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首页> 外文期刊>Oncogene >SATB1 collaborates with loss of p16 in cellular transformation
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SATB1 collaborates with loss of p16 in cellular transformation

机译:SATB1与细胞转化中p16的缺失合作

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摘要

Tumor progression is associated with invasiveness and metastatic potential. The special AT-rich binding protein 1 (SATB1) has been identified as a key factor in the progression of breast cancer cells to a malignant phenotype and is associated with progression of human tumors. In normal development, SATB1 coordinates gene expression of progenitor cells by functioning as a genome organizer. In contrast to progenitor and tumor cells, SATB1 expression in nontransformed cells is not compatible with proliferation. Here we show that SATB1 expression in mouse embryonic fibroblasts induces cell cycle arrest and senescence that is associated with elevated p16 protein levels. Deletion of p16 overcomes the SATB1-induced senescence. We further provide evidence for an interaction of SATB1 with the retinoblastoma (RB)/E2F pathway downstream of p16. A combined deletion of the RB proteins, RB, p107 and p130 (triple-mutant; TM), prevents SATB1-induced G1 arrest, which is restored upon the reintroduction of RB into SATB1-expressing TM fibroblasts. SATB1 interacts with the E2F/RB complex and regulates the cyclin E promoter in an E2F-dependent manner. These findings demonstrate that p16 and the RB/E2F pathway are critical for SATB1-induced cell cycle arrest. In the absence of p16, SATB1 causes anchorage-independent growth and invasive phenotype in fibroblasts. Our data illustrate that p16 mutations collaborate with the oncogenic activity of SATB1. Consistent with our finding, a literature survey shows that deletion of p16 is generally associated with SATB1 expressing human cell lines and tumors.
机译:肿瘤进展与侵袭性和转移潜力有关。富含AT的特殊结合蛋白1(SATB1)已被确定为乳腺癌细胞发展为恶性表型的关键因素,并且与人类肿瘤的发展有关。在正常发育中,SATB1通过充当基因组组织者来协调祖细胞的基因表达。与祖细胞和肿瘤细胞相反,SATB1在非转化细胞中的表达与增殖不相容。在这里,我们显示小鼠胚胎成纤维细胞中的SATB1表达诱导细胞周期停滞和衰老,这与p16蛋白水平升高有关。 p16的删除克服了SATB1诱导的衰老。我们进一步提供了SATB1与p16下游的视网膜母细胞瘤(RB)/ E2F途径相互作用的证据。 RB蛋白,RB,p107和p130(三重突变; TM)的组合缺失可防止SATB1诱导的G1阻滞,将RB重新引入表达SATB1的TM成纤维细胞中可恢复该阻滞。 SATB1与E2F / RB复合物相互作用,并以E2F依赖性方式调节细胞周期蛋白E启动子。这些发现表明p16和RB / E2F途径对于SATB1诱导的细胞周期停滞至关重要。在没有p16的情况下,SATB1会在成纤维细胞中引起锚定非依赖性生长和侵袭性表型。我们的数据表明p16突变与SATB1的致癌活性协同作用。与我们的发现一致,文献调查显示p16的缺失通常与表达SATB1的人类细胞系和肿瘤有关。

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