Manjari Swati R, Pata Janice D, Banavali Nilesh K
Laboratory of Computational and Structural Biology, Division of Genetics, Biggs Laboratory, Wadsworth Center, New York State Department of Health , Empire State Plaza, PO Box 509 , Albany, New York 12201-0509, United States.
Biochemistry. 2014 Jun 17;53(23):3807-16. doi: 10.1021/bi500189g. Epub 2014 Jun 9.
Base unstacking in template strands, when accompanied by strand slippage, can result in deletion mutations during strand extension by nucleic acid polymerases. In a GCCC mutation hot-spot sequence, which was previously identified to have a 50% probability of causing such mutations during DNA replication by a Y-family polymerase, a single-base deletion mutation could result from such unstacking of any one of its three template cytosines. In this study, the intrinsic energetic differences in unstacking among these three cytosines in a solvated DNA duplex overhang model were examined using umbrella sampling molecular dynamics simulations. The free energy profiles obtained show that cytosine unstacking grows progressively more unfavorable as one moves inside the duplex from the 5'-end of the overhang template strand. Spontaneous strand slippage occurs in response to such base unstacking in the direction of both the major and minor grooves for all three cytosines. Unrestrained simulations run from three distinct strand-slipped states and one non-strand-slipped state suggest that a more duplexlike environment can help stabilize strand slippage. The possible underlying reasons and biological implications of these observations are discussed in the context of nucleic acid replication active site dynamics.
模板链中的碱基解堆叠,若伴有链滑动,在核酸聚合酶进行链延伸时可导致缺失突变。在一个GCCC突变热点序列中(先前已确定该序列在Y家族聚合酶进行DNA复制时产生此类突变的概率为50%),其三个模板胞嘧啶中的任何一个发生这种解堆叠都可能导致单碱基缺失突变。在本研究中,使用伞形采样分子动力学模拟,研究了溶剂化DNA双链突出端模型中这三个胞嘧啶解堆叠时的内在能量差异。所得自由能曲线表明,随着从突出端模板链的5'端向双链内部移动,胞嘧啶解堆叠变得越来越不利。对于所有三个胞嘧啶,自发链滑动会响应这种碱基解堆叠,在大沟和小沟方向均会发生。从三种不同的链滑动状态和一种非链滑动状态进行的无约束模拟表明,更类似双链的环境有助于稳定链滑动。在核酸复制活性位点动力学的背景下,讨论了这些观察结果可能的潜在原因和生物学意义。