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渗透溶质和大分子拥挤剂对稳定的GAAA四环及其对CG封闭碱基对的偏好的影响。

Effects of osmolytes and macromolecular crowders on stable GAAA tetraloops and their preference for a CG closing base pair.

作者信息

Leonard Kaethe N, Blose Joshua M

机构信息

Department of Chemistry and Biochemistry, State University of New York, The College at Brockport, Brockport, NY, United States of America.

出版信息

PeerJ. 2018 Feb 13;6:e4236. doi: 10.7717/peerj.4236. eCollection 2018.

Abstract

Osmolytes and macromolecular crowders have the potential to influence the stability of secondary structure motifs and alter preferences for conserved nucleic acid sequences . To further understand the cellular function of RNA we observed the effects of a model osmolyte, polyethylene glycol (PEG) 200, and a model macromolecular crowding agent, PEG 8000, on the GAAA tetraloop motif. GAAA tetraloops are conserved, stable tetraloops, and are critical participants in RNA tertiary structure. They also have a thermodynamic preference for a CG closing base pair. The thermal denaturation of model hairpins containing GAAA loops was monitored using UV-Vis spectroscopy in the presence and absence of PEG 200 or PEG 8000. Both of the cosolutes tested influenced the thermodynamic preference for a CG base pair by destabilizing the loop with a CG closing base pair relative to the loop with a GC closing base pair. This result also extended to a related DNA triloop, which provides further evidence that the interactions between the loop and closing base pair are identical for the d(GCA) triloop and the GAAA tetraloop. Our results suggest that in the presence of model PEG molecules, loops with a GC closing base pair may retain some preferential interactions with the cosolutes that are lost in the presence of the CG closing base pair. These results reveal that relatively small structural changes could influence how neutral cosolutes tune the stability and function of secondary structure motifs .

摘要

渗透溶质和大分子拥挤剂有可能影响二级结构基序的稳定性,并改变对保守核酸序列的偏好。为了进一步了解RNA的细胞功能,我们观察了一种模型渗透溶质聚乙二醇(PEG)200和一种模型大分子拥挤剂PEG 8000对GAAA四环基序的影响。GAAA四环是保守、稳定的四环,是RNA三级结构的关键参与者。它们在热力学上也偏好CG封闭碱基对。在有和没有PEG 200或PEG 8000的情况下,使用紫外可见光谱监测含有GAAA环的模型发夹的热变性。所测试的两种共溶质都通过使具有CG封闭碱基对的环相对于具有GC封闭碱基对的环不稳定,影响了对CG碱基对的热力学偏好。这一结果也扩展到了相关的DNA三环,这进一步证明了d(GCA)三环和GAAA四环中环与封闭碱基对之间的相互作用是相同的。我们的结果表明,在存在模型PEG分子的情况下,具有GC封闭碱基对的环可能与共溶质保持一些优先相互作用,而这些相互作用在存在CG封闭碱基对的情况下会丧失。这些结果表明,相对较小的结构变化可能会影响中性共溶质如何调节二级结构基序的稳定性和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c3d/5815330/e357b5a3d5ab/peerj-06-4236-g001.jpg

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