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异源三聚体G蛋白γ亚基在拟南芥Gβγ二聚体信号传导中提供功能选择性。

Heterotrimeric G protein gamma subunits provide functional selectivity in Gbetagamma dimer signaling in Arabidopsis.

作者信息

Trusov Yuri, Rookes James Edward, Tilbrook Kimberley, Chakravorty David, Mason Michael Glenn, Anderson David, Chen Jin-Gui, Jones Alan M, Botella José Ramón

机构信息

Plant Genetic Engineering Laboratory, Department of Botany, School of Integrative Biology, University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Plant Cell. 2007 Apr;19(4):1235-50. doi: 10.1105/tpc.107.050096. Epub 2007 Apr 27.

Abstract

The Arabidopsis thaliana heterotrimeric G protein complex is encoded by single canonical Galpha and Gbeta subunit genes and two Ggamma subunit genes (AGG1 and AGG2), raising the possibility that the two potential G protein complexes mediate different cellular processes. Mutants with reduced expression of one or both Ggamma genes revealed specialized roles for each Ggamma subunit. AGG1-deficient mutants, but not AGG2-deficient mutants, showed impaired resistance against necrotrophic pathogens, reduced induction of the plant defensin gene PDF1.2, and decreased sensitivity to methyl jasmonate. By contrast, both AGG1- and AGG2-deficient mutants were hypersensitive to auxin-mediated induction of lateral roots, suggesting that Gbetagamma1 and Gbetagamma2 synergistically inhibit auxin-dependent lateral root initiation. However, the involvement of each Ggamma subunit in this root response differs, with Gbetagamma1 acting within the central cylinder, attenuating acropetally transported auxin signaling, while Gbetagamma2 affects the action of basipetal auxin and graviresponsiveness within the epidermis and/or cortex. This selectivity also operates in the hypocotyl. Selectivity in Gbetagamma signaling was also found in other known AGB1-mediated pathways. agg1 mutants were hypersensitive to glucose and the osmotic agent mannitol during seed germination, while agg2 mutants were only affected by glucose. We show that both Ggamma subunits form functional Gbetagamma dimers and that each provides functional selectivity to the plant heterotrimeric G proteins, revealing a mechanism underlying the complexity of G protein-mediated signaling in plants.

摘要

拟南芥异源三聚体G蛋白复合体由单个典型的Gα和Gβ亚基基因以及两个Gγ亚基基因(AGG1和AGG2)编码,这增加了两种潜在的G蛋白复合体介导不同细胞过程的可能性。一个或两个Gγ基因表达降低的突变体揭示了每个Gγ亚基的特殊作用。AGG1缺陷型突变体,但不是AGG2缺陷型突变体,对坏死性病原菌的抗性受损,植物防御素基因PDF1.2的诱导减少,对茉莉酸甲酯的敏感性降低。相比之下,AGG1和AGG2缺陷型突变体对生长素介导的侧根诱导都高度敏感,这表明Gβγ1和Gβγ2协同抑制生长素依赖性侧根起始。然而,每个Gγ亚基在这种根反应中的参与情况不同,Gβγ1在中柱内起作用,减弱向顶运输的生长素信号,而Gβγ2影响向基生长素的作用以及表皮和/或皮层内的重力响应。这种选择性也在胚轴中起作用。在其他已知的AGB1介导的途径中也发现了Gβγ信号传导的选择性。agg1突变体在种子萌发期间对葡萄糖和渗透剂甘露醇高度敏感,而agg2突变体仅受葡萄糖影响。我们表明,两个Gγ亚基都形成功能性的Gβγ二聚体,并且每个亚基都为植物异源三聚体G蛋白提供功能选择性,揭示了植物中G蛋白介导的信号传导复杂性的潜在机制。

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