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The Roles of MDM2 and MDMX Phosphorylation in Stress Signaling to p53

机译:MDM2和MDMX磷酸化在应激信号转入p53中的作用

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摘要

The p53 tumor suppressor is highly responsive to different physiological stresses such as abnormal cell proliferation, nutrient deprivation, and DNA damage. Distinct signaling mechanisms have evolved to activate p53, which in turn modulate numerous pathways to enhance fitness and survival of the organism. Elucidating the molecular mechanisms of these signaling events is critical for understanding tumor suppression by p53 and development of novel therapeutics. Studies in the past decade have established that MDM2 and MDMX are important targets of signaling input from different pathways. Here, we focus our discussion on MDM2 and MDMX phosphorylation, which is important for p53 activation by DNA damage. Investigations in this area have generated new insight into the inner workings of MDM2 and MDMX and underscore the importance of allosteric communication between different domains in achieving an efficient response to phosphorylation. It is likely that MDM2 and MDMX regulation by phosphorylation will share mechanistic similarities to other signaling hub molecules. Phosphorylation-independent p53 activators such as ARF and ribosomal proteins ultimately achieve the same outcome as phosphorylation, suggesting that they may induce similar changes in the structure and function of MDM2 and MDMX through protein-protein interactions.
机译:p53肿瘤抑制因子对不同的生理压力(例如异常细胞增殖,营养剥夺和DNA损伤)具有高响应能力。不同的信号机制已经进化为激活p53,而p53则调节了许多途径来增强生物的适应性和存活率。阐明这些信号事件的分子机制对于理解p53抑制肿瘤和开发新疗法至关重要。过去十年的研究已经确定,MDM2和MDMX是信号来自不同途径的重要输入信号。在这里,我们将讨论重点放在MDM2和MDMX磷酸化上,这对于DNA损伤激活p53至关重要。在这一领域的研究已经对MDM2和MDMX的内部运作产生了新的见解,并强调了不同域之间的变构通讯在实现对磷酸化的有效反应中的重要性。通过磷酸化作用的MDM2和MDMX调节可能与其他信号中心分子共享相似的机理。不依赖磷酸化的p53活化剂(例如ARF和核糖体蛋白)最终获得与磷酸化相同的结果,表明它们可能通过蛋白质-蛋白质相互作用诱导MDM2和MDMX的结构和功能发生类似变化。

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