Instituto de Investigación en Biomedicina de Buenos Aires (IBioBA)-CONICET-Partner Institute of the Max Planck Society, Buenos Aires C1425FQD, Argentina.
Medicinal Chemistry and Drug Discovery, Department of Pharmacology, University of Oxford, Mansfield Road, Oxford OX1 3QT, UK.
Sci Signal. 2023 Jun 13;16(789):eadd3184. doi: 10.1126/scisignal.add3184.
The activation of at least 23 different mammalian kinases requires the phosphorylation of their hydrophobic motifs by the kinase PDK1. A linker connects the phosphoinositide-binding PH domain to the catalytic domain, which contains a docking site for substrates called the PIF pocket. Here, we used a chemical biology approach to show that PDK1 existed in equilibrium between at least three distinct conformations with differing substrate specificities. The inositol polyphosphate derivative HYG8 bound to the PH domain and disrupted PDK1 dimerization by stabilizing a monomeric conformation in which the PH domain associated with the catalytic domain and the PIF pocket was accessible. In the absence of lipids, HYG8 potently inhibited the phosphorylation of Akt (also termed PKB) but did not affect the intrinsic activity of PDK1 or the phosphorylation of SGK, which requires docking to the PIF pocket. In contrast, the small-molecule valsartan bound to the PIF pocket and stabilized a second distinct monomeric conformation. Our study reveals dynamic conformations of full-length PDK1 in which the location of the linker and the PH domain relative to the catalytic domain determines the selective phosphorylation of PDK1 substrates. The study further suggests new approaches for the design of drugs to selectively modulate signaling downstream of PDK1.
至少 23 种不同的哺乳动物激酶的激活需要 PDK1 对其疏水基序进行磷酸化。一个接头将磷酸肌醇结合 PH 结构域连接到催化结构域,该结构域包含一个称为 PIF 口袋的底物结合位点。在这里,我们使用化学生物学方法表明,PDK1 至少以三种不同的构象存在,具有不同的底物特异性。肌醇多磷酸盐衍生物 HYG8 与 PH 结构域结合,并通过稳定单体构象来破坏 PDK1 二聚化,在该构象中,PH 结构域与催化结构域相关联,并且 PIF 口袋是可及的。在没有脂质的情况下,HYG8 强烈抑制 Akt(也称为 PKB)的磷酸化,但不影响 PDK1 的固有活性或 SGK 的磷酸化,后者需要与 PIF 口袋对接。相比之下,小分子缬沙坦与 PIF 口袋结合并稳定第二种独特的单体构象。我们的研究揭示了全长 PDK1 的动态构象,其中接头和 PH 结构域相对于催化结构域的位置决定了 PDK1 底物的选择性磷酸化。该研究进一步为设计选择性调节 PDK1 下游信号转导的药物提供了新的方法。