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A small single-domain protein folds through the same pathway on and off the ribosome

机译:一个小的单结构域蛋白通过核糖体上和下的相同途径折叠

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摘要

In vivo, proteins fold and function in a complex environment subject to many stresses that can modulate a protein’s energy landscape. One aspect of the environment pertinent to protein folding is the ribosome, since proteins have the opportunity to fold while still bound to the ribosome during translation. We use a combination of force and chemical denaturant (chemomechanical unfolding), as well as point mutations, to characterize the folding mechanism of the src SH3 domain both as a stalled ribosome nascent chain and free in solution. Our results indicate that src SH3 folds through the same pathway on and off the ribosome. Molecular simulations also indicate that the ribosome does not affect the folding pathway for this small protein. Taken together, we conclude that the ribosome does not alter the folding mechanism of this small protein. These results, if general, suggest the ribosome may exert a bigger influence on the folding of multidomain proteins or protein domains that can partially fold before the entire domain sequence is outside the ribosome exit tunnel.
机译:在体内,蛋白质在复杂的环境中会折叠并发挥作用,这会受到许多压力的影响,这些压力会调节蛋白质的能量分布。与蛋白质折叠有关的环境的一个方面是核糖体,因为蛋白质具有折叠的机会,同时在翻译过程中仍与核糖体结合。我们使用力和化学变性剂(化学机械展开)以及点突变的组合来表征src SH3域的折叠机制既是停滞的核糖体新生链又是溶液中游离的。我们的结果表明,src SH3可以通过核糖体上和下的相同途径折叠。分子模拟还表明,核糖体不影响该小蛋白的折叠途径。两者合计,我们得出结论,核糖体不会改变这种小蛋白的折叠机制。这些结果,如果总的来说,表明核糖体可能会对多域蛋白质或蛋白质域的折叠产生更大的影响,这些蛋白质或蛋白质域在整个结构域序列位于核糖体出口通道之外之前可以部分折叠。

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