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Atomistic Insights into Regulatory Mechanisms of the HER2 Tyrosine Kinase Domain: A Molecular Dynamics Study

机译:HER2酪氨酸激酶域调控机制的原子学见解:分子动力学研究。

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摘要

HER2 (ErbB2/Neu) is a receptor tyrosine kinase belonging to the epidermal growth factor receptor (EGFR)/ErbB family and is overexpressed in 20–30% of human breast cancers. Although several crystal structures of ErbB kinases have been solved, the precise mechanism of HER2 activation remains unknown, and it has been suggested that HER2 is unique in its requirement for phosphorylation of Y877, a key tyrosine residue located in the activation loop. To elucidate mechanistic details of kinase domain regulation, we performed molecular dynamics simulations of a homology-modeled HER2 kinase structure in active and inactive conformations. Principal component analysis of the atomistic fluctuations reveals a tight coupling between the activation loop and catalytic loop that may contribute to alignment of residues required for catalysis in the active kinase. The free energy perturbation method is also employed to predict a role for phosphorylated Y877 in stabilizing the kinase conformations. Finally, simulation results are presented for a HER2/EGFR heterodimer and reveal that the dimeric interface induces a rearrangement of the αC helix toward the active conformation. Elucidation of the molecular regulatory mechanisms in HER2 will help establish structure-function relationships in the wild-type kinase, as well as predict mutations with a propensity for constitutive activation in HER2-mediated cancers.
机译:HER2(ErbB2 / Neu)是一种酪氨酸激酶,属于表皮生长因子受体(EGFR)/ ErbB家族,在20%至30%的人类乳腺癌中过表达。尽管已经解决了ErbB激酶的几种晶体结构,但是HER2激活的确切机制仍然未知,并且已经表明HER2在其对Y877磷酸化的要求方面是独特的,Y877是位于激活环中的关键酪氨酸残基。为了阐明激酶结构域调节的机械细节,我们在活性和非活性构象中进行了同源模型化的HER2激酶结构的分子动力学模拟。原子波动的主成分分析表明,活化环和催化环之间存在紧密的偶联,这可能有助于对齐活性激酶中催化所需的残基。自由能摄动法还用于预测磷酸化的Y877在稳定激酶构象中的作用。最后,给出了HER2 / EGFR异二聚体的模拟结果,并揭示了二聚体界面诱导了αC螺旋向活性构象的重排。阐明HER2中的分子调节机制将有助于在野生型激酶中建立结构-功能关系,并预测在HER2介导的癌症中具有组成性激活倾向的突变。

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