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大肠杆菌5S RNA的依赖途径重折叠

Pathway-dependent refolding of E. coli 5S RNA.

作者信息

Weidner H, Crothers D M

出版信息

Nucleic Acids Res. 1977 Oct;4(10):3401-14. doi: 10.1093/nar/4.10.3401.

Abstract

The refolding of 5S RNA into its two conformational states has been examined as a function of solvent composition and annealing conditions. The results show that the product distribution depends on the folding pathway. Quick cooling from high temperature produces roughly equal amounts of the two forms, even in the presence of 1 mm Mg++. However annealing by slow cooling to intermediate temperatures (50 degrees--60 degrees C) in Mg++-containing buffers, followed by quick cooling, allows formation of a structure which guides the refolding path to the "native" conformation. The stability of this structural nucleus for the "native" conformation depends strongly on Mg++ concentration. We conclude that the A ("native") conformation differs from the B conformation not in rate of refolding, but rather in having a lower enthalpy and a also a smaller rate of unfolding for the critical structural nucleus. The order of folding during biosynthesis may be crucial for forming the "native" conformation.

摘要

5S RNA重折叠成其两种构象状态的过程已作为溶剂组成和退火条件的函数进行了研究。结果表明,产物分布取决于折叠途径。即使在存在1 mM Mg++的情况下,从高温快速冷却也会产生大致等量的两种形式。然而,在含Mg++的缓冲液中缓慢冷却至中间温度(50℃ - 60℃),然后快速冷却进行退火,会形成一种结构,该结构将重折叠路径导向“天然”构象。这种“天然”构象的结构核心的稳定性强烈依赖于Mg++浓度。我们得出结论,A(“天然”)构象与B构象的不同不在于重折叠速率,而在于具有更低的焓以及关键结构核心更小的解折叠速率。生物合成过程中的折叠顺序对于形成“天然”构象可能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4964/342661/9dca429672fa/nar00483-0128-a.jpg

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