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首页> 外文期刊>Journal of cellular biochemistry. >Stathmin/Op18 depletion induces genomic instability and leads to premature senescence in human normal fibroblasts
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Stathmin/Op18 depletion induces genomic instability and leads to premature senescence in human normal fibroblasts

机译:Stathmin / OP18耗竭会诱导基因组不稳定性,导致人正常成纤维细胞的过早衰老

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Abstract Stathmin/oncoprotein18 regulates microtubule dynamics and participates in mitotic entry and exit. We isolated stathmin as a physically interacting partner of KIFC1, a minus‐end‐directed kinesin functioning in bipolar spindle formation and maintenance. We found that stathmin depletion leads to multipolar spindle formation in IMR‐90 normal human fibroblasts. Stathmin‐depleted IMR‐90 cells showed early mitotic delay but managed to undergo chromosome segregation by forming multiple poles or pseudo‐bipoles. Consistent with these observations, lagging chromosomes, and micronuclei were elevated in stathmin‐depleted IMR‐90 cells, demonstrating that stathmin is essential for maintaining genomic stability during mitosis in human cells. Genomic instability induced by stathmin depletion led to premature senescence without any indication of cell death in normal IMR‐90 cells. Double knock‐down of both stathmin and p53 also did not induce cell death in IMR‐90 cells, while the stathmin knock‐down triggered apoptosis in p53‐proficient human lung adenocarcinoma cells. Our results suggest that stathmin is essential in bipolar spindle formation to maintain genomic stability during mitosis, and the depletion of stathmin prevents the initiation of chromosome instability by inducing senescence in human normal fibroblasts.
机译:摘要Stathmin /野生蛋白18调节微管动力学并参与有丝分裂进入和出口。我们将静脉分离为KIFC1的物理交互伴侣,是双极主轴形成和维护中的减去终端导向的Kinesin。我们发现Stathmin Fepletion导致IMR-90正常人体成纤维细胞中的多极纺锤体形成。 Stathmin-Flepleted IMR-90细胞显示出早期有丝分裂延迟,但通过形成多个杆或伪栓脂肪来进行染色体隔离。与这些观察结果一致,滞后染色体和微核在胸腔耗尽的IMR-90细胞中升高,表明其在人体细胞中有丝分裂期间保持基因组稳定性是必不可少的。由Stathmin耗尽诱导的基因组不稳定性导致过早衰老,而不含正常IMR-90细胞中细胞死亡的任何指示。 Stathmin和P53的双重击倒也没有在IMR-90细胞中诱导细胞死亡,而在P53-熟练的人肺腺癌细胞中的静态敲击触发凋亡。我们的研究结果表明,质维蛋白在双极主轴形成中是必需的,以保持有丝分裂期间的基因组稳定性,并且抑制性质的耗尽通过诱导人正常成纤维细胞中的衰老来引发染色体不稳定性。

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