Sbarro Institute for Cancer Research and Molecular Medicine, Center for Biotechnology, Temple University, Philadelphia, PA, USA.
Oncogene. 2010 Oct 7;29(40):5452-63. doi: 10.1038/onc.2010.285. Epub 2010 Aug 9.
We focused our attention on brahma-related gene 1 (BRG1), the ATPase subunit of the SWItch/Sucrose NonFermentable (SWI/SNF) chromatin remodeling complex, and analyzed its role in mesenchymal stem cell (MSC) biology. We hypothesized that deviation from the correct concentration of these proteins, which act at the highest level of gene regulation, may be deleterious for cells. We wanted to know what would happen if a cell had to cope with altered regulation of gene expression, either by upregulation or downregulation of BRG1. We assumed that cells would try to restore homeostasis or, alternatively, that the event could trigger senescence/apoptosis phenomena. To this end, in MSCs, we silenced BRG1gene. Knockdown of BRG1 expression induced a significant increase in senescent cells and decrease in apoptotic cells. It is interesting that BRG1 downregulation also induced an increase in heterochromatin. At the molecular level, these phenomena were associated with activation of retinoblastoma-like protein 2 (RB2)/P130- and P53-related pathways. Senescence was accompanied by reduced expression of some stemness-related genes. This is consistent with our previous research, which showed that BRG1 upregulation by ectopic expression also induced senescence processes. Together, these data suggest that BRG1 belongs to a class of genes whose expression is tightly regulated; hence, subtle alterations in BRG1 activity seem to negatively affect mechanisms regulating chromatin status and, in turn, impair cellular physiology.
我们将注意力集中在 brahma 相关基因 1(BRG1)上,该基因是 SWItch/Sucrose NonFermentable(SWI/SNF)染色质重塑复合物的 ATP 酶亚基,并分析了其在间充质干细胞(MSC)生物学中的作用。我们假设,这些在基因调控的最高水平发挥作用的蛋白质,如果偏离正确的浓度,可能对细胞有害。我们想知道,如果细胞必须应对基因表达的调节改变,无论是 BRG1 的上调还是下调,会发生什么。我们假设细胞会试图恢复体内平衡,或者该事件可能引发衰老/凋亡现象。为此,我们在 MSC 中沉默了 BRG1 基因。BRG1 表达的敲低诱导衰老细胞显著增加和凋亡细胞减少。有趣的是,BRG1 的下调也诱导异染色质增加。在分子水平上,这些现象与视网膜母细胞瘤样蛋白 2(RB2)/P130 和 P53 相关途径的激活有关。衰老伴随着一些与干细胞相关基因的表达减少。这与我们之前的研究一致,该研究表明 BRG1 通过异位表达的上调也诱导了衰老过程。总之,这些数据表明 BRG1 属于一类其表达受到严格调控的基因;因此,BRG1 活性的细微改变似乎会对调节染色质状态的机制产生负面影响,并进而损害细胞生理功能。