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GCR1 Can Act Independently of Heterotrimeric G-Protein in Response to Brassinosteroids and Gibberellins in Arabidopsis Seed Germination1[w]

机译:GCR1可以独立于异源三聚体G蛋白对拟南芥种子萌发中的油菜素类固醇和赤霉素的反应1 [w]

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摘要

Signal recognition by seven-transmembrane (7TM) cell-surface receptors is typically coupled by heterotrimeric G-proteins to downstream effectors in metazoan, fungal, and amoeboid cells. Some responses perceived by 7TM receptors in amoeboid cells and possibly in human cells can initiate downstream action independently of heterotrimeric G-proteins. Plants use heterotrimeric G-protein signaling in the regulation of growth and development, particularly in hormonal control of seed germination, but it is not yet clear which of these responses utilize a 7TM receptor. Arabidopsis GCR1 has a predicted 7TM-spanning domain and other features characteristic of 7TM receptors. Loss-of-function gcr1 mutants indicate that GCR1 plays a positive role in gibberellin- (GA) and brassinosteroid- (BR) regulated seed germination. The null mutants of GCR1 are less sensitive to GA and BR in seed germination. This phenotype is similar to that previously observed for transcript null mutants in the Gα-subunit, gpa1. However, the reduced sensitivities toward GA and BR in the single gcr1, gpa1, and agb1 (heterotrimeric G-protein β-subunit) mutants are additive or synergistic in the double and triple mutants. Thus, GCR1, unlike a typical 7TM receptor, apparently acts independently of the heterotrimeric G-protein in at least some aspects of seed germination, suggesting that this alternative mode of 7TM receptor action also functions in the plant kingdom.
机译:七跨膜(7TM)细胞表面受体的信号识别通常通过异源三聚体G蛋白偶联至后生,真菌和变形虫细胞中的下游效应子。变形虫细胞甚至人类细胞中7TM受体感知的某些反应可以独立于异源三聚体G蛋白而启动下游作用。植物使用异源三聚体G蛋白信号传导调节生长和发育,特别是在激素控制种子萌发中,但是尚不清楚这些响应中的哪一种利用7TM受体。拟南芥GCR1具有预计的7TM跨域和7TM受体的其他特征。功能丧失的gcr1突变体表明GCR1在赤霉素(GA)和油菜素甾体(BR)调节的种子萌发中起积极作用。 GCR1的无效突变体在种子萌发中对GA和BR的敏感性较低。此表型类似于先前在Gα亚基gpa1中的转录无效突变体中观察到的表型。但是,在单个gcr1,gpa1和agb1(异源三聚体G蛋白β亚基)突变体中,对GA和BR的敏感性降低,在双突变体和三突变体中是累加或协同的。因此,与典型的7TM受体不同,GCR1显然在种子萌发的至少某些方面独立于异源三聚体G蛋白起作用,表明该7TM受体作用的这种替代模式在植物界中也起作用。

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