Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Mol Cell Biol. 2010 Jan;30(1):186-96. doi: 10.1128/MCB.00884-09.
RNA transcription by all the three RNA polymerases (RNAPs) is tightly controlled, and loss of regulation can lead to, for example, cellular transformation and cancer. While most transcription factors act specifically with one polymerase, a small number have been shown to affect more than one polymerase to coordinate overall levels of transcription in cells. Here we show that TLS (translocated in liposarcoma), a protein originally identified as the product of a chromosomal translocation and which associates with both RNAP II and the spliceosome, also represses transcription by RNAP III. TLS was found to repress transcription from all three classes of RNAP III promoters in vitro and to associate with RNAP III genes in vivo, perhaps via a direct interaction with the pan-specific transcription factor TATA-binding protein (TBP). Depletion of TLS by small interfering RNA (siRNA) in HeLa cells resulted in increased steady-state levels of RNAP III transcripts as well as increased RNAP III and TBP occupancy at RNAP III-transcribed genes. Conversely, overexpression of TLS decreased accumulation of RNAP III transcripts. These unexpected findings indicate that TLS regulates both RNAPs II and III and supports the possibility that cross-regulation between RNA polymerases is important in maintaining normal cell growth.
所有三种 RNA 聚合酶(RNAPs)的 RNA 转录都受到严格控制,而调控的丧失可能导致细胞转化和癌症等。虽然大多数转录因子与一种聚合酶特异性作用,但已经证明有少数转录因子可以影响多种聚合酶,以协调细胞中整体转录水平。在这里,我们表明 TLS(易位性脂肪肉瘤),一种最初被鉴定为染色体易位产物的蛋白质,与 RNAP II 和剪接体都有关联,也可以抑制 RNAP III 的转录。TLS 被发现可以在体外抑制所有三种类型的 RNAP III 启动子的转录,并在体内与 RNAP III 基因结合,可能是通过与通用转录因子 TATA 结合蛋白(TBP)的直接相互作用。在 HeLa 细胞中用小干扰 RNA(siRNA)耗尽 TLS 会导致 RNAP III 转录物的稳态水平增加,以及 RNAP III 和 TBP 在 RNAP III 转录基因上的占有率增加。相反,TLS 的过表达会减少 RNAP III 转录物的积累。这些出乎意料的发现表明,TLS 调节 RNAPs II 和 III,并且支持 RNA 聚合酶之间的交叉调节对于维持正常细胞生长很重要的可能性。