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Meiotic chromosomes move by linkage to dynamic actin cables with transduction of force through the nuclear envelope

机译:减数分裂染色体通过链接到动态肌动蛋白电缆而移动,并通过核被膜传递力

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摘要

Chromosome movement is prominent during meiosis. Here, using a combination of in vitro and in vivo approaches, we elucidate the basis for dynamic mid-prophase telomere-led chromosome motion in budding yeast. Diverse findings reveal a process in which, at the pachytene stage, individual telomereuclear envelope (NE) ensembles attach passively to, and then move in concert with, nucleus-hugging actin cables that are continuous with the global cytoskeletal actin network. Other chromosomes move in concert with lead chromosome(s). The same process, in modulated form, explains the zygotene "bouquet'' configuration in which, immediately preceding pachytene, chromosome ends colocalize dynamically in a restricted region of the NE. Mechanical properties of the system and biological roles of mid-prophase movement for meiosis, including recombination, are discussed.
机译:减数分裂过程中染色体运动突出。在这里,结合使用体外和体内方法,我们阐明了发芽酵母中动态前中期端粒为主导的染色体运动的基础。各种各样的发现揭示了一个过程,在粗线期,单个端粒/核包膜(NE)团被动地附着在紧紧拥抱核的肌动蛋白电缆上,然后与整个细胞骨架肌动蛋白网络连续地运动。其他染色体与前导染色体一致移动。相同的过程以调制形式解释了合子“花束”构型,在该构型中,紧接长晶烯之前,染色体末端在NE的受限区域内动态共定位,系统的机械特性和减数分裂中期前期运动的生物学作用,包括重组,进行了讨论。

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