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植物异三聚体 GTP 结合蛋白的核苷酸交换依赖性和核苷酸交换非依赖性功能。

Nucleotide exchange-dependent and nucleotide exchange-independent functions of plant heterotrimeric GTP-binding proteins.

机构信息

Plant Genetic Engineering Laboratory, School of Agriculture and Food Sciences, University of Queensland, Brisbane, QLD 4072, Australia.

Department of Biology, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Sci Signal. 2019 Nov 5;12(606):eaav9526. doi: 10.1126/scisignal.aav9526.

Abstract

Heterotrimeric guanine nucleotide-binding proteins (G proteins), which are composed of α, β, and γ subunits, are versatile, guanine nucleotide-dependent, molecular on-off switches. In animals and fungi, the exchange of GDP for GTP on Gα controls G protein activation and is crucial for normal cellular responses to diverse extracellular signals. The model plant has a single canonical Gα subunit, AtGPA1. We found that, in planta, the constitutively active, GTP-bound AtGPA1(Q222L) mutant and the nucleotide-free AtGPA1(S52C) mutant interacted with Gβγ1 and Gβγ2 dimers with similar affinities, suggesting that G protein heterotrimer formation occurred independently of nucleotide exchange. In contrast, AtGPA1(Q222L) had a greater affinity than that of AtGPA1(S52C) for Gβγ3, suggesting that the GTP-bound conformation of AtGPA1(Q222L) is distinct and tightly associated with Gβγ3. Functional analysis of transgenic lines expressing either AtGPA1(S52C) or AtGPA1(Q222L) in the -null mutant background revealed various mutant phenotypes that were complemented by either AtGPA1(S52C) or AtGPA1(Q222L). We conclude that, in addition to the canonical GDP-GTP exchange-dependent mechanism, plant G proteins can function independently of nucleotide exchange.

摘要

三聚体鸟嘌呤核苷酸结合蛋白(G 蛋白)由α、β和γ亚基组成,是一种多功能的、依赖鸟嘌呤核苷酸的分子开/关开关。在动物和真菌中,Gα上 GDP 与 GTP 的交换控制着 G 蛋白的激活,对于细胞对各种细胞外信号的正常反应至关重要。模式植物 只有一个单一的经典 Gα亚基,AtGPA1。我们发现,在植物体内,组成型激活的、结合 GTP 的 AtGPA1(Q222L)突变体和无核苷酸的 AtGPA1(S52C)突变体与 Gβγ1 和 Gβγ2 二聚体以相似的亲和力相互作用,这表明 G 蛋白异三聚体的形成独立于核苷酸交换。相比之下,AtGPA1(Q222L)与 Gβγ3 的亲和力大于 AtGPA1(S52C),这表明 AtGPA1(Q222L)的 GTP 结合构象是独特的,并且与 Gβγ3 紧密相关。在 -null 突变体背景下表达 AtGPA1(S52C)或 AtGPA1(Q222L)的转基因系的功能分析显示,各种突变表型都可以被 AtGPA1(S52C)或 AtGPA1(Q222L)互补。我们得出结论,除了经典的 GDP-GTP 交换依赖机制外,植物 G 蛋白还可以独立于核苷酸交换发挥作用。

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