Kim Daewon, Jorge Gabriel Lemes, Xu Chunhui, Su Lingtao, Cho Sung-Hwan, Ahsan Nagib, Chen Dongqin, Zhou Lijuan, Gritsenko Marina A, Zhou Mowei, Wan Jinrong, Pasa-Tolic Ljiljana, Xu Dong, Bartley Laura E, Thelen Jay J, Stacey Gary
Division of Plant Science & Technology, C.S. Bond Life Sciences Center, University of Missouri, Columbia, Missouri, USA.
Division of Biochemistry and Interdisciplinary Plant Group, C.S. Bond Life Sciences Center, University of Missouri, Columbia, Missouri, USA.
Mol Cell Proteomics. 2025 Mar;24(3):100926. doi: 10.1016/j.mcpro.2025.100926. Epub 2025 Feb 7.
In eukaryotic organisms, protein kinases regulate diverse protein activities and signaling pathways through phosphorylation of specific protein substrates. Isolating and characterizing kinase substrates is vital for defining downstream signaling pathways. The kinase-client (KiC) assay is an in vitro synthetic peptide LC-MS/MS phosphorylation assay that has enabled identification of protein substrates (i.e., clients) for various protein kinases. For example, previous use of a 2100-member (2k) peptide library identified substrates for the extracellular ATP receptor-like kinase, P2K1. Many P2K1 clients were confirmed by additional in vitro and in planta studies, including integrin-linked kinase 4, for which we provide the evidence herein. In addition, we developed a new KiC peptide library containing 8000 (8k) peptides based on phosphorylation sites primarily from Arabidopsis thaliana datasets. The 8k peptides are enriched for sites with conservation in other angiosperm plants, with the paired goals of representing functionally conserved sites and usefulness for screening kinases from diverse plants. Screening the 8k library with the active P2K1 kinase domain identified 177 phosphopeptides, including calcineurin B-like protein and G protein alpha subunit 1, which functions in cellular calcium signaling. We confirmed that P2K1 directly phosphorylates calcineurin B-like protein and G protein alpha subunit 1 through in vitro kinase assays. This expanded 8k KiC assay will be a useful tool for identifying novel substrates across diverse plant protein kinases, ultimately facilitating the exploration of previously undiscovered signaling pathways.
在真核生物中,蛋白激酶通过对特定蛋白质底物进行磷酸化来调节多种蛋白质活性和信号通路。分离并鉴定激酶底物对于确定下游信号通路至关重要。激酶-底物(KiC)分析是一种体外合成肽液相色谱-串联质谱磷酸化分析方法,它能够鉴定各种蛋白激酶的蛋白质底物(即底物蛋白)。例如,先前使用一个包含2100个成员(2k)的肽库鉴定出了细胞外ATP受体样激酶P2K1的底物。许多P2K1的底物蛋白已通过额外的体外和植物体内研究得到证实,包括整合素连接激酶4,本文为此提供了证据。此外,我们基于主要来自拟南芥数据集的磷酸化位点开发了一个新的包含8000个(8k)肽的KiC肽库。这些8k肽富含在其他被子植物中保守的位点,目的是既代表功能保守位点,又有助于筛选来自不同植物的激酶。用活性P2K1激酶结构域筛选8k肽库,鉴定出177个磷酸肽,包括钙调神经磷酸酶B样蛋白和在细胞钙信号传导中起作用的G蛋白α亚基1。我们通过体外激酶分析证实P2K1直接磷酸化钙调神经磷酸酶B样蛋白和G蛋白α亚基1。这种扩展的8k KiC分析将成为鉴定各种植物蛋白激酶新底物的有用工具,最终有助于探索以前未发现的信号通路。