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Ribosome display of mammalian receptor domains

机译:哺乳动物受体结构域的核糖体展示

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Many mammalian receptor domains, among them a large number of potential therapeutic target proteins, are highly aggregation-prone upon heterologous expression in bacteria. This severely limits functional studies of such receptor domains and also their engineering towards improved properties. One of these proteins is the Nogoreceptor, which plays a central role in mediating the inhibition of axon growth and functional recovery after injury of the adult mammalian central nervous system. We show here that the ligand binding domain of the Nogoreceptor folds to an active conformation in ternary ribosomal complexes, as formed in ribosome display. In these complexes the receptor is still connected, via a C-terminal tether, to the peptidyl tRNA in the ribosome and the mRNA also stays connected. The ribosome prevents aggregation of the protein, which aggregates as soon as the release from the ribosome is triggered. In contrast, no active receptor was observed in phage display, where aggregation appears to prevent incorporation of the protein into the phage coat. This strategy sets the stage for rapidly studying defined mutations of such aggregation-prone receptors in vitro and to improve their properties by in vitro evolution using the ribosome display technology.
机译:许多哺乳动物受体结构域(其中包括大量潜在的治疗靶蛋白)在细菌中异源表达后极易发生聚集。这严重限制了这类受体结构域的功能研究,也限制了它们对改善特性的工程设计。这些蛋白之一是Nogoreceptor,它在调节成年哺乳动物中枢神经系统损伤后在轴突生长的抑制和功能恢复中起关键作用。我们在这里显示Nogoreceptor的配体结合域折叠成三态核糖体复合物中的活性构象,如在核糖体展示中形成的那样。在这些复合物中,受体仍通过C末端系链连接到核糖体中的肽基tRNA,mRNA也保持连接。核糖体可阻止蛋白质的聚集,蛋白质一旦触发从核糖体的释放就会聚集。相反,在噬菌体展示中未观察到活性受体,其中聚集似乎阻止了蛋白质掺入噬菌体外壳。该策略为在体外快速研究此类易聚集受体的定义突变并通过使用核糖体展示技术通过体外进化改善其特性奠定了基础。

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