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布鲁顿酪氨酸激酶(BTK)脯氨酸富集结构域(PHTH)的构象异质性驱动多种调控状态。

Conformational heterogeneity of the BTK PHTH domain drives multiple regulatory states.

作者信息

Lin David Yin-Wei, Kueffer Lauren E, Juneja Puneet, Wales Thomas E, Engen John R, Andreotti Amy H

出版信息

bioRxiv. 2023 Dec 15:2023.06.02.543453. doi: 10.1101/2023.06.02.543453.

Abstract

Full-length BTK has been refractory to structural analysis. The nearest full-length structure of BTK to date consists of the autoinhibited SH3-SH2-kinase core. Precisely how the BTK N-terminal domains (the Pleckstrin homology/Tec homology (PHTH) domain and proline-rich regions (PRR) contain linker) contribute to BTK regulation remains unclear. We have produced crystals of full-length BTK for the first time but despite efforts to stabilize the autoinhibited state, the diffraction data still reveals only the SH3-SH2-kinase core with no electron density visible for the PHTH-PRR segment. CryoEM data of full-length BTK, on the other hand, provide the first view of the PHTH domain within full-length BTK. CryoEM reconstructions support conformational heterogeneity in the PHTH-PRR region wherein the globular PHTH domain adopts a range of states arrayed around the autoinhibited SH3-SH2-kinase core. On the way to activation, disassembly of the SH3-SH2-kinase core opens a new autoinhibitory site on the kinase domain for PHTH domain binding that is ultimately released upon interaction of PHTH with PIP3. Membrane-induced dimerizationactivates BTK and we present here a crystal structure of an activation loop swapped BTK kinase domain dimer that likely represents the conformational state leading to transautophosphorylation. Together, these data provide the first structural elucidation of full-length BTK and allow a deeper understanding of allosteric control over the BTK kinase domain during distinct stages of activation.

摘要

全长布鲁顿酪氨酸激酶(BTK)的结构分析一直颇具难度。迄今为止,最接近全长BTK的结构是其自身抑制性的SH3-SH2-激酶核心。BTK的N端结构域(普列克底物蛋白同源/酪氨酸激酶同源(PHTH)结构域和富含脯氨酸区域(PRR)及连接子)究竟如何对BTK发挥调控作用仍不清楚。我们首次获得了全长BTK的晶体,但尽管努力稳定其自身抑制状态,衍射数据仍仅显示出SH3-SH2-激酶核心,而PHTH-PRR片段没有可见的电子密度。另一方面,全长BTK的冷冻电镜数据首次展示了全长BTK中PHTH结构域的情况。冷冻电镜重建结果支持PHTH-PRR区域存在构象异质性,其中球状PHTH结构域呈现出一系列围绕自身抑制性SH3-SH2-激酶核心排列的状态。在激活过程中,SH3-SH2-激酶核心的解离在激酶结构域上为PHTH结构域结合开启了一个新的自身抑制位点,该位点最终在PHTH与磷脂酰肌醇-3,4,5-三磷酸(PIP3)相互作用时被释放。膜诱导二聚化激活BTK,我们在此展示了一个激活环交换的BTK激酶结构域二聚体的晶体结构,它可能代表了导致反式自磷酸化的构象状态。这些数据共同首次阐明了全长BTK的结构,并有助于更深入地理解在激活的不同阶段对BTK激酶结构域的变构调控机制。

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