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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Mad2, Bub3, and Mps1 regulate chromosome segregation and mitotic synchrony in Giardia intestinalis, a binucleate protist lacking an anaphase-promoting complex
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A Highlights from MBoC Selection: Mad2, Bub3, and Mps1 regulate chromosome segregation and mitotic synchrony in Giardia intestinalis, a binucleate protist lacking an anaphase-promoting complex

机译:MBoC选择中的亮点:Mad2,Bub3和Mps1调节贾第鞭毛虫肠中的染色体分离和有丝分裂同步性,贾第鞭毛虫是一个缺乏后期促进复合物的双核生物。

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摘要

The binucleate pathogen Giardia intestinalis is a highly divergent eukaryote with a semiopen mitosis, lacking an anaphase-promoting complex/cyclosome (APC/C) and many of the mitotic checkpoint complex (MCC) proteins. However, Giardia has some MCC components (Bub3, Mad2, and Mps1) and proteins from the cohesin system (Smc1 and Smc3). Mad2 localizes to the cytoplasm, but Bub3 and Mps1 are either located on chromosomes or in the cytoplasm, depending on the cell cycle stage. Depletion of Bub3, Mad2, or Mps1 resulted in a lowered mitotic index, errors in chromosome segregation (including lagging chromosomes), and abnormalities in spindle morphology. During interphase, MCC knockdown cells have an abnormal number of nuclei, either one nucleus usually on the left-hand side of the cell or two nuclei with one mislocalized. These results suggest that the minimal set of MCC proteins in Giardia play a major role in regulating many aspects of mitosis, including chromosome segregation, coordination of mitosis between the two nuclei, and subsequent nuclear positioning. The critical importance of MCC proteins in an organism that lacks their canonical target, the APC/C, suggests a broader role for these proteins and hints at new pathways to be discovered.
机译:双核病原体贾第鞭毛虫是高度发散的真核生物,具有半开放的有丝分裂,缺少促后期复合物/环体(APC / C)和许多有丝分裂检查点复合物(MCC)蛋白。但是,贾第鞭毛虫具有某些MCC成分(Bub3,Mad2和Mps1)和黏附素系统的蛋白质(Smc1和Smc3)。 Mad2定位于细胞质,但Bub3和Mps1位于染色体上或细胞质中,具体取决于细胞周期阶段。 Bub3,Mad2或Mps1的耗尽导致有丝分裂指数降低,染色体分离错误(包括滞后染色体)和纺锤体形态异常。在相间期,MCC组合式细胞的细胞核数目异常,通常是一个细胞核位于细胞的左侧,或者是两个细胞核的位置不正确。这些结果表明贾第鞭毛虫中最少的MCC蛋白在调节有丝分裂的许多方面起主要作用,包括染色体分离,两个核之间有丝分裂的协调以及随后的核定位。 MCC蛋白在缺乏规范性靶标APC / C的生物中至关重要,这表明这些蛋白具有更广泛的作用,并暗示了新的发现途径。

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