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在生理pH值下,重链β基因启动子富含胞嘧啶的链所展现的同型双链到i-基序结构转换。

Homoduplex to i-motif structural switch exhibited by a cytosine rich strand of the heavy chain β gene promoter at physiological pH.

作者信息

Singh Anju, Kukreti Shrikant

机构信息

Nucleic Acids Research Lab, Department of Chemistry, University of Delhi Delhi-110007 India

出版信息

RSC Adv. 2018 Oct 4;8(60):34202-34214. doi: 10.1039/c8ra05179h.

Abstract

Genomic locations such as promoter, exon, intron, telomeric and non-telomeric regions are rich in GC-rich sequences with the potential to form G- and C-tetraplexes on both strands independently. Herein, we employed biophysical and biochemical methods to study a 34-mer C-rich DNA sequence of the myosin heavy chain β gene () promoter, namely HM34C for humans and the rabbit counterpart, RM34C, which differs from HM34C at three positions (three bases). Circular dichroism (CD), UV-thermal denaturation and native gel electrophoresis studies demonstrated that both the C-rich promoter segments form C-tetraplex (i-motif) structures. The CD studies revealed that HM34C forms the i-motif structure at acidic pH (5.2) in the presence of 0.1 M NaCl but remains unstructured at physiological pH. Interestingly, RM34C can form the stable i-motif structure in acidic as well as physiological pH. A shift in the positive peak from 280 nm to 275 nm with the increase in temperature from 4 °C to 30 °C was observed in temperature-dependent CD studies. UV-melting studies showed a biphasic transition for RM34C, indicating the existence of two structural species at neutral pH. In view of these findings we suggest that at physiological pH, the RM34C sequence exists in equilibrium between two structural motifs, the i-motif and homoduplex structure. This study may add to the understanding of the i-motif/homoduplex in equilibrium in physiological environments.

摘要

基因组位置,如启动子、外显子、内含子、端粒和非端粒区域,富含富含GC的序列,两条链都有独立形成G-四链体和C-四链体的潜力。在此,我们采用生物物理和生化方法研究肌球蛋白重链β基因()启动子的一个34聚体富含C的DNA序列,即人类的HM34C及其兔对应序列RM34C,后者在三个位置(三个碱基)与HM34C不同。圆二色性(CD)、紫外热变性和天然凝胶电泳研究表明,两个富含C的启动子片段均形成C-四链体(i-基序)结构。CD研究表明,HM34C在0.1 M NaCl存在下于酸性pH(5.2)形成i-基序结构,但在生理pH下仍无结构。有趣的是,RM34C在酸性和生理pH下均可形成稳定的i-基序结构。在温度依赖性CD研究中,观察到随着温度从4°C升高到30°C,正峰从280 nm移至275 nm。紫外熔解研究表明RM34C有双相转变,表明在中性pH下存在两种结构形式。鉴于这些发现,我们认为在生理pH下,RM34C序列在两种结构基序(i-基序和同源双链结构)之间处于平衡状态。这项研究可能有助于理解生理环境中处于平衡状态的i-基序/同源双链。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9abf/9087296/7bb0ca75e3f8/c8ra05179h-f1.jpg

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