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Germinal Cell Aplasia in Kif18a Mutant Male Mice Due to Impaired Chromosome Congression and Dysregulated BubR1 and CENP-E

机译:Kif18a突变的雄性小鼠雄性生殖细胞发育不全的染色体国会会议和BubR1和CENP-E失调。

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摘要

Chromosomal instability during cell division frequently causes cell death or malignant transformation. Orderly chromosome congression at the metaphase plate, a paramount process to vertebrate mitosis and meiosis, is controlled by a number of molecular regulators, including kinesins. Kinesin-8 (Kif18A) functions to control mitotic chromosome alignment at the mid-zone by negative regulation of kinetochore oscillation. Here the authors report that disrupting Kif18a function results in complete sterility in male but not in female mice. Histological examination reveals that Kif18a−/− testes exhibit severe developmental impairment of seminiferous tubules. Testis atrophy in Kif18a−/− mice is caused by perturbation of microtubule dynamics and spindle pole integrity, leading to chromosome congression defects during mitosis and meiosis. Depletion of KIF18A via RNAi causes mitotic arrest accompanied by unaligned chromosomes and increased microtubule nucleating centers in both GC-1 and HeLa cells. Prolonged depletion of KIF18A causes apoptosis due to perturbed microtubule dynamics. Further studies reveal that KIF18A silencing results in degradation of CENP-E and BubR1, which is accompanied by premature sister chromatid separation. KIF18A physically interacts with BubR1 and CENP-E, and this interaction is modulated during mitosis. Combined, the studies indicate that KIF18A is essential for normal chromosome congression during cell division and that the absence of KIF18A function causes severe defects in microtubule dynamics, spindle integrity, and checkpoint activation, leading to germinal cell aplasia in mice.
机译:细胞分裂过程中的染色体不稳定经常导致细胞死亡或恶性转化。中期板的有序染色体大会是脊椎动物有丝分裂和减数分裂的最重要过程,受许多分子调节剂(包括驱动蛋白)控制。 Kinesin-8(Kif18A)的功能是通过控制动粒振荡来控制中区的有丝分裂染色体对齐。在这里,作者报告说破坏Kif18a功能可导致雄性小鼠完全不育,而雌性小鼠则完全不育。组织学检查表明,Kif18a -/-睾丸表现出严重的生精小管发育障碍。 Kif18a -/-小鼠的睾丸萎缩是由微管动力学和纺锤体极完整性的扰动引起的,导致有丝分裂和减数分裂过程中的染色体国会缺陷。通过RNAi消耗KIF18A会导致有丝分裂停滞,伴随着未对齐的染色体以及GC-1和HeLa细胞中微管成核中心的增加。由于微管动力学的扰动,KIF18A的长期耗竭会导致细胞凋亡。进一步的研究表明,KIF18A沉默会导致CENP-E和BubR1降解,并伴有过早的姐妹染色单体分离。 KIF18A与BubR1和CENP-E发生物理相互作用,这种相互作用在有丝分裂过程中受到调节。综合起来,研究表明,KIF18A对于细胞分裂过程中的正常染色体国会至关重要,而KIF18A功能的缺失会导致微管动力学,纺锤体完整性和检查点激活方面的严重缺陷,从而导致小鼠生殖细胞发育不全。

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