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RNA 结构中 pk- 和 k- 转折的功能可互换性。

The functional exchangeability of pk- and k-turns in RNA structure.

机构信息

Cancer Research UK Nucleic Acid Structure Research Group; MSI/WTB Complex; The University of Dundee; Dundee, UK.

出版信息

RNA Biol. 2013 Mar;10(3):445-52. doi: 10.4161/rna.23673. Epub 2013 Jan 30.

Abstract

Ribonuclease P RNA requires a sharply kinked RNA helix to make a loop-receptor interaction that creates the binding site for the substrate. In some forms of the ribozyme, this is accomplished by a k-turn, while others have a different element called the pk-turn. The structure of the pk-turn in RNase P of Thermotoga maritima is globally very similar to a k-turn, but lacks all the standard features of that structure, including long-range hydrogen bonds between the two helical arms. We show here that in an isolated RNA duplex, the pk-turn fails to adopt a tightly kinked structure, but rather is a flexible element. This suggests that the tertiary contacts of RNase P assist its folding into the required kinked structure. We find that we can replace the k-turn of the SAM-I riboswitch with the pk-turn, such that the resulting RNA retains its ability to bind SAM, although with lower affinity. We also find that we can replace the pk-turn of T. maritima RNase P with a standard k-turn (in either orientation) with retention of ribozyme activity. Thus, although the pk-turn cannot intrinsically fold into the kinked structure, it can be induced to fold correctly in context. And the pk-turn and k-turns can substitute functionally for one another.

摘要

核糖核酸酶 P RNA 需要一个急剧扭曲的 RNA 螺旋来形成与环受体的相互作用,从而产生与底物结合的位点。在核酶的某些形式中,这是通过 k-转角来完成的,而其他形式则具有不同的称为 pk-转角的元素。嗜热栖热菌 RNase P 中的 pk-转角的结构在全局上与 k-转角非常相似,但缺乏该结构的所有标准特征,包括两个螺旋臂之间的远程氢键。我们在这里表明,在分离的 RNA 双链体中,pk-转角不能采用紧密扭曲的结构,而是一个灵活的元件。这表明 RNase P 的三级接触有助于其折叠成所需的扭曲结构。我们发现,我们可以用 pk-转角替换 SAM-I 核糖开关的 k-转角,从而使得到的 RNA 仍然能够结合 SAM,但亲和力较低。我们还发现,我们可以用标准的 k-转角(无论取向如何)替换 T. maritima RNase P 的 pk-转角,而保留核酶活性。因此,尽管 pk-转角不能内在地折叠成扭曲的结构,但它可以在上下文诱导下正确折叠。而且 pk-转角和 k-转角可以在功能上相互替代。

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