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首页> 外文期刊>Archives of Biochemistry and Biophysics >Identification of a new motif for CDPK phosphorylation in vitro that suggests ACC synthase may be a CDPK substrate
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Identification of a new motif for CDPK phosphorylation in vitro that suggests ACC synthase may be a CDPK substrate

机译:体外CDPK磷酸化的新基序的鉴定表明ACC合酶可能是CDPK底物

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摘要

1-Amino-cyclopropane-1-carboxylate synthase (ACS) catalyzes the rate-determining step in the biosynthesis of the plant hormone ethylene, and there is evidence for regulation of stability of the protein by reversible protein phosphorylation. The site of phosphorylation of the tomato enzyme, LeACS2, was recently reported to be Ser460, but the requisite protein kinase has not been identified. In the present study, a synthetic peptide based on the known regulatory phosphorylation site ((KKNNLRLSFSKRMY)-F-460) in LeACS2 was found to be readily phosphorylated in vitro by several calcium-dependent protein kinases (CDPKs), but not a plant SNF1-related protein kinase or the kinase domain of the receptor-like kinase, BRII, involved in brassinosteroid signaling. Studies with variants of the LeACS2-Ser460 peptide establish a fundamentally new phosphorylation motif that is broadly targeted by CDPKs: phi(-1)-[ST](0)-phi(+1)-X-BaSiC+3-Basic(+4), where phi is a hydrophobic residue. Database analysis using the new motif predicts a number of novel phosphorylation sites in plant proteins. Finally, we also demonstrate that CDPKs and SnRK1s do not recognize motifs presented in the reverse order, indicating that side chain interactions alone are not sufficient for substrate recognition. (C) 2004 Published by Elsevier Inc.
机译:1-氨基-环丙烷-1-羧酸合酶(ACS)催化植物激素乙烯生物合成中的速率确定步骤,并且有证据表明可逆蛋白质磷酸化可调节蛋白质的稳定性。最近报道了番茄酶LeACS2的磷酸化位点是Ser460,但尚未鉴定出必需的蛋白激酶。在本研究中,发现基于LeACS2中已知的调节磷酸化位点((KKNNLRLSFSKRMY)-F-460)的合成肽在体外容易被几种钙依赖性蛋白激酶(CDPK)磷酸化,而不是植物SNF1相关蛋白激酶或类似受体的激酶BRII的激酶结构域,参与油菜素类固醇信号传导。 LeACS2-Ser460肽变体的研究建立了一个基本新的磷酸化基序,该基序被CDPK广泛靶向:phi(-1)-[ST](0)-phi(+1)-X-BaSiC + 3-Basic(+ 4),其中phi是疏水残基。使用新基序的数据库分析预测了植物蛋白中许多新的磷酸化位点。最后,我们还证明CDPK和SnRK1不识别以相反顺序显示的基序,表明仅侧链相互作用不足以进行底物识别。 (C)2004由Elsevier Inc.出版

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