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SNF5/INI1 Deficiency Redefines Chromatin Remodeling Complex Composition during Tumor Development

机译:SNF5 / INI1缺乏症重新定义了肿瘤发展过程中的染色质重塑复合物成分。

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Malignant rhabdoid tumors (MRT), a pediatric cancer that most frequently appears in the kidney and brain, generally lack SNF5 (SMARCB1/INI1), a subunit of the SWI/SNF chromatin-remodeling complex. Recent studies have established that multiple SWI/SNF complexes exist due to the presence or absence of different complex members. Therefore, the effect of SNF5 loss upon SWI/SNF complex formation was investigated in human MRT cells. MRT cells and primary human tumors exhibited reduced levels of many complex proteins. Furthermore, reexpression of SNF5 increased SWI/SNF complex protein levels without concomitant increases in mRNA. Proteomic analysis, using mass spectrometry, of MRT cells before and after SNF5 reexpression indicated the recruitment of different components into the complex along with the expulsion of others. IP-Western blotting confirmed these results and demonstrated similar changes in other MRT cell lines. Finally, reduced expression of SNF5 in normal human fibroblasts led to altered levels of these same complex members. These data establish that SNF5 loss during MRT development alters the repertoire of available SWI/SNF complexes, generally disrupting those associated with cellular differentiation. These findings support a model where SNF5 inactivation blocks the conversion of growth-promoting SWI/SNF complexes to differentiation-inducing ones. Therefore, restoration of these complexes in tumors cells provides an attractive approach for the treatment of MRTs.
机译:恶性横纹肌瘤(MRT)是一种最常见于肾脏和大脑的儿科癌症,通常缺乏SNF5(SMARCB1 / INI1),这是SWI / SNF染色质重塑复合体的一个亚基。最近的研究已经确定,由于存在或不存在不同的复合物成员,因此存在多个SWI / SNF复合物。因此,在人类MRT细胞中研究了SNF5丢失对SWI / SNF复合物形成的影响。 MRT细胞和原发性人类肿瘤表现出许多复杂蛋白水平降低。此外,SNF5的重新表达增加了SWI / SNF复合蛋白的水平,而不伴随mRNA的增加。使用质谱法对SRT5重新表达之前和之后的MRT细胞进行蛋白质组学分析,结果表明不同组分的募集以及其他组分的排出。 IP-Western印迹证实了这些结果,并证明了其他MRT细胞系也发生了类似的变化。最后,正常人成纤维细胞中SNF5的表达降低导致这些相同复杂成员的水平发生改变。这些数据表明,在MRT开发过程中SNF5的丢失会改变可用的SWI / SNF复合物的组成,通常会破坏与细胞分化有关的那些。这些发现支持了一种模型,其中SNF5失活阻止了促进生长的SWI / SNF复合物向诱导分化的复合物的转化。因此,这些复合物在肿瘤细胞中的恢复为治疗MRT提供了一种有吸引力的方法。

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