Bioinformatics Group, Centre for Development of Advanced Computing (C-DAC), Pune University Campus, Pune, India, 411 007.
J Mol Model. 2013 Dec;19(12):5545-59. doi: 10.1007/s00894-013-2042-2. Epub 2013 Nov 21.
p53 is a transcription factor involved in the expression of a number of downstream genes in response to genotoxic stress. It is activated through post translation modifications in normal as well as cancerous cells. However, due to mutations occurring in p53 in cancer cells it is not able to perform its function of DNA binding which leads to cell proliferation. It is found to be mutated in 50% of the cancers. These mutations occur at a high frequency in the DNA binding region of the p53. Among the known seven hot spot cancer mutations G245S, R249S, and R273C have been studied here using quantum mechanics and molecular mechanics (QM-MM) simulations. These mutations along with their experimentally proven rescue mutations have also been included in the present work. A comparative study of these cancer mutations along with wild type and their rescue mutations has been performed. A computational measure based on the free energy changes occurring in the binding of the p53 to the DNA has been presented. A correlation between the DNA binding property and important interaction between p53 and DNA has been observed for all the mutants. The keys residues which contribute to the binding of p53 to DNA by forming crucial hydrogen bonds have also been discussed in detail. A 30 ns simulation study was analyzed to observe the local structural changes and DNA binding property of p53 in case of wild type, cancer and rescue mutants.
p53 是一种转录因子,可响应遗传毒性应激,表达许多下游基因。它在正常和癌细胞中通过翻译后修饰而被激活。然而,由于癌细胞中 p53 的突变,它无法发挥其 DNA 结合的功能,从而导致细胞增殖。研究发现,p53 在 50%的癌症中发生突变。这些突变发生在 p53 的 DNA 结合区域的高频。在已知的七个热点癌症突变中,G245S、R249S 和 R273C 在这里使用量子力学和分子力学 (QM-MM) 模拟进行了研究。本工作还包括了这些突变及其已证实的挽救突变。对这些癌症突变及其野生型和挽救突变进行了比较研究。提出了一种基于结合 p53 与 DNA 时自由能变化的计算测量方法。观察到所有突变体的 DNA 结合特性与 p53 与 DNA 之间的重要相互作用之间存在相关性。还详细讨论了形成关键氢键以将 p53 结合到 DNA 的关键残基。进行了 30 ns 模拟研究,以观察野生型、癌症和挽救突变体中 p53 的局部结构变化和 DNA 结合特性。