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Analysis of tyrosine phosphorylation and phosphotyrosine-binding proteins in germinating seeds from Scots pine

机译:苏格兰松发芽种子中酪氨酸磷酸化和磷酸酪氨酸结合蛋白的分析

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Protein tyrosine phosphorylation in angiosperms has been implicated in various physiological processes, including seed development and germination. In conifers, the role of tyrosine phosphorylation and the mechanisms of its regulation are yet to be investigated. In this study, we examined the profile of protein tyrosine phosphorylation in Scots pine seeds at different stages of germination. We detected extensive protein tyrosine phosphorylation in extracts from Scots pine (Pinus sylvestris L.) dormant seeds. In addition, the pattern of tyrosine phosphorylation was found to change significantly during seed germination, especially at earlier stages of post-imbibition which coincides with the initiation of cell division, and during the period of intensive elongation of hypocotyls. To better understand the molecular mechanisms of phosphotyrosine signaling, we employed affinity purification and mass spectrometry for the identification of pTyr-binding proteins from the extracts of Scots pine seedlings. Using this approach, we purified two proteins of 10 and 43 kDa, which interacted specifically with pTyr-Sepharose and were identified by mass spectrometry as P. sylvestris defensin 1 (PsDef1) and aldose 1-epimerase (EC:5.1.3.3), respectively. Additionally, we demonstrated that both endogenous and recombinant PsDef1 specifically interact with pTyr-Sepharose, but not Tyr-beads. As the affinity purification approach did not reveal the presence of proteins with known pTyr binding domains (SH2, PTB and C2), we suggest that plants may have evolved a different mode of pTyr recognition, which yet remains to be uncovered.
机译:被子植物中的蛋白质酪氨酸磷酸化与多种生理过程有关,包括种子发育和发芽。在针叶树中,酪氨酸磷酸化的作用及其调节机制尚待研究。在这项研究中,我们检查了在不同萌发阶段的苏格兰松树种子中蛋白质酪氨酸磷酸化的概况。我们从苏格兰松树(Pinus sylvestris L.)休眠种子的提取物中检测到广泛的蛋白质酪氨酸磷酸化。另外,发现酪氨酸磷酸化的模式在种子发芽过程中发生了显着变化,尤其是在吸收后的早期阶段,这与细胞分裂的开始相吻合,并且在下胚轴的强烈伸长期间。为了更好地了解磷酸酪氨酸信号转导的分子机制,我们采用了亲和纯化和质谱技术来鉴定来自苏格兰松树幼苗提取物中的pTyr结合蛋白。使用这种方法,我们纯化了10和43 kDa的两种蛋白质,它们与pTyr-Sepharose特异性相互作用,并通过质谱鉴定为樟脑防御素1(PsDef1)和醛糖1-表异构酶(EC:5.1.3.3)。 。此外,我们证明内源和重组PsDef1都与pTyr-Sepharose特异性相互作用,但与Tyr-beads无关。由于亲和纯化方法没有揭示具有已知pTyr结合域(SH2,PTB和C2)的蛋白质的存在,因此我们建议植物可能已经进化出不同的pTyr识别模式,但仍有待发现。

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