首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The integral membrane S-locus receptor kinase of Brassica has serine/threonine kinase activity in a membranous environment and spontaneously forms oligomers in planta
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The integral membrane S-locus receptor kinase of Brassica has serine/threonine kinase activity in a membranous environment and spontaneously forms oligomers in planta

机译:甘蓝型油菜的完整膜S-位点受体激酶在膜环境中具有丝氨酸/苏氨酸激酶活性并在植物中自发形成寡聚体

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摘要

To gain further insight into the mode of action of S-locus receptor kinase (SRK), a receptor-like kinase involved in the self-incompatibility response in Brassica, different recombinant SRK proteins have been expressed in a membranous environment using the insect cell/baculovirus system. Recombinant SRK proteins exhibited properties close to those of the endogenous stigmatic SRK protein and were found to autophosphorylate on serine and threonine residues in insect cell microsomes. Autophosphorylation was constitutive because it did not require the presence of pollen or stigma extracts in the phosphorylation buffer. Phosphorylation was shown to occur in trans, suggesting the existence of constitutive homooligomers of membrane-anchored recombinant SRK. To investigate the physiological relevance of these results, we have examined the oligomeric status of SRK in planta in cross-linking experiments and by velocity sedimentation on sucrose gradients. Our data strongly suggest that SRK is associated both with other SRK molecules and other stigma proteins in nonpollinated flowers. These findings may have important implications for our understanding of self-pollen signaling.
机译:为了进一步了解S-基因座受体激酶(SRK)的作用方式,SRK是参与芸苔属植物自身不相容性反应的一种受体样激酶,已经在膜环境中使用昆虫细胞/细胞表达了不同的重组SRK蛋白。杆状病毒系统。重组SRK蛋白表现出与内源性Stigmatic SRK蛋白相近的特性,并在昆虫细胞微粒体中的丝氨酸和苏氨酸残基上自磷酸化。自磷酸化是组成型的,因为它不需要在磷酸化缓冲液中存在花粉或柱头提取物。磷酸化显示为反式发生,表明存在膜锚定的重组SRK的组成型均聚物。为了研究这些结果的生理相关性,我们在交联实验中和通过蔗糖梯度上的速度沉降研究了植物中SRK的低聚状态。我们的数据强烈表明SRK与非授粉花中的其他SRK分子和其他柱头蛋白都相关。这些发现可能对我们对自花粉信号传导的理解具有重要意义。

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