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Inositol pentakisphosphate isomers bind PH domains with varying specificity and inhibit phosphoinositide interactions

机译:肌醇五磷酸酯异构体以不同的特异性结合PH结构域并抑制磷酸肌醇相互作用

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Background PH domains represent one of the most common domains in the human proteome. These domains are recognized as important mediators of protein-phosphoinositide and protein-protein interactions. Phosphoinositides are lipid components of the membrane that function as signaling molecules by targeting proteins to their sites of action. Phosphoinositide based signaling pathways govern a diverse range of important cellular processes including membrane remodeling, differentiation, proliferation and survival. Myo-Inositol phosphates are soluble signaling molecules that are structurally similar to the head groups of phosphoinositides. These molecules have been proposed to function, at least in part, by regulating PH domain-phosphoinositide interactions. Given the structural similarity of inositol phosphates we were interested in examining the specificity of PH domains towards the family of myo-inositol pentakisphosphate isomers. Results In work reported here we demonstrate that the C-terminal PH domain of pleckstrin possesses the specificity required to discriminate between different myo-inositol pentakisphosphate isomers. The structural basis for this specificity was determined using high-resolution crystal structures. Moreover, we show that while the PH domain of Grp1 does not possess this high degree of specificity, the PH domain of protein kinase B does. Conclusions These results demonstrate that some PH domains possess enough specificity to discriminate between myo-inositol pentakisphosphate isomers allowing for these molecules to differentially regulate interactions with phosphoinositides. Furthermore, this work contributes to the growing body of evidence supporting myo-inositol phosphates as regulators of important PH domain-phosphoinositide interactions. Finally, in addition to expanding our knowledge of cellular signaling, these results provide a basis for developing tools to probe biological pathways.
机译:背景PH结构域代表人类蛋白质组中最常见的结构域之一。这些结构域被认为是蛋白质-磷酸肌醇和蛋白质-蛋白质相互作用的重要介体。磷酸肌醇是膜的脂质成分,通过将蛋白质靶向其作用位点而充当信号分子。基于磷酸肌醇的信号传导途径控制着各种重要的细胞过程,包括膜重塑,分化,增殖和存活。肌醇磷酸酯是可溶性信号分子,其结构与磷酸肌醇的头基相似。已经提出这些分子至少部分地通过调节PH结构域-磷酸肌醇的相互作用起作用。鉴于肌醇磷酸酯的结构相似性,我们感兴趣的是研究PH结构域对肌醇五磷酸酯异构体家族的特异性。结果在本文报道的工作中,我们证明了pleckstrin的C端PH结构域具有区分不同的肌醇五磷酸酯异构体所需的特异性。使用高分辨率晶体结构确定了这种特异性的结构基础。此外,我们表明,尽管Grp1的PH结构域不具有这种高度的特异性,但蛋白激酶B的PH结构域却具有。结论这些结果表明,某些PH结构域具有足够的特异性,可区分肌醇五磷酸五烷基酯异构体,从而使这些分子能够差异性地调节与磷酸肌醇的相互作用。此外,这项工作为支持肌醇磷酸酯作为重要PH结构域-磷酸肌醇相互作用的调节剂的证据越来越多做出了贡献。最后,除了扩展我们对细胞信号转导的知识外,这些结果还为开发探查生物学途径的工具提供了基础。

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