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Haspin 参与 AURKB 在着丝粒处的招募,并有助于雄性小鼠减数分裂中染色体的向心移动。

Haspin participates in AURKB recruitment to centromeres and contributes to chromosome congression in male mouse meiosis.

机构信息

Cell Biology Unit, Department of Biology, Universidad Autónoma de Madrid (UAM), 28049 Madrid, Spain.

Cell Division and Cancer group, Spanish National Cancer Research Centre (CNIO), 29029 Madrid, Spain.

出版信息

J Cell Sci. 2022 Jul 1;135(13). doi: 10.1242/jcs.259546. Epub 2022 Jul 11.

Abstract

Chromosome segregation requires that centromeres properly attach to spindle microtubules. This essential step regulates the accuracy of cell division and must therefore be precisely regulated. One of the main centromeric regulatory signaling pathways is the haspin-H3T3ph-chromosomal passenger complex (CPC) cascade, which is responsible for the recruitment of the CPC to the centromeres. During mitosis, the haspin kinase phosphorylates histone H3 at threonine 3 (H3T3ph), an essential epigenetic mark that recruits the CPC, in which the catalytic component is Aurora B kinase (AURKB). However, the centromeric haspin-H3T3ph-CPC pathway remains largely uncharacterized in mammalian male meiosis. We have analyzed haspin functions by either its chemical inhibition with LDN-192960 in cultured spermatocytes, or the ablation of the Haspin gene in Haspin-/- mice. Our studies suggest that haspin kinase activity is required for proper chromosome congression both during meiotic divisions and for the recruitment of Aurora B and kinesin MCAK (also known as KIF2C) to meiotic centromeres. However, the absence of H3T3ph histone mark does not alter borealin (or CDCA8) and SGO2 centromeric localization. These results add new and relevant information regarding the regulation of the haspin-H3T3ph-CPC pathway and centromere function during meiosis.

摘要

染色体分离需要着丝粒正确附着到纺锤体微管上。这一关键步骤调节细胞分裂的准确性,因此必须精确调控。主要的着丝粒调控信号通路之一是 Haspin-H3T3ph-染色体乘客复合物(CPC)级联反应,它负责将 CPC 招募到着丝粒上。在有丝分裂过程中,Haspin 激酶将组蛋白 H3 上的丝氨酸 3(H3T3ph)磷酸化,这是一个必需的表观遗传标记,可招募 CPC,其中催化成分是 Aurora B 激酶(AURKB)。然而,哺乳动物减数分裂中着丝粒 Haspin-H3T3ph-CPC 途径在很大程度上仍未被描述。我们通过在培养的精母细胞中用 LDN-192960 进行化学抑制或在 Haspin-/- 小鼠中敲除 Haspin 基因来分析 Haspin 的功能。我们的研究表明,Haspin 激酶活性对于减数分裂分裂过程中染色体正确聚集以及 Aurora B 和驱动蛋白 MCAK(也称为 KIF2C)向减数分裂着丝粒的招募都是必需的。然而,H3T3ph 组蛋白标记的缺失并不改变 borealin(或 CDCA8)和 SGO2 着丝粒定位。这些结果提供了关于 Haspin-H3T3ph-CPC 途径和减数分裂中着丝粒功能调控的新的相关信息。

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