化学
主题(音乐)
胞嘧啶
质子化
碱基对
结构母题
DNA
分子动力学
结晶学
亚稳态
生物物理学
立体化学
碱基
生物化学
计算化学
生物
物理
离子
有机化学
声学
作者
Manas Mondal,Yi Qin Gao
标识
DOI:10.1021/acs.jpclett.2c00640
摘要
Gene regulatory functions of noncanonical i-motif DNA are associated with dynamic i-motif formation in the cellular environment and pH variation. With atomistic simulations, we show the dramatic influence of solvent pH on the conformational dynamics of biologically relevant telomeric i-motif DNA coupled with protonation of cytosine bases in different conformations. We rationalized the pH-dependent dynamics and conformational variability of the i-motif in terms of base pairing and specific loop motions. The human telomeric i-motif is found to acquire various metastable folded conformations at pH values near the pKa of cytosine with the formation of a noncanonical C:C W:W trans base pair along with the hemiprotonated C:C+ pairs in the i-motif core. pH-dependent dynamics and the local solvent structure of i-motif DNA imply that the presence of a cosolvent or molecular crowding can promote i-motif formation in vivo by changing the conformational fluctuations and hydration state of the structure.
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