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Exploration of the Substrate Preference of Lysine Methyltransferase SMYD3 by Molecular Dynamics Simulations

机译:分子动力学模拟探索赖氨酸甲基转移酶SMYD3的底物偏好

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摘要

SMYD3, a SET and MYND domain containing lysine methyltransferase, catalyzes the transfer of the methyl group from a methyl donor onto the Nε group of a lysine residue in the substrate protein. Methylation of MAP3 kinase kinase (MAP3K2) by SMYD3 has been implicated in Ras-driven tumorigenesis. The crystal structure of SMYD3 in complex with MAP3K2 peptide reveals a shallow hydrophobic pocket (P-2), which accommodates the binding of a phenylalanine residue at the ?2 position of the substrate (F258) is a crucial determinant of substrate specificity of SMYD3. To better understand the substrate preference of SMYD3 at the ?2 position, molecular dynamics (MD) simulations and the MM/GBSA method were performed on the crystal structure of SMYD3-MAP3K2 complex (PDB: 5EX0) after substitution of F258 residue of MAP3K2 to each of the other 19 natural residues, respectively. Binding free energy calculations reveal that the P-2 pocket prefers an aromatic hydrophobic group and none of the substitutions behave better than the wild-type phenylalanine residue does. Furthermore, we investigated the structure–activity relationships (SAR) of a series of non-natural phenylalanine derivative substitutions at the ?2 position and found that quite a few modifications on the sidechain of F258 residue could strengthen its binding to the P-2 pocket of SMYD3. These explorations provide insights into developing novel SMYD3 inhibitors with high potency and high selectivity against MAP3K2 and cancer.
机译:SMYD3是一个包含赖氨酸甲基转移酶的SET和MYND结构域,可催化甲基从甲基供体到底物蛋白赖氨酸残基的Nε基团的转移。 SMYD3引起的MAP3激酶激酶(MAP3K2)的甲基化与Ras驱动的肿瘤发生有关。与MAP3K2肽复合的SMYD3的晶体结构揭示了一个浅的疏水口袋(P-2),该口袋容纳了底物λ2位上的苯丙氨酸残基的结合(F258)是SMYD3底物特异性的关键决定因素。为了更好地了解SMYD3在?2位置的底物偏好,在将MAP3K2的F258残基替换为SMYD3-MAP3K2复合物(PDB:5EX0)的晶体结构上进行了分子动力学(MD)模拟和MM / GBSA方法。每个其他19个自然残基。结合自由能的计算表明,P-2口袋更喜欢一个芳香族疏水基团,而且没有一个取代的行为比野生型苯丙氨酸残基更好。此外,我们研究了在α2位置的一系列非天然苯丙氨酸衍生物取代的结构-活性关系(SAR),发现F258残基侧链上的许多修饰可以加强其与P-2口袋的结合SMYD3。这些探索为开发新型的SMYD3抑制剂提供了深刻的见解,这些抑制剂对MAP3K2和癌症具有高效力和高选择性。

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