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Prompt and Easy Activation by Specific Thioredoxins of Calvin Cycle Enzymes of Arabidopsis thaliana Associated in the GAPDH/CP12/PRK Supramolecular Complex

机译:由GAPDH / CP12 / PRK超分子复合物中相关的拟南芥的卡尔文循环酶的特定硫氧还蛋白迅速而容易地激活

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摘要

The Calvin cycle enzymes glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and phosphoribulokinase (PRK) can form under oxidizing conditions a supramolecular complex with the regulatory protein CP12. Both GAPDH and PRK activities are inhibited within the complex, but they can be fully restored by reduced thioredoxins (TRXs). We have investigated the interactions of eight different chloroplast thioredoxin isoforms (TRX f1, m1, m2, m3, m4, y1, y2, x) with GAPDH (A(4), B-4, and B-8 isoforms), PRK and CP12 (isoform 2), all from Arabidopsis thaliana. In the complex, both A(4)-GAPDH and PRK were promptly activated by TRX f1, or more slowly by TRXs m1 and m2, but all other TRXs were ineffective. Free PRK was regulated by TRX f1, m1, or m2, while B-4- and B-8-GAPDH were absolutely specific for TRX f1. Interestingly, reductive activation of PRK caged in the complex was much faster than reductive activation of free oxidized PRK, and activation of A(4)-GAPDH in the complex was much faster (and less demanding in terms of reducing potential) than activation of free oxidized B-4- or B-8-GAPDH. It is proposed that CP12-assembled supramolecular complex may represent a reservoir of inhibited enzymes ready to be released in fully active conformation following reduction and dissociation of the complex by TRXs upon the shift from dark to low light. On the contrary, autonomous redox-modulation of GAPDH (B-containing isoforms) would be more suited to conditions of very active photosynthesis.
机译:卡尔文循环酶甘油醛-3-磷酸脱氢酶(GAPDH)和磷酸核糖激酶(PRK)可以在氧化条件下与调节蛋白CP12形成超分子复合物。 GAPDH和PRK活性在复合物中均被抑制,但是它们可以通过还原的硫氧还蛋白(TRXs)完全恢复。我们研究了GAPDH(A(4),B-4和B-8亚型),八个不同叶绿体硫氧还蛋白同工型(TRX f1,m1,m2,m3,m4,y1,y2,x)的相互作用CP12(同工型2),全部来自拟南芥。在复合体中,A(4)-GAPDH和PRK均被TRX f1迅速激活,或更慢地被TRX m1和m2激活,但所有其他TRX均无效。游离PRK受TRX f1,m1或m2调节,而B-4-和B-8-GAPDH对TRX f1绝对具有特异性。有趣的是,笼罩在复合物中的PRK的还原活化比游离氧化PRK的还原性活化要快得多,而复合物中A(4)-GAPDH的活化比游离态的活化要快得多(对还原电位的要求较低)。氧化的B-4-或B-8-GAPDH。有人提出,CP12组装的超分子复合物可能代表了抑制的酶库,这些复合物在TRXs从暗光转换为弱光后,通过复合物的还原和解离,准备以完全活性的构象释放。相反,GAPDH(含B的亚型)的自主氧化还原调节将更适合于非常活跃的光合作用条件。

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