Kimura Yumiko, Nagao Arisa, Fujioka Yuko, Satou Akiko, Taira Takahiro, Iguchi-Ariga Sanae M M, Ariga Hiroyoshi
Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Int J Oncol. 2007 Oct;31(4):829-36.
We have reported that a novel c-Myc-binding protein, MM-1, repressed the E-box-dependent transcription activity of c-Myc by recruiting the HDAC1 complex via TIF1beta/KAP1, a transcriptional corepressor. We have also reported that a mutation of A157R in MM-1, which is often observed in patients with leukemia or lymphoma, abrogated all of the repressive activities of MM-1 toward c-Myc, indicating that MM-1 is a novel tumor suppressor. In this study, we found that MM-1 was bound to a component of proteasome and stimulated degradation of c-Myc in human cells. Knockdown of endogenous MM-1 in human HeLa cells by introduction of siRNA against MM-1 stabilized the endogenous c-Myc. To identify proteins that participate in c-Myc degradation by MM-1, in vivo and in vitro binding assays were carried out. The results showed that MM-1 directly bound to Rpt3, a subunit of 26S proteasome, and that c-Myc directly bound to Skp2, which recruited ElonginC, ElonginB and Cullin2, thereby forming a novel ubiquitin E3 ligase. Knockdown of endogenous Cullin2 stabilized the endogenous c-Myc. Thus, MM-1 is a factor that connects c-Myc to the ubiquitin E3 ligase and the proteasome.
我们曾报道过一种新型的c-Myc结合蛋白MM-1,它通过转录共抑制因子TIF1β/KAP1募集HDAC1复合物,从而抑制c-Myc的E盒依赖性转录活性。我们还报道过,MM-1中A157R位点的突变(在白血病或淋巴瘤患者中经常出现)消除了MM-1对c-Myc的所有抑制活性,这表明MM-1是一种新型肿瘤抑制因子。在本研究中,我们发现MM-1与蛋白酶体的一个组分结合,并在人细胞中促进c-Myc的降解。通过导入针对MM-1的siRNA敲低人HeLa细胞中的内源性MM-1,可使内源性c-Myc稳定。为了鉴定参与MM-1介导的c-Myc降解的蛋白质,我们进行了体内和体外结合试验。结果显示,MM-1直接与26S蛋白酶体的一个亚基Rpt3结合,而c-Myc直接与Skp2结合,Skp2募集ElonginC、ElonginB和Cullin2,从而形成一种新型泛素E3连接酶。敲低内源性Cullin2可使内源性c-Myc稳定。因此,MM-1是一个将c-Myc与泛素E3连接酶和蛋白酶体联系起来的因子。