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Heterodimerization and Endocytosis of Arabidopsis Brassinosteroid Receptors BRI1 and AtSERK3 (BAK1)

机译:拟南芥油菜素类固醇受体BRI1和AtSERK3(BAK1)的异源二聚化和内吞作用

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摘要

In Arabidopsis thaliana brassinosteroid (BR), perception is mediated by two Leu-rich repeat receptor-like kinases, BRASSINOSTEROID INSENSITIVE1 (BRI1) and BRI1-ASSOCIATED RECEPTOR KINASE1 (BAK1) (Arabidopsis SOMATIC EMBRYOGENESIS RECEPTOR-like KINASE3 [AtSERK3]). Genetic, biochemical, and yeast (Saccharomyces cerevisiae) interaction studies suggested that the BRI1-BAK1 receptor complex initiates BR signaling, but the role of the BAK1 receptor is still not clear. Using transient expression in protoplasts of BRI1 and AtSERK3 fused to cyan and yellow fluorescent green fluorescent protein variants allowed us to localize each receptor independently in vivo. We show that BRI1, but not AtSERK3, homodimerizes in the plasma membrane, whereas BRI1 and AtSERK3 preferentially heterodimerize in the endosomes. Coexpression of BRI1 and AtSERK3 results in a change of the steady state distribution of both receptors because of accelerated endocytosis. Endocytic vesicles contain either BRI1 or AtSERK3 alone or both. We propose that the AtSERK3 protein is involved in changing the equilibrium between plasma membrane–located BRI1 homodimers and endocytosed BRI1-AtSERK3 heterodimers.
机译:在拟南芥芸苔素类固醇(BR)中,知觉是由两个富含亮氨酸的重复受体样激酶介导的,它们是BRASSINOSTEROID INSENSITIVE1(BRI1)和BRI1相关受体激酶1(BAK1)(Arabidopsis SOMATIC EMBRYOGENESIS RECEPTOR-like KINASE3)。遗传,生化和酵母(Saccharomyces cerevisiae)相互作用研究表明,BRI1-BAK1受体复合物可引发BR信号传导,但BAK1受体的作用仍不清楚。使用BRI1和AtSERK3原生质体中与青色和黄色荧光绿色荧光蛋白变体融合的瞬时表达,使我们能够在体内独立定位每个受体。我们显示,BRI1,而不是AtSERK3,在质膜中均二聚,而BRI1和AtSERK3优先在内体中异二聚。由于加速的内吞作用,BRI1和AtSERK3的共表达导致两种受体的稳态分布发生变化。内吞囊泡仅包含BRI1或AtSERK3或两者都包含。我们建议AtSERK3蛋白参与改变质膜定位的BRI1同二聚体和内吞的BRI1-AtSERK3异二聚体之间的平衡。

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