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探究 PI4KIIIα/TTC7/FAM126 复合物的结构、动态和抑制作用。

Probing the Architecture, Dynamics, and Inhibition of the PI4KIIIα/TTC7/FAM126 Complex.

机构信息

Department of Biochemistry and Microbiology, University of Victoria, Victoria, British Columbia, Canada V8W 2Y2.

Department of Biochemistry and Molecular Biology, The University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.

出版信息

J Mol Biol. 2018 Sep 14;430(18 Pt B):3129-3142. doi: 10.1016/j.jmb.2018.07.020. Epub 2018 Jul 18.

Abstract

Phosphatidylinositol 4-kinase IIIα (PI4KIIIα) is the lipid kinase primarily responsible for generating the lipid phosphatidylinositol 4-phosphate (PI4P) at the plasma membrane, which acts as the substrate for generation of the signaling lipids PIP and PIP. PI4KIIIα forms a large heterotrimeric complex with two regulatory partners, TTC7 and FAM126. We describe using an integrated electron microscopy and hydrogen-deuterium exchange mass spectrometry (HDX-MS) approach to probe the architecture and dynamics of the complex of PI4KIIIα/TTC7/FAM126. HDX-MS reveals that the majority of the PI4KIIIα sequence was protected from exchange in short deuterium pulse experiments, suggesting presence of secondary structure, even in putative unstructured regions. Negative stain electron microscopy reveals the shape and architecture of the full-length complex, revealing an overall dimer of PI4KIIIα/TTC7/FAM126 trimers. HDX-MS reveals conformational changes in the TTC7/FAM126 complex upon binding PI4KIIIα, including both at the direct TTC7-PI4KIIIα interface and at the putative membrane binding surface. Finally, HDX-MS experiments of PI4KIIIα bound to the highly potent and selective inhibitor GSK-A1 compared to that bound to the non-specific inhibitor PIK93 revealed substantial conformational changes throughout an extended region of the kinase domain. Many of these changes were distant from the putative inhibitor binding site, showing a large degree of allosteric conformational changes that occur upon inhibitor binding. Overall, our results reveal novel insight into the regulation of PI4KIIIα by its regulatory proteins TTC7/FAM126, as well as additional dynamic information on how selective inhibition of PI4KIIIα is achieved.

摘要

磷脂酰肌醇 4-激酶 IIIα(PI4KIIIα)是主要负责在质膜上生成脂质磷脂酰肌醇 4-磷酸(PI4P)的脂质激酶,PI4P 可作为生成信号脂质 PIP 和 PIP 的底物。PI4KIIIα 与两个调节伙伴 TTC7 和 FAM126 形成一个大型异源三聚体复合物。我们描述了使用电子显微镜和氘-氢交换质谱(HDX-MS)方法来探测 PI4KIIIα/TTC7/FAM126 复合物的结构和动态。HDX-MS 表明,在短氘脉冲实验中,PI4KIIIα 序列的大部分都受到保护,免受交换,这表明即使在假定的无规卷曲区域也存在二级结构。负染电子显微镜揭示了全长复合物的形状和结构,显示出 PI4KIIIα/TTC7/FAM126 三聚体的整体二聚体。HDX-MS 揭示了 TTC7/FAM126 复合物在结合 PI4KIIIα 时的构象变化,包括在直接的 TTC7-PI4KIIIα 界面和假定的膜结合表面上。最后,与结合非特异性抑制剂 PIK93 相比,HDX-MS 实验表明,PI4KIIIα 结合高度有效和选择性抑制剂 GSK-A1 会导致激酶结构域中一个扩展区域发生实质性构象变化。这些变化中的许多都远离假定的抑制剂结合位点,表明在抑制剂结合时发生了很大程度的变构构象变化。总体而言,我们的结果揭示了 PI4KIIIα 与其调节蛋白 TTC7/FAM126 的调节的新见解,以及关于如何实现 PI4KIIIα 选择性抑制的更多动态信息。

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