Department of Physics, Center for Biological Physics, Arizona State University Tempe, Arizona, USA.
Proteins. 2012 May;80(5):1393-408. doi: 10.1002/prot.24034. Epub 2012 Feb 24.
Protein interacting with C kinase (PICK1) is well conserved throughout evolution and plays a critical role in synaptic plasticity by regulating the trafficking and posttranslational modification of its interacting proteins. PICK1 contains a single PSD95/DlgA/Zo-1 (PDZ) protein-protein interaction domain, which is promiscuous and shown to interact with over 60 proteins, most of which play roles in neuronal function. Several reports have suggested the role of PICK1 in disorders such as epilepsy, pain, brain trauma and stroke, drug abuse and dependence, schizophrenia and psychosis. Importantly, lead compounds that block PICK1 interactions are also now becoming available. Here, a new modeling approach was developed to investigate binding affinities of PDZ interactions. Using these methods, the binding affinities of all major PICK1 interacting proteins are reported and the effects of PICK1 mutations on these interactions are described. These modeling methods have important implications in defining the binding properties of proteins interacting with PICK1 as well as the general structural requirements of PDZ interactions. The study also provides modeling methods to support in the drug design of ligands for PDZ domains, which may further aid in development of the family of PDZ domains as a drug target.
蛋白相互作用激酶(PICK1)在进化过程中高度保守,通过调节其相互作用蛋白的运输和翻译后修饰,在突触可塑性中发挥关键作用。PICK1 含有一个单一的 PSD95/DlgA/Zo-1(PDZ)蛋白-蛋白相互作用域,该域具有混杂性,并被证明与超过 60 种蛋白相互作用,其中大多数在神经元功能中发挥作用。有几项报道表明 PICK1 在癫痫、疼痛、脑创伤和中风、药物滥用和依赖、精神分裂症和精神病等疾病中的作用。重要的是,现在也有了能够阻断 PICK1 相互作用的先导化合物。在这里,开发了一种新的建模方法来研究 PDZ 相互作用的结合亲和力。使用这些方法,报告了所有主要的 PICK1 相互作用蛋白的结合亲和力,并描述了 PICK1 突变对这些相互作用的影响。这些建模方法对于定义与 PICK1 相互作用的蛋白的结合特性以及 PDZ 相互作用的一般结构要求具有重要意义。该研究还提供了用于 PDZ 结构域配体药物设计的建模方法,这可能有助于将 PDZ 结构域家族作为药物靶点进一步发展。