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使用 AlphaFold Multimer 对细胞因子-受体-JAK2 信号复合物进行结构建模。

Structural Modeling of Cytokine-Receptor-JAK2 Signaling Complexes Using AlphaFold Multimer.

机构信息

Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, Michigan 48109, United States.

Biophysics Program, University of Michigan, Ann Arbor, Michigan 48109, United States.

出版信息

J Chem Inf Model. 2023 Sep 25;63(18):5874-5895. doi: 10.1021/acs.jcim.3c00926. Epub 2023 Sep 11.

Abstract

Homodimeric class 1 cytokine receptors include the erythropoietin (EPOR), thrombopoietin (TPOR), granulocyte colony-stimulating factor 3 (CSF3R), growth hormone (GHR), and prolactin receptors (PRLR). These cell-surface single-pass transmembrane (TM) glycoproteins regulate cell growth, proliferation, and differentiation and induce oncogenesis. An active TM signaling complex consists of a receptor homodimer, one or two ligands bound to the receptor extracellular domains, and two molecules of Janus Kinase 2 (JAK2) constitutively associated with the receptor intracellular domains. Although crystal structures of soluble extracellular domains with ligands have been obtained for all of the receptors except TPOR, little is known about the structure and dynamics of the complete TM complexes that activate the downstream JAK-STAT signaling pathway. Three-dimensional models of five human receptor complexes with cytokines and JAK2 were generated here by using AlphaFold Multimer. Given the large size of the complexes (from 3220 to 4074 residues), the modeling required a stepwise assembly from smaller parts, with selection and validation of the models through comparisons with published experimental data. The modeling of active and inactive complexes supports a general activation mechanism that involves ligand binding to a monomeric receptor followed by receptor dimerization and rotational movement of the receptor TM α-helices, causing proximity, dimerization, and activation of associated JAK2 subunits. The binding mode of two eltrombopag molecules to the TM α-helices of the active TPOR dimer was proposed. The models also help elucidate the molecular basis of oncogenic mutations that may involve a noncanonical activation route. Models equilibrated in explicit lipids of the plasma membrane are publicly available.

摘要

同源二聚体 class 1 细胞因子受体包括促红细胞生成素(EPOR)、血小板生成素(TPOR)、粒细胞集落刺激因子 3(CSF3R)、生长激素(GHR)和催乳素受体(PRLR)。这些细胞表面单次跨膜(TM)糖蛋白调节细胞生长、增殖和分化,并诱导肿瘤发生。一个活跃的 TM 信号复合物由一个受体同源二聚体、一个或两个结合在受体细胞外结构域的配体,以及两个与受体细胞内结构域连续相关的 Janus 激酶 2(JAK2)分子组成。尽管除了 TPOR 之外,所有受体的可溶性细胞外结构域与配体的晶体结构都已获得,但对于激活下游 JAK-STAT 信号通路的完整 TM 复合物的结构和动力学知之甚少。使用 AlphaFold Multimer 生成了五种带有细胞因子和 JAK2 的人受体复合物的三维模型。鉴于复合物的尺寸较大(从 3220 到 4074 个残基),建模需要逐步从较小的部分组装,并通过与已发表的实验数据进行比较来选择和验证模型。活性和非活性复合物的建模支持一个普遍的激活机制,该机制涉及配体结合单体受体,然后受体二聚化和受体 TM α-螺旋的旋转运动,导致接近、二聚化和相关 JAK2 亚基的激活。提出了两种 eltrombopag 分子与活性 TPOR 二聚体 TM α-螺旋结合的模式。这些模型还有助于阐明致癌突变的分子基础,这些突变可能涉及非典型的激活途径。在质膜的显式脂质中平衡的模型可公开获得。

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