首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Kinetic circular dichroism shows that the S-peptide alpha-helix of ribonuclease S unfolds fast and refolds slowly.
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Kinetic circular dichroism shows that the S-peptide alpha-helix of ribonuclease S unfolds fast and refolds slowly.

机译:动力学圆二色性表明核糖核酸酶S的S-肽α-螺旋快速展开而缓慢重新折叠。

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摘要

It is shown that circular dichroism (CD) can distinguish between the S-peptide and the S-protein fragments of RNase S at 225 nm and 235 nm. The conformational source for the strong CD at 225 nm is the S-peptide alpha-helix. The structural assignment of the CD at 235 nm is not clear but it is shown to be largely due to the S-protein moiety. This situation is utilized to monitor the kinetics of pH-induced unfolding and refolding of the two moieties. It is observed that major changes occur both in the fast and slow phases of unfolding as well as refolding. Specifically, the S-peptide alpha-helix unzippering is a fast reaction, followed by slow kinetics only at 235 nm. These latter kinetics parallel the appearance of the slow-folding species commonly attributed to the accumulation of non-native proline isomers. In refolding, a large fraction of the CD of S-protein at 235 nm recovers rapidly. The S-peptide alpha-helix zippers up last. These results are unexpected and their implications for the folding mechanism of ribonuclease are discussed.
机译:结果表明,圆二色性(CD)可以区分RNase S在225 nm和235 nm的S肽和S蛋白片段。 225 nm处强CD的构象来源是S肽α-螺旋。 CD在235 nm处的结构分配尚不清楚,但显示很大程度上归因于S蛋白部分。利用这种情况来监测两个部分的pH诱导的展开和重新折叠的动力学。可以观察到,主要的变化发生在展开和重新折叠的快速和慢速阶段。具体而言,S肽α-螺旋解拉链是一个快速反应,随后仅在235 nm处动力学缓慢。后者的动力学与缓慢折叠物质的出现平行,这通常归因于非天然脯氨酸异构体的积累。在重折叠中,S蛋白CD的大部分在235 nm处迅速恢复。最后是S肽α-螺旋。这些结果是出乎意料的,并讨论了其对核糖核酸酶折叠机制的影响。

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