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Rational design of an orthogonal noncovalent interaction system at the MUPP1 PDZ11 complex interface with CaMKIIa-derived peptides in human fertilization

机译:MUPP1 PDZ11复合体与CaMKIIa衍生肽在人受精中的正交非共价相互作用系统的合理设计

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摘要

The recognition and association between the Ca2+/calmodulin-activated protein kinase II-a (CaMKIIa) and the multi-PDZ domain protein 1 (MUPP1) plays an important role in the sperm acrosome reaction and human fertilization. Previously, we have demonstrated that the MUPP1 PDZ11 domain is the primary binding partner of the CaMKIIa C-terminal tail, which can be targeted by a rationally designed sia peptide with nanomolar affinity. Here, we further introduced an orthogonal noncovalent interaction (ONI) system between a native hydrogen bond and a designed halogen bond across the complex interface of the PDZ11 domain with the sia [Asn-1Phe] peptide mutant, where the halogen bond was formed by substituting the o-hydrogen atom of the benzene ring of the peptide Phe-1 residue with a halogen atom (F, Cl, Br or I). Molecular dynamics simulations and high-level theoretical calculations suggested that bromine (Br) is a good compromise between the halogen-bonding strength and steric hindrance effect due to introduction of a bulkier halogen atom into the tightly packed complex interface. Fluorescence spectroscopy assays revealed that the resulting o-Br- substituted peptide (K_d = 18 nM) exhibited an B7.6-fold affinity increase relative to its native counterpart (K_d = 137 nM). In contrast, the p-Br-substituted peptide, a negative control that is unable to establish the ONI according to structure-based analysis, has decreased affinity (K_d = 210 nM) upon halogenation.
机译:Ca2 + /钙调蛋白激活的蛋白激酶II-a(CaMKIIa)与多PDZ域蛋白1(MUPP1)之间的识别和关联在精子顶体反应和人类受精中起重要作用。以前,我们已经证明MUPP1 PDZ11域是CaMKIIa C末端尾巴的主要结合配偶体,可以通过合理设计的具有纳摩尔摩尔亲和力的sia肽作为靶向。在这里,我们进一步介绍了PDZ11结构域与sia [Asn-1Phe]肽突变体的复杂界面之间的天然氢键和设计的卤素键之间的正交非共价相互作用(ONI)系统,其中的卤素键是通过取代形成的肽Phe-1残基的苯环的邻氢原子带有卤素原子(F,Cl,Br或I)。分子动力学模拟和高级理论计算表明,由于将大量的卤原子引入紧密堆积的复杂界面,因此溴(Br)是卤素键强度和位阻效应之间的良好折衷。荧光光谱分析显示,相对于其天然对应物(K_d = 137 nM),所得的o-Br-取代的肽(K_d = 18 nM)显示出B7.6倍的亲和力增加。相反,p-Br取代的肽(根据结构分析无法建立ONI的阴性对照)在卤化后亲和力降低(K_d = 210 nM)。

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  • 来源
    《Molecular BioSystems》 |2017年第10期|2145-2151|共7页
  • 作者

    Yi-Le Zhang; Zhao-Feng Han;

  • 作者单位

    Reproductive Medical Center, the First Affiliated Hospital of Zhengzhou University,Zhengzhou 450052, China;

    Department of Burn and Reconstruction Surgery, the First Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, China;

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