BRI1/BAK1受体激酶复合体的顺序转磷酸化影响油菜素类固醇信号传导的早期事件。

Sequential transphosphorylation of the BRI1/BAK1 receptor kinase complex impacts early events in brassinosteroid signaling.

作者信息

Wang Xiaofeng, Kota Uma, He Kai, Blackburn Kevin, Li Jia, Goshe Michael B, Huber Steven C, Clouse Steven D

机构信息

Department of Horticultural Science, North Carolina State University, Raleigh, NC 27695, USA.

出版信息

Dev Cell. 2008 Aug;15(2):220-35. doi: 10.1016/j.devcel.2008.06.011.

Abstract

Brassinosteroids (BRs) regulate plant development through a signal transduction pathway involving the BRI1 and BAK1 transmembrane receptor kinases. The detailed molecular mechanisms of phosphorylation, kinase activation, and oligomerization of the BRI1/BAK1 complex in response to BRs are uncertain. We demonstrate that BR-dependent activation of BRI1 precedes association with BAK1 in planta, and that BRI1 positively regulates BAK1 phosphorylation levels in vivo. BRI1 transphosphorylates BAK1 in vitro on specific kinase-domain residues critical for BAK1 function. BAK1 also transphosphorylates BRI1, thereby quantitatively increasing BRI1 kinase activity toward a specific substrate. We propose a sequential transphosphorylation model in which BRI1 controls signaling specificity by direct BR binding followed by substrate phosphorylation. The coreceptor BAK1 is then activated by BRI1-dependent transphosphorylation and subsequently enhances signaling output through reciprocal BRI1 transphosphorylation. This model suggests both conservation and distinct differences between the molecular mechanisms regulating phosphorylation-dependent kinase activation in plant and animal receptor kinases.

摘要

油菜素甾醇(BRs)通过一条涉及BRI1和BAK1跨膜受体激酶的信号转导途径来调控植物发育。BRI1/BAK1复合体响应BRs时发生磷酸化、激酶激活和寡聚化的详细分子机制尚不清楚。我们证明,在植物体内,BR依赖的BRI1激活先于其与BAK1的结合,并且BRI1在体内正向调节BAK1的磷酸化水平。BRI1在体外对BAK1功能至关重要的特定激酶结构域残基上进行反式磷酸化。BAK1也对BRI1进行反式磷酸化,从而定量增加BRI1对特定底物的激酶活性。我们提出了一个顺序反式磷酸化模型,其中BRI1通过直接结合BR然后进行底物磷酸化来控制信号特异性。共受体BAK1随后通过BRI1依赖的反式磷酸化被激活,并随后通过相互的BRI1反式磷酸化增强信号输出。该模型表明,在调节植物和动物受体激酶中磷酸化依赖性激酶激活的分子机制之间,既有保守性又有明显差异。

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