Voit R, Schäfer K, Grummt I
German Cancer Research Center, Division of Molecular Biology of the Cell II, Heidelberg.
Mol Cell Biol. 1997 Aug;17(8):4230-7. doi: 10.1128/MCB.17.8.4230.
The retinoblastoma susceptibility gene product pRb restricts cellular proliferation by affecting gene expression by all three classes of nuclear RNA polymerases. To elucidate the molecular mechanisms underlying pRb-mediated repression of ribosomal DNA (rDNA) transcription by RNA polymerase I, we have analyzed the effect of pRb in a reconstituted transcription system. We demonstrate that pRb, but not the related protein p107, acts as a transcriptional repressor by interfering with the assembly of transcription initiation complexes. The HMG box-containing transcription factor UBF is the main target for pRb-induced transcriptional repression. UBF and pRb form in vitro complexes involving the C-terminal part of pRb and HMG boxes 1 and 2 of UBF. We show that the interactions between UBF and TIF-IB and between UBF and RNA polymerase I, respectively, are not perturbed by pRb. However, the DNA binding activity of UBF to both synthetic cruciform DNA and the rDNA promoter is severely impaired in the presence of pRb. These studies reveal another mechanism by which pRb suppresses cell proliferation, namely, by direct inhibition of cellular rRNA synthesis.
视网膜母细胞瘤易感基因产物pRb通过影响所有三类核RNA聚合酶的基因表达来限制细胞增殖。为阐明pRb介导的RNA聚合酶I对核糖体DNA(rDNA)转录的抑制作用的分子机制,我们在一个重组转录系统中分析了pRb的作用。我们证明,pRb而非相关蛋白p107,通过干扰转录起始复合物的组装发挥转录抑制作用。含HMG盒的转录因子UBF是pRb诱导转录抑制的主要靶点。UBF和pRb在体外形成复合物,涉及pRb的C末端部分以及UBF的HMG盒1和2。我们表明,UBF与TIF-IB之间以及UBF与RNA聚合酶I之间的相互作用不受pRb干扰。然而,在有pRb存在时,UBF与合成十字形DNA和rDNA启动子的DNA结合活性严重受损。这些研究揭示了pRb抑制细胞增殖的另一种机制,即通过直接抑制细胞rRNA合成。