Sambasivan Ramkumar, Pavlath Grace K, Dhawan Jyotsna
Centre for Cellular and Molecular Biology, Hyderabad, India.
J Biosci. 2008 Mar;33(1):27-44. doi: 10.1007/s12038-008-0019-6.
Cellular quiescence is characterized not only by reduced mitotic and metabolic activity but also by altered gene expression. Growing evidence suggests that quiescence is not merely a basal state but is regulated by active mechanisms. To understand the molecular programme that governs reversible cell cycle exit, we focused on quiescence-related gene expression in a culture model of myogenic cell arrest and activation. Here we report the identification of quiescence-induced genes using a gene-trap strategy. Using a retroviral vector, we generated a library of gene traps in C2C12 myoblasts that were screened for arrest-induced insertions by live cell sorting (FACS-gal). Several independent gene- trap lines revealed arrest-dependent induction of betagal activity, confirming the efficacy of the FACS screen. The locus of integration was identified in 15 lines. In three lines,insertion occurred in genes previously implicated in the control of quiescence, i.e. EMSY - a BRCA2--interacting protein, p8/com1 - a p300HAT -- binding protein and MLL5 - a SET domain protein. Our results demonstrate that expression of chromatin modulatory genes is induced in G0, providing support to the notion that this reversibly arrested state is actively regulated.
细胞静止不仅表现为有丝分裂和代谢活性降低,还表现为基因表达改变。越来越多的证据表明,静止不仅仅是一种基础状态,而是受主动机制调控。为了理解控制细胞周期可逆性退出的分子程序,我们聚焦于成肌细胞停滞和激活培养模型中与静止相关的基因表达。在此,我们报告使用基因捕获策略鉴定静止诱导基因。利用逆转录病毒载体,我们在C2C12成肌细胞中构建了一个基因捕获文库,通过活细胞分选(FACS-gal)筛选停滞诱导插入。几个独立的基因捕获品系显示β-半乳糖苷酶活性的停滞依赖性诱导,证实了FACS筛选的有效性。在15个品系中鉴定出整合位点。在三个品系中,插入发生在先前与静止控制相关的基因中,即EMSY(一种与BRCA2相互作用的蛋白)、p8/com1(一种与p300组蛋白乙酰转移酶结合的蛋白)和MLL5(一种含SET结构域的蛋白)。我们的结果表明,染色质调节基因的表达在G0期被诱导,为这种可逆性停滞状态受主动调控的观点提供了支持。