失控:突变激活的 Gα 在人类癌症中的机制、调节和作用。

IF 3.2 3区 医学 Q2 PHARMACOLOGY & PHARMACY Molecular Pharmacology Pub Date : 2024-08-26 DOI:10.1124/molpharm.124.000743
Morgan B Dwyer, Jenna L Aumiller, Philip B Wedegaertner
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引用次数: 0

摘要

G 蛋白偶联受体(GPCR)与由 α 和 βγ 亚基组成的异三聚体 G 蛋白结合,将细胞外信号转化为细胞内信号通路的激活。通常情况下,GPCR 介导的激活会导致 Gα 上的 GDP 与 GTP 交换,以及 Gα-GTP 与 Gβγ 的解离,两者都能调节各种信号通路。Gα 对结合的 GTP 进行水解,使蛋白质变回 Gα-GDP,并与 Gβγ 重新结合,重新形成无活性的异源三聚体。Gα 中的谷氨酰胺和精氨酸氨基酸发生了天然突变,抑制了 GTP 的水解,从而破坏了正常的 G 蛋白循环,使这些突变体具有组成性活性。有趣的是,这些调控失调的 Gα 突变体可在许多不同的癌症中发现,因为它们能够维持异常信号传导,而无需 GPCR 的激活。这篇综述将强调,人们越来越认识到这种组成性激活 Gα 突变在癌症中的普遍性以及所激活的信号通路。此外,我们还将讨论以下方面的新知识:这些组成型活性 Gα 是如何被调控的、不同的突变在生化方面有何不同、突变激活的 Gα 与 GPCR 激活的 Gα 相比有何独特之处。最后,我们将讨论直接针对组成型活性 Gα 突变体开发抑制剂的最新进展。意义声明 G蛋白α亚基(Gα)的连续激活突变广泛存在于许多人类癌症中,并导致了癌症的发生。要想找到抑制这些突变 Gα 的失调致癌信号转导的方法,就必须更好地了解导致细胞中组成性 Gα 激活的机制以及调控突变激活的 Gα 的独特机制。在各种癌症中,Gα的激活突变非常普遍,这使得Gα蛋白成为开发治疗药物的令人瞩目的靶点。
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Going rogue: mechanisms, regulation, and roles of mutationally activated Gα in human cancer.

G protein-coupled receptors (GPCRs) couple to heterotrimeric G proteins, comprised of α and βγ subunits, to convert extracellular signals into activation of intracellular signaling pathways. Canonically, GPCR-mediated activation results in the exchange of GDP for GTP on Gα and the dissociation of Gα-GTP and Gβγ, both of which can regulate a variety of signaling pathways. Hydrolysis of bound GTP by Gα returns the protein to Gα-GDP and allows reassociation with Gβγ to re-form the inactive heterotrimer. Naturally occurring mutations in Gα have been found at conserved glutamine and arginine amino acids that disrupt the canonical G protein cycle by inhibiting GTP hydrolysis, rendering these mutants constitutively active. Interestingly, these dysregulated Gα mutants are found in many different cancers due to their ability to sustain aberrant signaling without a need for activation by GPCRs. This review will highlight an increased recognition of the prevalence of such constitutively activating Gα mutations in cancers and the signaling pathways activated. In addition, we will discuss new knowledge regarding how these constitutively active Gα are regulated, how different mutations are biochemically distinct, and how mutationally activated Gα are unique compared to GPCR-activated Gα. Lastly, we will discuss recent progress in developing inhibitors directly targeting constitutively active Gα mutants. Significance Statement Constitutively activating mutations in G protein α subunits (Gα) widely occur in and contribute to the development of many human cancers. To develop ways to inhibit dysregulated, oncogenic signaling by these mutant Gα, it is crucial to better understand mechanisms that lead to constitutive Gα activation and unique mechanisms that regulate mutationally activated Gα in cells. The prevalence of activating mutations in Gα in various cancers make Gα proteins compelling targets for the development of therapeutics.

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来源期刊
Molecular Pharmacology
Molecular Pharmacology 医学-药学
CiteScore
7.20
自引率
2.80%
发文量
50
审稿时长
3-6 weeks
期刊介绍: Molecular Pharmacology publishes findings derived from the application of innovative structural biology, biochemistry, biophysics, physiology, genetics, and molecular biology to basic pharmacological problems that provide mechanistic insights that are broadly important for the fields of pharmacology and toxicology. Relevant topics include: Molecular Signaling / Mechanism of Drug Action Chemical Biology / Drug Discovery Structure of Drug-Receptor Complex Systems Analysis of Drug Action Drug Transport / Metabolism
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