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首页> 外文期刊>Differentiation: The Journal of the International Society of Differentiation >Absence of yKu/Hdf1 but not myosin-like proteins alters chromosome dynamics during prophase I in yeast.
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Absence of yKu/Hdf1 but not myosin-like proteins alters chromosome dynamics during prophase I in yeast.

机译:yKu / Hdf1的缺失但肌球蛋白样蛋白的缺失并不改变酵母前期I期间的染色体动力学。

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Meiosis is central to the formation of haploid gametes or spores in that it segregates homologous chromosomes and halves the chromosome number. A prerequisite of this genome bisection is the pairing of homologous chromosomes during the first meiotic prophase. When budding yeast cells are induced to undergo meiosis, this has profound consequences for nuclear structure: after premeiotic DNA replication centromeres disperse, while telomeres move about the nuclear periphery and temporarily cluster during the leptotene/zygotene transition (bouquet stage) of the prophase to first meiotic division. In vegetative cells, Hdf1p (yKu) and the myosin-like proteins Mlp1p and Mlp2p have been suggested to contribute to the organization of silent chromatin, tethering of telomeres to the nuclear periphery, DNA repair, and telomere maintenance. Here, we investigated by molecular cytology whether yKu and Mlp proteins contribute to telomere and chromosome dynamics in meiosis. It was found that mlp1 Delta mlp2 Delta double-mutant cells undergo centromere dispersion, telomere clustering, homologue pairing, and sporulation like wild type. On the other hand, cells deficient for yKu underwent meiosis-specific chromosomal events with a delay, while they eventually sporulated like wild type. These results suggest that the absence of yKu not only affects vegetative nuclear architecture (Laroche et al., 1998) but also interferes with the ordered occurrence of chromosome dynamics during first meiotic prophase.
机译:减数分裂是单倍体配子或孢子形成的中心,因为它分离同源染色体并将染色体数目减半。该基因组平分的先决条件是在减数分裂前期的第一个同源染色体配对。当诱导出芽的酵母细胞进行减数分裂时,这会对核结构产生深远的影响:减数分裂前的DNA复制后,着丝粒消失,而端粒在前阶段从瘦素/合子过渡(花束阶段)到第一个的过程中围绕核外围移动并暂时聚集。减数分裂科。在营养细胞中,Hdf1p(yKu)和肌球蛋白样蛋白Mlp1p和Mlp2p被认为有助于沉默染色质的组织,端粒与核周边的束缚,DNA修复和端粒维持。在这里,我们通过分子细胞学研究了yKu和Mlp蛋白是否有助于减数分裂的端粒和染色体动力学。发现mlp1 Delta mlp2 Delta双突变细胞经历着着丝粒分散,端粒聚集,同源配对和野生型孢子形成。另一方面,缺乏yKu的细胞会延迟进行减数分裂特定的染色体事件,而最终却像野生型一样形成孢子。这些结果表明,yKu的缺失不仅影响植物的核结构(Laroche等,1998),而且还干扰了减数分裂前期染色体动态的有序发生。

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