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The pyruvate, orthophosphate dikinase regulatory proteins of Arabidopsis are both bifunctional and interact with the catalytic and nucleotide-binding domains of pyruvate, orthophosphate dikinase

机译:拟南芥的丙酮酸,正磷酸二激酶调节蛋白既具有双重功能,又与丙酮酸,正磷酸二激酶的催化和核苷酸结合域相互作用

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摘要

Pyruvate orthophosphate dikinase (PPDK) is a key enzyme in C4 photosynthesis and is also found in C3 plants. It is post-translationally modified by the PPDK regulatory protein (RP) that possesses both kinase and phosphotransferase activities. Phosphorylation and dephosphorylation of PPDK lead to inactivation and activation respectively. Arabidopsis thaliana contains two genes that encode chloroplastic (RP1) and cytosolic (RP2) isoforms of RP, and although RP1 has both kinase and phosphotransferase activities, to date RP2 has only been shown to act as a kinase. Here we demonstrate that RP2 is able to catalyse the dephosphorylation of PPDK, although at a slower rate than RP1 under the conditions of our assay. From yeast two-hybrid analysis we propose that RP1 binds to the central catalytic domain of PPDK, and that additional regions towards the carboxy and amino termini are required for a stable interaction between RP2 and PPDK. For 21 highly conserved amino acids in RP1, mutation of 15 of these reduced kinase and phosphotransferase activity, while mutation of six residues had no impact on either activity. We found no mutant in which only one activity was abolished. However, in some chimaeric fusions that comprised the amino and carboxy termini of RP1 and RP2 respectively, the kinase reaction was severely compromised but phosphotransferase activity remained unaffected. These findings are consistent with the findings that both RP1 and RP2 modulate reversibly the activity of PPDK, and possess one bifunctional active site or two separate sites in close proximity.
机译:丙酮酸正磷酸二激酶(PPDK)是C4光合作用的关键酶,也存在于C3植物中。它通过具有激酶和磷酸转移酶活性的PPDK调节蛋白(RP)进行翻译后修饰。 PPDK的磷酸化和去磷酸化分别导致失活和活化。拟南芥包含两个编码RP的叶绿素(RP1)和胞质(RP2)同工型的基因,尽管RP1同时具有激酶和磷酸转移酶的活性,但迄今为止,RP2仅被证明是一种激酶。在这里,我们证明了RP2能够催化PPDK的去磷酸化,尽管在我们的测定条件下其速度比RP1慢。通过酵母双杂交分析,我们提出RP1与PPDK的中央催化结构域结合,并且RP2和PPDK之间的稳定相互作用需要朝向羧基和氨基末端的其他区域。对于RP1中的21个高度保守的氨基酸,其中15个突变的激酶和磷酸转移酶活性降低,而6个残基的突变对这两种活性均无影响。我们没有发现仅消除一种活性的突变体。但是,在一些分别包含RP1和RP2氨基和羧基末端的嵌合融合物中,激酶反应受到严重损害,但磷酸转移酶活性未受影响。这些发现与RP1和RP2都可逆地调节PPDK的活性,并具有一个双功能活性位点或两个紧邻的独立位点的发现一致。

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