Mikhaylova Olga, Ignacak Monika L, Barankiewicz Teresa J, Harbaugh Svetlana V, Yi Ying, Maxwell Patrick H, Schneider Martin, Van Geyte Katie, Carmeliet Peter, Revelo Monica P, Wyder Michael, Greis Kenneth D, Meller Jarek, Czyzyk-Krzeska Maria F
Department of Molecular Oncogenesis, Genome Research Institute, University of Cincinnati, Cincinnati, OH 45237-0505, USA.
Mol Cell Biol. 2008 Apr;28(8):2701-17. doi: 10.1128/MCB.01231-07. Epub 2008 Feb 19.
Human renal clear cell carcinoma (RCC) is frequently associated with loss of the von Hippel-Lindau (VHL) tumor suppressor (pVHL), which inhibits ubiquitylation and degradation of the alpha subunits of hypoxia-inducible transcription factor. pVHL also ubiquitylates the large subunit of RNA polymerase II, Rpb1, phosphorylated on serine 5 (Ser5) within the C-terminal domain (CTD). A hydroxylated proline 1465 within an LXXLAP motif located N-terminal to the CTD allows the interaction of Rpb1 with pVHL. Here we report that in RCC cells, pVHL regulates expression of Rpb1 and is necessary for low-grade oxidative-stress-induced recruitment of Rpb1 to the DNA-engaged fraction and for its P1465 hydroxylation, phosphorylation, and nondegradative ubiquitylation. Egln-9-type prolyl hydroxylases, PHD1 and PHD2, coimmunoprecipitated with Rpb1 in the chromatin fraction of VHL(+) RCC cells in response to oxidative stress, and PHD1 was necessary for P1465 hydroxylation while PHD2 had an inhibitory effect. P1465 hydroxylation was required for oxidative-stress-induced Ser5 phosphorylation of Rpb1. Importantly, overexpression of wild-type Rpb1 stimulated formation of kidney tumors by VHL(+) cells, and this effect was abolished by P1465A mutation of Rpb1. These data indicate that through this novel pathway involving P1465 hydroxylation and Ser5 phosphorylation of Rbp1, pVHL may regulate tumor growth.
人肾透明细胞癌(RCC)常与冯·希佩尔-林道(VHL)肿瘤抑制因子(pVHL)缺失相关,该因子可抑制缺氧诱导转录因子α亚基的泛素化和降解。pVHL还可使RNA聚合酶II的大亚基Rpb1在其C端结构域(CTD)内的丝氨酸5(Ser5)位点磷酸化后发生泛素化。CTD N端LXXLAP基序内的脯氨酸1465羟基化可使Rpb1与pVHL相互作用。在此我们报道,在RCC细胞中,pVHL调节Rpb1的表达,并且对于低级别氧化应激诱导的Rpb1募集到与DNA结合的部分以及其P1465羟基化、磷酸化和非降解性泛素化是必需的。Egln-9型脯氨酰羟化酶PHD1和PHD2在氧化应激反应中与VHL(+) RCC细胞染色质部分的Rpb1共免疫沉淀,PHD1对于P1465羟基化是必需的,而PHD2具有抑制作用。P1465羟基化是氧化应激诱导的Rpb1 Ser5磷酸化所必需的。重要的是,野生型Rpb1的过表达刺激VHL(+)细胞形成肾肿瘤,而Rpb1的P1465A突变消除了这种作用。这些数据表明,通过这条涉及Rpb1的P1465羟基化和Ser5磷酸化的新途径,pVHL可能调节肿瘤生长。