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Cofactors loaded quaternary structure of Lysine-specific demethylase 5C (KDM5C) protein: Computational model

机译:辅因子加载赖氨酸特异性脱甲基酶5C(KDM​​5C)蛋白的四级结构:计算模型

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摘要

The KDM5C gene (also known as JARID1C and SMCX) is located on the X chromosome and encodes a ubiquitously expressed 1,560-aa protein, which plays an important role in lysine methylation (specifically reverses tri- and di-methylation of Lys4 of histone H3). Currently, thirteen missense mutations in KDM5C have been linked to X-linked mental retardation. However, the molecular mechanism of disease is currently unknown due to the experimental difficulties in expressing such large protein and the lack of experimental 3D structure. In this work, we utilize homology modeling, docking, and experimental data to predict 3D structures of KDM5C domains and their mutual arrangement. The resulting quaternary structure includes KDM5C JmjN, ARID, PHD1, JmjC, ZF domains, substrate histone peptide, enzymatic cofactors and DNA. The predicted quaternary structure was investigated with molecular dynamic simulation for its stability, and further analysis was carried out to identify features measured experimentally. The predicted structure of KDM5C was used to investigate the effects of disease-causing mutations and it was shown that the mutations alter domain stability and inter-domain interactions. The structural model reported in this work could prompt experimental investigations of KDM5C domain-domain interaction and exploration of undiscovered functionalities.
机译:KDM5C基因(也称为JARID1C和SMCX)位于X染色体上,编码一个普遍表达的1,560-aa蛋白,该蛋白在赖氨酸甲基化中发挥重要作用(特别是逆转组蛋白H3 Lys4的三和二甲基化) 。目前,KDM5C中的13个错义突变已与X连锁的智力低下有关。然而,由于表达这种大蛋白的实验困难和缺乏实验性3D结构,目前尚不清楚疾病的分子机制。在这项工作中,我们利用同源性建模,对接和实验数据来预测KDM5C域的3D结构及其相互排列。所得的四级结构包括KDM5C JmjN,ARID,PHD1,JmjC,ZF域,底物组蛋白肽,酶促辅因子和DNA。通过分子动力学模拟研究了预测的四级结构的稳定性,并进行了进一步分析以鉴定实验测量的特征。 KDM5C的预测结构用于研究致病突变的影响,结果表明该突变会改变域稳定性和域间相互作用。在这项工作中报告的结构模型可以促进对KDM5C域-域相互作用的实验研究,并探索未发现的功能。

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