PTEN:酰化功能是维持细胞基因组稳定性的关键

Pub Date : 2022-02-25 DOI:10.1142/s1793984422500039
Ginia Ghosh, S. Misra, P. Karmakar
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引用次数: 0

摘要

10号染色体上缺失的磷酸酶和张力素同源物(PTEN)是一种具有双重磷酸酶活性的肿瘤抑制蛋白,在各种癌症中经常发生突变。PTEN在各种氨基酸残基上被翻译后调节,这些氨基酸残基对亚细胞定位及其提供基因组稳定性的催化功能至关重要。最近的报道表明PTEN也起到DNA修复蛋白的作用。但PTEN的翻译后调节如何影响细胞学损伤和非整倍体尚未详细研究。在这里,我们重点关注PTEN的酰化在DNA损伤诱导的细胞学损伤(如微核(MNi)、核芽(NB)和核桥形成)中的作用。我们的数据表明,野生型PTEN而不是相扑死亡的PTEN显著降低了PTEN突变PC3细胞的细胞学损伤。在相扑死亡的PTEN的情况下,在DNA损伤后的24小时恢复时间点[公式:见正文]内,细胞学参数增加。接下来,我们测量了相扑死亡(PTEN-K254R)突变体对非整倍体的有效性,我们发现相扑酰化对维持染色体数量至关重要。由于子细胞中染色体数量的变化是由于多纺锤体极的形成,我们对PTEN-K254R克隆转染细胞中微管蛋白极的形成进行了定性和定量评估。我们发现,与野生型PTEN相比,PTEN-K254R转染的细胞中异常极的形成显著增加。与表达野生型PTEN的细胞相比,PTEN的sumoyalization活性的进一步缺失增加了磷酸化形式的Aurora激酶A(AURKA)(T288)和PLK1(T210)蛋白在有或没有诺可唑的情况下的表达,诺可唑是一种微管解聚剂。因此,PTEN的酰化对于维持基因组稳定性是必不可少的。
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PTEN: Sumoylation Function is the Key to the Maintenance of Genomic Stability of Cell
Phosphatase and tensin homolog deleted on chromosome 10 (PTEN), a tumor suppressor protein with dual phosphatase activity, is found to be frequently mutated in various cancers. PTEN is post-translationally modulated at various amino acid residues which are crucial for sub-cellular localization as well as its catalytic functions rendering genomic stability. Recent reports suggest that PTEN also acts as a DNA repair protein. But how post-translational modulation of PTEN affects cytological damage and aneuploidy is not studied in detail. Here, we focus on the role of sumoylation of PTEN in context with DNA damage induced cytological damage like micronucleus (MNi), nuclear bud (NB), and nuclear bridge formation. Our data suggest that wild type PTEN but not sumo-dead PTEN significantly reduces cytological damage in PTEN mutant PC3 cells. In case of sumo-dead PTEN, the cytological parameters are increased during 24[Formula: see text]h recovery time point after DNA damage. Next, we measured the effectiveness of the sumo-dead (PTEN-K254R) mutant on aneuploidy, where we found that sumoylation is essential for maintaining chromosome number. As chromosome number variation in daughter cell is due to multiple spindle pole formation, we qualitatively and quantitatively evaluate the [Formula: see text] tubulin pole formation in PTEN-K254R clone transfected cells. We found aberrant pole formation is significantly increased in PTEN-K254R transfected cells compared to wild-type PTEN. Further depletion of sumoylation activity of PTEN increases the expression of phosphorylated form of Aurora kinase A (AURKA) (T288) and PLK1 (T210) proteins with or without nocodazole, a microtubule depolymerizing agent compared to cells expressing wild-type PTEN. Thus, sumoylation of PTEN is essential for maintaining genomic stability.
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