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中性共溶质对包含CG和CA步的DNA双链体从B型到Z型转变的影响。

The effects of a neutral cosolute on the B to Z transition for DNA duplexes incorporating both CG and CA steps.

作者信息

Phromsiri Pakinee, Gerling Rebecca R, Blose Joshua M

机构信息

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

出版信息

Nucleosides Nucleotides Nucleic Acids. 2017 Nov 2;36(11):690-703. doi: 10.1080/15257770.2017.1388395. Epub 2017 Nov 29.

Abstract

In the cell, nearly 40% of the volume is occupied by macromolecular crowding agents and smaller osmolytes accumulate in response to environmental stresses. Of particular interest is the influence of osmolytes on the transition of the right-handed B-DNA to the left-handed Z-DNA. Due to the correlation between Z-DNA formation potential and regions of active transcription, Z-DNA is believed to serve a vital role in the transcription process, and changes in osmolyte concentration may influence transcription as a part of the stress response. We utilized circular dichroism spectroscopy to monitor changes in conformation of DNA duplexes containing a full-turn of Z-DNA in the presence and absence of PEG 200. We used PEG 200 as a model neutral cosolute. Sodium ion titrations revealed that PEG 200 influenced the folding of Z-DNA compared to dilute solution conditions by decreasing the free energy of folding, increasing folding cooperativity, and decreasing the in vitro [Na] and Δn required for folding for all sequences tested, even those that included 40% CA steps instead of the classic CG repeats. Moreover, the presence of 40% PEG 200 induced the Z-form conformation in sequences that would not fully adopt the Z-form structure even in 5 M NaCl. These results suggest that osmolytes may play a significant role in supporting the transient formation of Z-DNA in vivo, and that sequences containing a significant amounts of CA instead of CG repeats may more favorably adopt the Z-conformation as a part of binding and regulatory processes than had been previously considered.

摘要

在细胞中,近40%的体积被大分子拥挤剂占据,较小的渗透溶质会因环境压力而积累。特别令人感兴趣的是渗透溶质对右手B-DNA向左手Z-DNA转变的影响。由于Z-DNA形成潜力与活跃转录区域之间的相关性,人们认为Z-DNA在转录过程中起着至关重要的作用,渗透溶质浓度的变化可能作为应激反应的一部分影响转录。我们利用圆二色光谱法监测在有和没有聚乙二醇200(PEG 200)存在的情况下,含有一整圈Z-DNA的DNA双链体构象的变化。我们使用PEG 200作为模型中性共溶质。钠离子滴定表明,与稀释溶液条件相比,PEG 200通过降低折叠自由能、增加折叠协同性以及降低所有测试序列折叠所需的体外[Na]和Δn来影响Z-DNA的折叠,即使是那些包含40% CA步而非经典CG重复序列的序列。此外,40% PEG 200的存在会在即使在5 M NaCl中也不会完全采用Z型结构的序列中诱导Z型构象。这些结果表明,渗透溶质可能在支持体内Z-DNA的瞬时形成中发挥重要作用,并且含有大量CA而非CG重复序列的序列作为结合和调控过程的一部分,可能比之前认为的更有利于采用Z构象。

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