首页> 外文期刊>The FEBS journal >Mapping of the interaction site of CP12 with glyceraldehyde-3-phosphate dehydrogenase from Chlamydomonas reinhardtii - Functional consequences for glyceraldehyde-3-phosphate dehydrogenase
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Mapping of the interaction site of CP12 with glyceraldehyde-3-phosphate dehydrogenase from Chlamydomonas reinhardtii - Functional consequences for glyceraldehyde-3-phosphate dehydrogenase

机译:CP12与莱茵衣藻中的3-磷酸甘油醛脱氢酶相互作用的位点图-3-磷酸甘油醛脱氢酶的功能后果

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The 8.5 kDa chloroplast protein CP12 is essential for assembly of the phosphoribulokinase/glyceraldehyde-3-phosphate dehydrogenase (GAPDH) complex from Chlamydomonas reinhardtii. After reduction of this complex with thioredoxin, phosphoribulokinase is released but CP12 remains tightly associated with GAPDH and downregulates its NADPH-dependent activity. We show that only incubation with reduced thioredoxin and the GAPDH substrate 1,3-bisphosphoglycerate leads to dissociation of the GAPDH/CP12 complex. Consequently, a significant twofold increase in the NADPH-dependent activity of GAPDH was observed. 1,3-Bisphosphoglycerate or reduced thioredoxin alone weaken the association, causing a smaller increase in GAPDH activity. CP12 thus behaves as a negative regulator of GAPDH activity. A mutant lacking the C-terminal disulfide bridge is unable to interact with GAPDH, whereas absence of the N-terminal disulfide bridge does not prevent the association with GAPDH. Trypsin-protection experiments indicated that GAPDH may be also bound to the central alpha-helix of CP12 which includes residues at position 36 (D) and 39 (E). Mutants of CP12 (D36A, E39A and E39K) but not D36K, reconstituted the GAPDH/CP12 complex. Although the dissociation constants measured by surface plasmon resonance were 2.5-75-fold higher with these mutants than with wild-type CP12 and GAPDH, they remained low. For the D36K mutation, we calculated a 7 kcal.mol(-1) destabilizing effect, which may correspond to loss of the stabilizing effect of an ionic bond for the interaction between GAPDH and CP12. It thus suggests that electrostatic forces are responsible for the interaction between GAPDH and CP12.
机译:8.5 kDa的叶绿体蛋白CP12对于组装莱茵衣藻的磷酸核糖激酶/甘油醛-3-磷酸脱氢酶(GAPDH)复合物至关重要。用硫氧还蛋白还原该复合物后,释放了磷酸二丁激酶,但CP12仍与GAPDH紧密结合并下调其NADPH依赖性活性。我们显示,只有与减少的硫氧还蛋白和GAPDH底物1,3-双磷酸甘油酸酯一起孵育会导致GAPDH / CP12复合物解离。因此,观察到GAPDH的NADPH依赖性活性显着增加了两倍。 1,3-双磷酸甘油酸酯或单独还原的硫氧还蛋白会减弱这种缔合,从而导致GAPDH活性的增加幅度较小。因此,CP12充当GAPDH活性的负调节剂。缺少C端二硫键的突变体无法与GAPDH相互作用,而缺少N端二硫键的突变体不会阻止与GAPDH的缔合。胰蛋白酶保护实验表明,GAPDH也可能与CP12的中央α-螺旋结合,该螺旋包括在位置36(D)和39(E)处的残基。 CP12的突变体(D36A,E39A和E39K)而不是D36K构成了GAPDH / CP12复合体。尽管这些突变体的表面等离振子共振测定的解离常数比野生型CP12和GAPDH高2.5-75倍,但它们仍然很低。对于D36K突变,我们计算了7 kcal.mol(-1)的去稳定作用,这可能与GAPDH和CP12之间相互作用的离子键的去稳定作用相对应。因此表明,静电力是GAPDH和CP12之间相互作用的原因。

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