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Interacting mechanism of ID3 HLH domain towards E2A/E12 transcription factor – An Insight through molecular dynamics and docking approach

机译:ID3 HLH结构域与E2A / E12转录因子的相互作用机制–通过分子动力学和对接方法的洞察

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摘要

Inhibitor of DNA binding protein 3 (ID3) has long been characterized as an oncogene that implicates its functional role through its Helix–Loop–Helix (HLH) domain upon protein–protein interaction. An insight into the dimerization brought by this domain helps in identifying the key residues that favor the mechanism behind it. Molecular dynamics (MD) simulations were performed for the HLH proteins ID3 and Transcription factor E2-alpha (E2A/E12) and their ensemble complex (ID3-E2A/E12) to gather information about the HLH domain region and its role in the interaction process. Further evaluation of the results by Principal Component Analysis (PCA) and Free Energy Landscape (FEL) helped in revealing residues of E2A/E12: Lys570, Ala595, Val598, and Ile599 and ID3: Glu53, Gln63, and Gln66 buried in their HLH motifs imparting key roles in dimerization process. Furthermore the T-pad analysis results helped in identifying the key fluctuations and conformational transitions using the intrinsic properties of the residues present in the domain region of the proteins thus specifying their crucial role towards molecular recognition. The study provides an insight into the interacting mechanism of the ID3-E2A/E12 complex and maps the structural transitions arising in the essential conformational space indicating the key structural changes within the helical regions of the motif. It thereby describes how the internal dynamics of the proteins might regulate their intrinsic structural features and its subsequent functionality.
机译:长期以来,DNA结合蛋白3(ID3)的抑制剂一直被认为是一种癌基因,通过其蛋白质-蛋白质相互作用,通过其螺旋-环-螺旋(HLH)结构域暗示其功能性作用。对该结构域带来的二聚化的深入了解有助于确定有助于其背后机制的关键残基。对HLH蛋白ID3和转录因子E2-alpha(E2A / E12)及其集合复合物(ID3-E2A / E12)进行了分子动力学(MD)模拟,以收集有关HLH结构域区域及其在相互作用过程中的作用的信息。通过主成分分析(PCA)和自由能景观(FEL)进一步评估结果有助于揭示E2A / E12的残基:Lys570,Ala595,Val598和Ile599,以及ID3:Glu53,Gln63和Gln66埋在其HLH基序中在二聚化过程中发挥关键作用。此外,T-pad分析结果有助于利用存在于蛋白质结构域中的残基的内在特性,识别关键的波动和构象转变,从而确定其对分子识别的关键作用。这项研究提供了对ID3-E2A / E12复合体相互作用机制的见解,并绘制了在基本构象空间中出现的结构转变,表明了基序螺旋区域内的关键结构变化。因此,它描述了蛋白质的内部动力学如何调节其固有的结构特征及其后续功能。

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