Zhang Yanping, Wolf Gabrielle White, Bhat Krishna, Jin Aiwen, Allio Theresa, Burkhart William A, Xiong Yue
Department of Molecular and Cellular Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Mol Cell Biol. 2003 Dec;23(23):8902-12. doi: 10.1128/MCB.23.23.8902-8912.2003.
The gene encoding p53 mediates a major tumor suppression pathway that is frequently altered in human cancers. p53 function is kept at a low level during normal cell growth and is activated in response to various cellular stresses. The MDM2 oncoprotein plays a key role in negatively regulating p53 activity by either direct repression of p53 transactivation activity in the nucleus or promotion of p53 degradation in the cytoplasm. DNA damage and oncogenic insults, the two best-characterized p53-dependent checkpoint pathways, both activate p53 through inhibition of MDM2. Here we report that the human homologue of MDM2, HDM2, binds to ribosomal protein L11. L11 binds a central region in HDM2 that is distinct from the ARF binding site. We show that the functional consequence of L11-HDM2 association, like that with ARF, results in the prevention of HDM2-mediated p53 ubiquitination and degradation, subsequently restoring p53-mediated transactivation, accumulating p21 protein levels, and inducing a p53-dependent cell cycle arrest by canceling the inhibitory function of HDM2. Interference with ribosomal biogenesis by a low concentration of actinomycin D is associated with an increased L11-HDM2 interaction and subsequent p53 stabilization. We suggest that L11 functions as a negative regulator of HDM2 and that there might exist in vivo an L11-HDM2-p53 pathway for monitoring ribosomal integrity.
编码p53的基因介导了一条主要的肿瘤抑制途径,该途径在人类癌症中经常发生改变。在正常细胞生长过程中,p53功能维持在低水平,并在应对各种细胞应激时被激活。MDM2癌蛋白通过直接抑制细胞核中p53的反式激活活性或促进细胞质中p53的降解,在负向调节p53活性方面发挥关键作用。DNA损伤和致癌性损伤是两条最具特征的p53依赖性检查点途径,二者均通过抑制MDM2来激活p53。在此我们报告,MDM2的人类同源物HDM2与核糖体蛋白L11结合。L11结合HDM2中的一个中央区域,该区域不同于ARF结合位点。我们表明,L11与HDM2结合的功能后果,如同其与ARF结合一样,导致阻止HDM2介导的p53泛素化和降解,随后恢复p53介导的反式激活,积累p21蛋白水平,并通过消除HDM2的抑制功能诱导p53依赖性细胞周期停滞。低浓度放线菌素D干扰核糖体生物合成与L11 - HDM2相互作用增加及随后的p53稳定有关。我们认为L11作为HDM2的负调节因子发挥作用,并且体内可能存在一条用于监测核糖体完整性的L11 - HDM2 - p53途径。