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AtREC8和AtSCC3对于减数分裂期间动粒的单极定向至关重要。

AtREC8 and AtSCC3 are essential to the monopolar orientation of the kinetochores during meiosis.

作者信息

Chelysheva Liudmila, Diallo Stéphanie, Vezon Daniel, Gendrot Ghislaine, Vrielynck Nathalie, Belcram Katia, Rocques Nathalie, Márquez-Lema Angustias, Bhatt Anuj M, Horlow Christine, Mercier Raphaël, Mézard Christine, Grelon Mathilde

机构信息

Institut Jean-Pierre Bourgin, Station de Génétique et d'Amélioration des Plantes, INRA de Versailles, Route de Saint-Cyr, 78026 Versailles CEDEX, France.

出版信息

J Cell Sci. 2005 Oct 15;118(Pt 20):4621-32. doi: 10.1242/jcs.02583. Epub 2005 Sep 21.

Abstract

The success of the first meiotic division relies (among other factors) on the formation of bivalents between homologous chromosomes, the monopolar orientation of the sister kinetochores at metaphase I and the maintenance of centromeric cohesion until the onset of anaphase II. The meiotic cohesin subunit, Rec8 has been reported to be one of the key players in these processes, but its precise role in kinetochore orientation is still under debate. By contrast, much less is known about the other non-SMC cohesin subunit, Scc3. We report the identification and the characterisation of AtSCC3, the sole Arabidopsis homologue of Scc3. The detection of AtSCC3 in mitotic cells, the embryo lethality of a null allele Atscc3-2, and the mitotic defects of the weak allele Atscc3-1 suggest that AtSCC3 is required for mitosis. AtSCC3 was also detected in meiotic nuclei as early as interphase, and bound to the chromosome axis from early leptotene through to anaphase I. We show here that both AtREC8 and AtSCC3 are necessary not only to maintain centromere cohesion at anaphase I, but also for the monopolar orientation of the kinetochores during the first meiotic division. We also found that AtREC8 is involved in chromosome axis formation in an AtSPO11-1-independent manner. Finally, we provide evidence for a role of AtSPO11-1 in the stability of the cohesin complex.

摘要

第一次减数分裂的成功(在其他因素之中)依赖于同源染色体之间二价体的形成、中期I时姐妹动粒的单极定向以及直到后期II开始时着丝粒黏连的维持。减数分裂黏连蛋白亚基Rec8据报道是这些过程中的关键参与者之一,但其在动粒定向中的精确作用仍存在争议。相比之下,对于另一个非SMC黏连蛋白亚基Scc3的了解则少得多。我们报道了AtSCC3的鉴定和特征,它是拟南芥中Scc3的唯一同源物。在有丝分裂细胞中检测到AtSCC3、无效等位基因Atscc3 - 2的胚胎致死性以及弱等位基因Atscc3 - 1的有丝分裂缺陷表明AtSCC3是有丝分裂所必需的。早在间期,AtSCC3也在减数分裂细胞核中被检测到,并且从细线期早期到后期I都与染色体轴结合。我们在此表明,AtREC8和AtSCC3不仅对于在后期I维持着丝粒黏连是必需的,而且对于第一次减数分裂期间动粒的单极定向也是必需的。我们还发现AtREC8以不依赖AtSPO11 - 1的方式参与染色体轴的形成。最后,我们提供了AtSPO11 - 1在黏连蛋白复合体稳定性中起作用的证据。

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