与有丝分裂染色体的行为在几个方面有所不同,从而导致了遗传上不同的单倍体细胞的产生。这部分归因于减数分裂特异性染色质相关蛋白结构,突触复合物。该复合体由两个平行的轴向元件组成,每个轴向元件与一对姊妹染色单体相关联,而横向丝位于突触的同源染色体之间。最近,一种不同的蛋白质结构,粘着蛋白复合物,被证明与减数分裂染色体相关,并且是染色体分离所必需的。为了探索哺乳动物雄性减数分裂细胞中两个不同的蛋白质结构,突触复合物和粘着蛋白复合物的功能,我们分析了缺乏轴向元素如何影响早期减数分裂染色体行为。我们发现突触复合蛋白3(SCP3)是轴向元素组装的主要决定因素,并且是该结构与减数分裂染色体的附着所必需的,而SCP2有助于塑造轴向元素的体内结构。我们还表明,在减数分裂核中形成含黏着蛋白的染色体核心不需要SCP3或SCP2。我们的研究结果还表明,凝聚素核心在没有轴向元件的情况下募集重组蛋白并促进同源染色体之间的突触。提出了减数分裂早期染色体配对和突触的模型。

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