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Translating translation Regulated protein translation as a biomedical intervention

机译:翻译翻译将调节的蛋白质翻译作为生物医学干预措施

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Altering the cellular response to internal and external stressors is essential for survival, hence the process of translation is exquisitely regulated to rapidly change the proteomic profile upon physiological challenges. We recently reported that genetic and pharmacological manipulation of translation may be beneficial in the treatment of Parkinson disease (PD). Using two Drosophila models of PD, we showed that altering the regulation of protein translation is sufficient to ameliorate the phenotypes of these models, including neurodegeneration, mitochondrial defects and behavioral deficits. Previous studies implicating translation regulation in lifespan extension further implicates this as an important mechanism that can mediate cell protective pathways, not just for age-related diseases such as PD, but also of aging itself. As such, translation regulation represents a convergent target for therapeutic interventions. Here we highlight the therapeutic potential of translation regulation in disease and describe how determining profiles of protein synthesis may help in the fight for disease prevention and healthy aging.
机译:改变细胞对内部和外部应激源的反应对于生存至关重要,因此,翻译过程受到了严格的调节,可以在发生生理挑战时迅速改变蛋白质组学特征。我们最近报道,翻译的遗传和药理学操纵可能在帕金森氏病(PD)的治疗中是有益的。使用两个PD的果蝇模型,我们表明,改变蛋白质翻译的调控足以改善这些模型的表型,包括神经变性,线粒体缺陷和行为缺陷。先前涉及翻译调控寿命延长的研究进一步暗示了这是一个重要的机制,它不仅可以介导与年龄相关的疾病(例如PD),而且可以介导衰老本身,从而介导细胞保护途径。这样,翻译调控代表了治疗干预的趋同目标。在这里,我们强调了疾病中翻译调节的治疗潜力,并描述了确定蛋白质合成的概况如何有助于疾病预防和健康衰老的斗争。

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