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Quantitative Phosphoproteomic Analysis Reveals Shared and Specific Targets of Arabidopsis Mitogen-Activated Protein Kinases (MAPKs) MPK3 MPK4 and MPK6

机译:定量蛋白质组学分析揭示了拟南芥丝裂原活化蛋白激酶(MAPK)MPK3MPK4和MPK6的共享和特定目标

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摘要

In Arabidopsis, mitogen-activated protein kinases MPK3, MPK4, and MPK6 constitute essential relays for a variety of functions including cell division, development and innate immunity. Although some substrates of MPK3, MPK4 and MPK6 have been identified, the picture is still far from complete. To identify substrates of these MAPKs likely involved in cell division, growth and development we compared the phosphoproteomes of wild-type and mpk3, mpk4, and mpk6. To study the function of these MAPKs in innate immunity, we analyzed their phosphoproteomes following microbe-associated molecular pattern (MAMP) treatment. Partially overlapping substrates were retrieved for all three MAPKs, showing target specificity to one, two or all three MAPKs in different biological processes. More precisely, our results illustrate the fact that the entity to be defined as a specific or a shared substrate for MAPKs is not a phosphoprotein but a particular (S/T)P phosphorylation site in a given protein. One hundred fifty-two peptides were identified to be differentially phosphorylated in response to MAMP treatment and/or when compared between genotypes and 70 of them could be classified as putative MAPK targets. Biochemical analysis of a number of putative MAPK substrates by phosphorylation and interaction assays confirmed the global phosphoproteome approach. Our study also expands the set of MAPK substrates to involve other protein kinases, including calcium-dependent (CDPK) and sugar nonfermenting (SnRK) protein kinases.
机译:在拟南芥中,有丝分裂原激活的蛋白激酶MPK3,MPK4和MPK6构成了包括细胞分裂,发育和先天免疫在内的多种功能的重要继电器。尽管已识别出MPK3,MPK4和MPK6的某些底物,但图像仍然远远不够完整。为了鉴定这些可能参与细胞分裂,生长和发育的MAPK的底物,我们比较了野生型和mpk3,mpk4和mpk6的磷酸化蛋白质组。为了研究这些MAPK在先天免疫中的功能,我们在进行了微生物相关分子模式(MAMP)处理后分析了它们的磷酸化蛋白质组。检索了所有三种MAPK的部分重叠的底物,显示了在不同生物学过程中对一种,两种或所有三种MAPK的靶标特异性。更准确地说,我们的结果说明了一个事实,即被定义为MAPK的特定或共享底物的实体不是磷蛋白,而是给定蛋白中的特定(S / T)P磷酸化位点。一百五十二个肽被鉴定为响应于MAMP处理而被差异磷酸化和/或在基因型之间进行比较时,其中70个可以归类为假定的MAPK靶标。通过磷酸化和相互作用分析对许多推定的MAPK底物进行生化分析证实了整体磷酸化蛋白质组学方法。我们的研究还扩展了MAPK底物的范围,使其涉及其他蛋白激酶,包括钙依赖性(CDPK)和糖不发酵(SnRK)蛋白激酶。

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