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MTBP plays a crucial role in mitotic progression and chromosome segregation.

机译:MTBP在有丝分裂进程和染色体分离中起着至关重要的作用。

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Murine double minute 2 (MDM2) binding protein (MTBP) has been implicated in tumor cell proliferation, but the underlying mechanisms remain unclear. The results of MTBP expression analysis during cell cycle progression demonstrated that MTBP protein was rapidly degraded during mitosis. Immunofluorescence studies revealed that a portion of MTBP was localized at the kinetochores during prometaphase. MTBP overexpression delayed mitotic progression from nuclear envelope breakdown (NEB) to anaphase onset and induced abnormal chromosome segregation such as lagging chromosomes, chromosome bridges, and multipolar chromosome segregation. Conversely, MTBP downmodulation caused an abbreviated metaphase and insufficient mitotic arrest, resulting in abnormal chromosome segregation, aneuploidy, decreased cell proliferation, senescence, and cell death, similar to that of Mad2 (mitotic arrest-deficient 2) downmodulation. Furthermore, MTBP downmodulation inhibited the accumulation of Mad1 and Mad2, but not BubR1 (budding uninhibited by benzimidazoles related 1), on the kinetochores, whereas MTBP overexpression inhibited the release of Mad2 from the metaphase kinetochores. These results may imply that MTBP has an important role in recruiting and/or retaining the Mad1/Mad2 complex at the kinetochores during prometaphase, but its degradation is required for silencing the mitotic checkpoint. Together, this study indicates that MTBP has a crucial role in proper mitotic progression and faithful chromosome segregation, providing new insights into regulation of the mitotic checkpoint.
机译:小鼠双分钟2(MDM2)结合蛋白(MTBP)已牵涉肿瘤细胞增殖,但其潜在机制仍不清楚。细胞周期进程中MTBP表达分析的结果表明,MTBP蛋白在有丝分裂过程中迅速降解。免疫荧光研究表明,MTBP的一部分在前中期处于动粒体中。 MTBP过表达延迟了有丝分裂从核被膜破裂(NEB)到后期开始的时间,并诱导异常的染色体分离,例如滞后染色体,染色体桥和多极染色体分离。相反,MTBP的下调导致缩写的中期和不足的有丝分裂停滞,导致异常的染色体分离,非整倍性,减少的细胞增殖,衰老和细胞死亡,类似于Mad2(有丝分裂停滞不足2)的下调。此外,MTBP的下调抑制了动植物上的Mad1和Mad2的积累,但抑制了BubR1(未受到苯并咪唑相关1抑制的芽),而MTBP的过表达抑制了从中期动植物上释放Mad2。这些结果可能暗示MTBP在前中期期间在动植物的募集和/或保留Mad1 / Mad2复合体中起重要作用,但是沉默该基因是降解有丝分裂检查点所必需的。总之,这项研究表明MTBP在适当的有丝分裂进程和忠实的染色体分离中起着至关重要的作用,从而为调节有丝分裂检查点提供了新的见识。

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