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罂粟中自交不亲和反应诱导26-kD花粉蛋白磷酸化增加。

Increased Phosphorylation of a 26-kD Pollen Protein Is Induced by the Self-Incompatibility Response in Papaver rhoeas.

作者信息

Rudd J. J., Franklin FCH., Lord J. M., Franklin-Tong V. E.

机构信息

Wolfson Laboratory for Plant Molecular Biology, School of Biological Sciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT United Kingdom.

出版信息

Plant Cell. 1996 Apr;8(4):713-724. doi: 10.1105/tpc.8.4.713.

Abstract

We have investigated whether specific protein phosphorylation events are induced in Papaver rhoeas pollen as a consequence of the self-incompatibility (SI) response. Pollen grown in vitro in the presence of 32P-orthophosphate was challenged with biologically active recombinant S proteins, and pollen proteins were extracted and analyzed. The results provide strong evidence that the increased phosphorylation of a 26-kD protein of pl 6.2, p26, is specifically induced by the SI response. This phosphorylation event occurs in living pollen tubes and was observed specifically when pollen was challenged with S proteins that are incompatible with the S alleles carried by the pollen and not when pollen was challenged with compatible or incompatible heat-denatured S proteins. Further characterization demonstrated that p26 comprises two phosphoproteins, p26.1 and p26.2, that are found in soluble and microsomal fractions, respectively. Increased phosphorylation of p26.1 is implicated in the SI response and appears to be Ca2+ and calmodulin dependent. These data argue for the involvement of a Ca2+-dependent protein kinase requiring calmodulin-like domains, whose activation comprises an intracellular signal mediating the SI response in P. rhoeas pollen.

摘要

我们研究了罂粟花粉中的特定蛋白质磷酸化事件是否是自交不亲和(SI)反应的结果。在含有32P-正磷酸盐的条件下体外培养的花粉,用具有生物活性的重组S蛋白进行刺激,然后提取并分析花粉蛋白。结果提供了有力证据,表明SI反应特异性地诱导了一种分子量为26kD、等电点为6.2的蛋白质(p26)磷酸化增加。这种磷酸化事件发生在活的花粉管中,并且具体观察到,当花粉用与花粉所携带的S等位基因不亲和的S蛋白刺激时会发生,而当花粉用亲和或不亲和的热变性S蛋白刺激时则不会发生。进一步的表征表明,p26由两种磷蛋白组成,即p26.1和p26.2,它们分别存在于可溶性组分和微粒体组分中。p26.1的磷酸化增加与SI反应有关,并且似乎依赖于Ca2+和钙调蛋白。这些数据表明,存在一种依赖于Ca2+的蛋白激酶,它需要类钙调蛋白结构域,其激活构成了介导罂粟花粉中SI反应的细胞内信号。

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