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Proximal Single-Stranded RNA Destabilizes Human Telomerase RNA G-quadruplex and Induces its Distinct Conformers

J Phys Chem Lett. 2021-04; 
Shasha Ye , Ziting Chen , Xia Zhang , Fangfang Li , Lijuan Guo , Xi-Miao Hou , Wen-Qiang Wu , Jian Wang, Cong Liu , Ke Zheng , Bo Sun
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Custom DNA/RNA Oligos HPLC-purified DNA and RNA oligonucleotides with or without labels used to construct the substrates were purchased from Sangon Biotech (Shanghai, China) and GenScript (Nanjing, China), respectively and GenScript (Nanjing, China), Get A Quote

摘要

Single-stranded guanine-rich RNA sequences have a propensity to fold into compact G-quadruplexes (RG4s). The conformational transitions of these molecules provide an important way to regulate their biological functions. Here, we examined the stability and conformation of an RG4-forming sequence identified near the end of human telomerase RNA. We found that a proximal single-stranded (ss) RNA significantly impairs RG4 stability at physiological K+ concentrations, resulting in a reduced RG4 rupture force of ∼ 24.4 pN and easier accessibility of the G-rich sequence. The destabilizing effect requires a minimum of six nucleotides of ssRNA and is effective at either end of RG4. Remarkably, this RG4-forming sequence... More

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