Kirov N C, Lieberman P M, Rushlow C
Department of Biology, New York University, New York, NY 10003, USA.
EMBO J. 1996 Dec 16;15(24):7079-87.
Transcriptional repression of eukaryotic genes is essential for many cellular and developmental processes, yet the precise mechanisms of repression remain poorly understood. The Dorsal Switch Protein (DSP1) was identified in a genetic screen for activities which convert Dorsal into a transcriptional repressor. DSP1 shares structural homology with the HMG-1/2 family and inhibits activation by the rel transcription factors Dorsal and NF-kappaB in transfection studies. Here we investigate the mechanism of transcriptional repression by DSP1. We found that DSP1 protein can act as a potent transcriptional repressor for multiple activator families in vitro and in transfection studies. DSP1 bound directly to the TATA binding protein (TBP), and formed a stable ternary complex with TBP bound to DNA. DSP1 preferentially disrupted the DNA binding of TBP complexes containing TFIIA and displaced TFIIA from binding to TBP. Consistent with the inhibition of TFIIA-bound complexes, DSP1 was shown to inhibit activated but not basal transcription reactions in vitro. The ability of DSP1 to interact with TBP and to repress transcription was mapped to the carboxy-terminal domain which contains two HMG boxes. Our results support the model that DSP1 represses activated transcription by interfering with the binding of TFIIA, a general transcription factor implicated in activated transcription pathways.
真核基因的转录抑制对于许多细胞和发育过程至关重要,然而抑制的精确机制仍知之甚少。在一项基因筛选中鉴定出了背侧开关蛋白(DSP1),该筛选针对的是将背侧蛋白转化为转录抑制因子的活性。DSP1与HMG-1/2家族具有结构同源性,并且在转染研究中抑制rel转录因子背侧蛋白和核因子κB的激活作用。在此,我们研究DSP1的转录抑制机制。我们发现,在体外和转染研究中,DSP1蛋白可作为多种激活因子家族的强效转录抑制因子。DSP1直接与TATA结合蛋白(TBP)结合,并与结合在DNA上的TBP形成稳定的三元复合物。DSP1优先破坏含有TFIIA的TBP复合物的DNA结合,并将TFIIA从与TBP的结合中置换出来。与对TFIIA结合复合物的抑制作用一致,DSP1在体外可抑制激活的转录反应,但不抑制基础转录反应。DSP1与TBP相互作用并抑制转录的能力定位于包含两个HMG框的羧基末端结构域。我们的结果支持这样一种模型,即DSP1通过干扰TFIIA的结合来抑制激活的转录,TFIIA是一种参与激活转录途径的通用转录因子。