Hannan K M, Hannan R D, Smith S D, Jefferson L S, Lun M, Rothblum L I
Henry Hood Research Program, Weis Center for Research, Geisinger Clinic, 100 N. Academy Ave., Danville, Pennsylvania, PA 17822 USA.
Oncogene. 2000 Oct 12;19(43):4988-99. doi: 10.1038/sj.onc.1203875.
We have previously demonstrated that the protein encoded by the retinoblastoma susceptibility gene (Rb) functions as a regulator of transcription by RNA polymerase I (rDNA transcription) by inhibiting UBF-mediated transcription. In the present study, we have examined the mechanism by which Rb represses UBF-dependent rDNA transcription and determined if other Rb-like proteins have similar effects. We demonstrate that authentic or recombinant UBF and Rb interact directly and this requires a functional A/B pocket. DNase footprinting and band-shift assays demonstrated that the interaction between Rb and UBF does not inhibit the binding of UBF to DNA. However, the formation of an UBF/Rb complex does block the interaction of UBF with SL-1, as indicated by using the 48 kDa subunit as a marker for SL-1. Additional evidence is presented that another pocket protein, p130 but not p107, can be found in a complex with UBF. Interestingly, the cellular content of p130 inversely correlated with the rate of rDNA transcription in two physiological systems, and overexpression of p130 inhibited rDNA transcription. These results suggest that p130 may regulate rDNA transcription in a similar manner to Rb.
我们之前已经证明,视网膜母细胞瘤易感基因(Rb)编码的蛋白质通过抑制UBF介导的转录,作为RNA聚合酶I转录(rDNA转录)的转录调节因子。在本研究中,我们研究了Rb抑制UBF依赖性rDNA转录的机制,并确定其他Rb样蛋白是否具有类似作用。我们证明,天然或重组的UBF和Rb直接相互作用,这需要一个功能性的A/B口袋。DNA酶足迹法和凝胶迁移试验表明,Rb与UBF之间的相互作用并不抑制UBF与DNA的结合。然而,如使用48 kDa亚基作为SL-1的标志物所示,UBF/Rb复合物的形成确实会阻断UBF与SL-1的相互作用。另外有证据表明,另一种口袋蛋白p130而非p107,可以与UBF形成复合物。有趣的是,在两个生理系统中,p130的细胞含量与rDNA转录速率呈负相关,并且p130的过表达抑制rDNA转录。这些结果表明,p130可能以与Rb类似的方式调节rDNA转录。