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钙依赖性磷酸化对GT-1 DNA结合活性的调节

Modulation of GT-1 DNA-binding activity by calcium-dependent phosphorylation.

作者信息

Maréchal E, Hiratsuka K, Delgado J, Nairn A, Qin J, Chait B T, Chua N H

机构信息

Laboratory of Plant Molecular Biology, The Rockefeller University, New York, NY 10021-6399, USA.

出版信息

Plant Mol Biol. 1999 Jun;40(3):373-86. doi: 10.1023/a:1006131330930.

Abstract

The analysis of pea rbcS-3A promoter sequence showed that BoxII was necessary for the control of rbcS-3A gene expression by light. GT-1, a DNA-binding protein that interacts with BoxII in vitro, is a good candidate for being a light-modulated molecular switch controlling gene expression. However, the relationship between GT-1 activity and light-responsive gene activation still remains hypothetical. Because no marked de novo synthesis was detected after light treatment, light may induce post-translational modifications of GT-1 such as phosphorylation or dephosphorylation. Here, we show that recombinant GT-1 (hGT-1) of Arabidopsis can be phosphorylated by various mammalian kinase activities in vitro. Whereas phosphorylation by casein kinase II had no apparent effect on hGT-1 DNA binding, phosphorylation by calcium/calmodulin kinase II (CaMKII) increased the binding activity 10-20-fold. Mass spectrometry analyses of the phosphorylated hGT-1 showed that amongst the 6 potential phosphorylatable residues (T86, T133, S175, T179, S198 and T278), only T133 and S198 are heavily modified. Analyses of mutants altered at T86, T133, S175, T179, S198 and T278 demonstrated that phosphorylation of T133 can account for most of the stimulation of DNA-binding activity by CaMKII, indicating that this residue plays an important role in hGT-1/BoxII interaction. We further showed that nuclear GT-1 DNA-binding activity to BoxII was reduced by treatment with calf intestine phosphatase in extracts prepared from light-grown plants but not from etiolated plants. Taken together, our results suggest that GT-1 may act as a molecular switch modulated by calcium-dependent phosphorylation and dephosphorylation in response to light signals.

摘要

豌豆rbcS - 3A启动子序列分析表明,BoxII对于光调控rbcS - 3A基因表达是必需的。GT - 1是一种在体外与BoxII相互作用的DNA结合蛋白,是作为控制基因表达的光调节分子开关的良好候选者。然而,GT - 1活性与光响应基因激活之间的关系仍然是假设性的。由于光处理后未检测到明显的从头合成,光可能诱导GT - 1的翻译后修饰,如磷酸化或去磷酸化。在这里,我们表明拟南芥的重组GT - 1(hGT - 1)在体外可被多种哺乳动物激酶活性磷酸化。酪蛋白激酶II的磷酸化对hGT - 1 DNA结合没有明显影响,而钙/钙调蛋白激酶II(CaMKII)的磷酸化使结合活性增加了10 - 20倍。对磷酸化hGT - 1的质谱分析表明,在6个潜在的可磷酸化残基(T86、T133、S175、T179、S198和T278)中,只有T133和S198被大量修饰。对T86、T133、S175、T179、S198和T278处发生改变的突变体的分析表明,T133的磷酸化可解释CaMKII对DNA结合活性的大部分刺激作用,表明该残基在hGT - 1/BoxII相互作用中起重要作用。我们进一步表明,在从光照生长的植物而非黄化植物制备的提取物中,用小牛肠磷酸酶处理可降低核GT - 1对BoxII的DNA结合活性。综上所述,我们的结果表明,GT - 1可能作为一种分子开关,通过钙依赖性磷酸化和去磷酸化来响应光信号进行调节。

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