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指导减数分裂中染色体末端动态变化的因素。

Factors directing telomere dynamics in synaptic meiosis.

作者信息

Scherthan H

机构信息

Max-Planck-Institute for Molecular Genetics, Berlin, Germany.

出版信息

Biochem Soc Trans. 2006 Aug;34(Pt 4):550-3. doi: 10.1042/BST0340550.

Abstract

Meiosis creates haploid cells from diploid progenitors. Homologous chromosomes are moved, paired and segregated from each other in a specialized meiosis I division. A second division that lacks a preceding S-phase produces haploid cells. In prophase I, chromosomes attach with their telomeres to the nuclear envelope and undergo oscillating movements that become restricted to a limited nuclear sector during the widely conserved bouquet stage. Recent observations in budding yeast meiosis suggest that telomere clustering depends on actin, whereas exit from the bouquet stage requires meiotic cohesin. Telomere clustering may also be modulated by progression in recombination. These observations suggest that the unique meiotic nuclear topology and telomere dynamics are regulated at different levels.

摘要

减数分裂从二倍体祖细胞产生单倍体细胞。同源染色体在专门的减数分裂I期彼此移动、配对并分离。紧接着进行的第二次分裂不经过前期S期,从而产生单倍体细胞。在减数分裂前期I,染色体通过其端粒附着于核膜,并经历振荡运动,在广泛保守的花束期,这种运动局限于有限的核区域。最近在芽殖酵母减数分裂中的观察表明,端粒聚集依赖于肌动蛋白,而从花束期退出则需要减数分裂黏连蛋白。端粒聚集也可能受重组进程的调节。这些观察结果表明,独特的减数分裂核拓扑结构和端粒动力学在不同水平上受到调控。

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