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C646 在 p300 组蛋白乙酰转移酶酶结合口袋中分子间相互作用、静电特性和稳定性的深入了解:分子动力学和电荷密度研究的结合。

Insights into intermolecular interactions, electrostatic properties and the stability of C646 in the binding pocket of p300 histone acetyltransferase enzyme: a combined molecular dynamics and charge density study.

机构信息

a Laboratory of Biocrystallography and Computational Molecular Biology, Department of Physics , Periyar University , Salem 636 011 , India.

出版信息

J Biomol Struct Dyn. 2018 Sep;36(12):3246-3264. doi: 10.1080/07391102.2017.1384761. Epub 2017 Oct 30.

Abstract

Histone acetyltransferases (HATs) and histone deacetylases (HDACs) are enzymes that exhibit an important transcription activity. Dysfunction of these enzymes may lead to different diseases including cancer, cardiovascular, and other diseases. Therefore, these enzymes are the potential target for the generation of new therapeutics. C646 is a synthetic p300 HAT inhibitor; its structural and the electrostatic properties are the paradigm to understand its activity in the active site of p300 HAT enzyme. The docked C646 molecule in the active site forms expected key intermolecular interactions with the amino acid residues Trp1436, Tyr1467, and one water molecule (W1861); and these interactions are important for acetylation reaction. When compare the active site structure of C646 with the gas-phase structure, it is confirmed that the electron density distribution of polar bonds are highly altered, when the molecule present in the active site. In the gas-phase structure of C646, a large negative regions of electrostatic potential is found at the vicinity of O(4), O(5), and O(6) atoms; whereas, the negative region of these atoms are reduced in the active site. The molecular dynamics (MD) simulation also performed, it reveals the conformational stability and the intermolecular interactions of C646 molecule in the active site of p300.

摘要

组蛋白乙酰转移酶 (HATs) 和组蛋白去乙酰化酶 (HDACs) 是具有重要转录活性的酶。这些酶的功能障碍可能导致不同的疾病,包括癌症、心血管疾病和其他疾病。因此,这些酶是生成新治疗药物的潜在靶点。C646 是一种合成的 p300 HAT 抑制剂;其结构和静电特性是理解其在 p300 HAT 酶活性部位活性的范例。对接在活性部位的 C646 分子与色氨酸残基 Trp1436、酪氨酸残基 Tyr1467 和一个水分子 (W1861) 形成预期的关键分子间相互作用;这些相互作用对于乙酰化反应很重要。当将 C646 的活性部位结构与气相结构进行比较时,证实当分子存在于活性部位时,极性键的电子密度分布发生了很大的改变。在 C646 的气相结构中,在 O(4)、O(5) 和 O(6) 原子附近发现了一个大的静电势负区域;而在活性部位,这些原子的负区域减少了。还进行了分子动力学 (MD) 模拟,它揭示了 C646 分子在 p300 活性部位的构象稳定性和分子间相互作用。

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