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Diversity in translational regulation [Review]

机译:翻译规范的多样性[评论]

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摘要

Translational control of individual mRNAs relies on cis-regulatory elements, which are often found in the 3' untranslated region. The best characterized of these regulate cytoplasmic polyadenylation, and much of this process can now be defined in terms of molecular interactions, protein modifications and their consequences. Biochemical and genetic approaches have advanced the understanding of the many instances of translational regulation that are crucial for body patterning in Drosophila. For example, in vitro translation systems have been used to study the regulatory mechanisms, and genetic interactions have been instrumental in establishing a link between a regulatory factor and a component of the translational apparatus. Although most examples of control are thought to affect the initiation of translation, two classes of regulatory factors, one a protein and one a short non-coding RNA now appear to inhibit protein synthesis during elongation. Diversity seems to be a central feature of translational control, both in the mechanisms themselves and in the situations where this form of regulation is used.
机译:单个mRNA的翻译控制依赖于顺式调节元件,通常在3'非翻译区中发现。这些中最有特色的调节细胞质的聚腺苷酸化,现在可以从分子相互作用,蛋白质修饰及其后果方面来定义许多过程。生物化学和遗传学方法已经使人们对许多翻译调节实例有了更深入的了解,这些实例对于果蝇体内的模式形成至关重要。例如,体外翻译系统已用于研究调节机制,遗传相互作用已在建立调节因子和翻译装置组件之间的联系中发挥了作用。尽管大多数控制实例都被认为会影响翻译的启动,但两类调节因子,一种是蛋白质,一种是短的非编码RNA,现在似乎在延伸过程中抑制了蛋白质的合成。在机制本身以及使用这种形式的监管的情况下,多样性似乎都是翻译控制的主要特征。

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