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交叉和动粒组件 Dam1 对于消除减数分裂 I 中错误的染色体附着和着丝粒震荡至关重要。

Chiasmata and the kinetochore component Dam1 are crucial for elimination of erroneous chromosome attachments and centromere oscillation at meiosis I.

机构信息

Graduate School of Integrated Science and Technology, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.

Department of Chemistry, Faculty of Science, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.

出版信息

Open Biol. 2021 Feb;11(2):200308. doi: 10.1098/rsob.200308. Epub 2021 Feb 3.

Abstract

Establishment of proper chromosome attachments to the spindle requires elimination of erroneous attachments, but the mechanism of this process is not fully understood. During meiosis I, sister chromatids attach to the same spindle pole (mono-oriented attachment), whereas homologous chromosomes attach to opposite poles (bi-oriented attachment), resulting in homologous chromosome segregation. Here, we show that chiasmata that link homologous chromosomes and kinetochore component Dam1 are crucial for elimination of erroneous attachments and oscillation of centromeres between the spindle poles at meiosis I in fission yeast. In chiasma-forming cells, Mad2 and Aurora B kinase, which provides time for attachment correction and destabilizes erroneous attachments, respectively, caused elimination of bi-oriented attachments of sister chromatids, whereas in chiasma-lacking cells, they caused elimination of mono-oriented attachments. In chiasma-forming cells, in addition, homologous centromere oscillation was coordinated. Furthermore, Dam1 contributed to attachment elimination in both chiasma-forming and chiasma-lacking cells, and drove centromere oscillation. These results demonstrate that chiasmata alter attachment correction patterns by enabling error correction factors to eliminate bi-oriented attachment of sister chromatids, and suggest that Dam1 induces elimination of erroneous attachments. The coincidental contribution of chiasmata and Dam1 to centromere oscillation also suggests a potential link between centromere oscillation and attachment elimination.

摘要

建立正确的染色体与纺锤体的连接需要消除错误的连接,但这个过程的机制尚未完全理解。在减数分裂 I 中,姐妹染色单体连接到同一个纺锤体极(单定向附着),而同源染色体连接到相对的两极(双定向附着),从而导致同源染色体的分离。在这里,我们表明,连接同源染色体的交叉和动粒成分 Dam1 对于消除错误的连接和纺锤体两极之间的着丝粒的振荡至关重要,这在裂殖酵母的减数分裂 I 中发生。在形成交叉的细胞中,Mad2 和 Aurora B 激酶分别为附着修正提供时间并使错误的附着不稳定,从而消除姐妹染色单体的双定向附着,而在缺乏交叉的细胞中,它们导致单定向附着的消除。此外,在形成交叉的细胞中,同源着丝粒的振荡被协调。此外,Dam1 有助于在形成交叉和缺乏交叉的细胞中消除附着,并且驱动着丝粒的振荡。这些结果表明,交叉通过使错误校正因子能够消除姐妹染色单体的双定向附着来改变附着修正模式,并提示 Dam1 诱导错误附着的消除。交叉和 Dam1 对着丝粒振荡的巧合贡献也表明着丝粒振荡和附着消除之间存在潜在的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9b4/8061696/fc69036b8b12/rsob200308f01.jpg

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