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咖啡酸苯乙酯(CAPE)在p53突变体中赋予野生型p53功能:生物信息学和实验证据。

Caffeic acid phenethyl ester (CAPE) confers wild type p53 function in p53 mutant: bioinformatics and experimental evidence.

作者信息

Radhakrishnan Navaneethan, Dhanjal Jaspreet Kaur, Sari Anissa Nofita, Ishida Yoshiyuki, Terao Keiji, Kaul Sunil C, Sundar Durai, Wadhwa Renu

机构信息

DAILAB, Department of Biochemical Engineering & Biotechnology, Indian Institute of Technology (IIT) Delhi, Hauz Khas, New Delhi, 110 016, India.

AIST-INDIA DAILAB, DBT-AIST International Center for Translational & Environmental Research (DAICENTER), National Institute of Advanced Industrial Science & Technology (AIST), Tsukuba, 305 8565, Japan.

出版信息

Discov Oncol. 2021 Dec 20;12(1):64. doi: 10.1007/s12672-021-00461-2.

Abstract

Mutations in the tumor suppressor protein p53 is a prevalent feature in majority of cancers resulting in inactivation of its activities related to control of cell cycle progression and proliferation. p53 is one of the common hotspot mutations that causes decrease in its thermodynamic stability. Some small molecules have been shown to bind to the mutated site and restore its wild type thermodynamics and tumor suppressor function. In this study, we have explored the potential of caffeic acid phenethyl ester (CAPE-a bioactive compound from propolis) to interact with p53 and restore its wild type p53 (p53) transcription activation and tumor suppressor activities. We recruited computational methods, viz. molecular docking, molecular dynamics simulations and free energy calculations to study the interaction of CAPE at the mutation crevice and found that it has potential to restore p53 function of the p53 mutant similar to a previously described restoration molecule PK7242. We provide cell-based experimental evidence to these predictions and suggest CAPE as a potential natural drug for treatment of p53 mutant harboring cancers.

摘要

肿瘤抑制蛋白p53的突变是大多数癌症的普遍特征,导致其与细胞周期进程和增殖控制相关的活性失活。p53是导致其热力学稳定性降低的常见热点突变之一。一些小分子已被证明可与突变位点结合,并恢复其野生型热力学和肿瘤抑制功能。在本研究中,我们探索了咖啡酸苯乙酯(CAPE,一种来自蜂胶的生物活性化合物)与p53相互作用并恢复其野生型p53(p53)转录激活和肿瘤抑制活性的潜力。我们采用了计算方法,即分子对接、分子动力学模拟和自由能计算,来研究CAPE在突变缝隙处的相互作用,发现它有潜力恢复p53突变体的p53功能,类似于先前描述的恢复分子PK7242。我们为这些预测提供了基于细胞的实验证据,并建议将CAPE作为治疗携带p53突变癌症的潜在天然药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3243/8777538/7fa219204930/12672_2021_461_Fig1_HTML.jpg

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