首页> 美国卫生研究院文献>Biochemical Journal >Decreased-activity mutants of phosphoglucose isomerase in the cytosol and chloroplast of Clarkia xantiana. Impact on mass-action ratios and fluxes to sucrose and starch and estimation of Flux Control Coefficients and Elasticity Coefficients.
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Decreased-activity mutants of phosphoglucose isomerase in the cytosol and chloroplast of Clarkia xantiana. Impact on mass-action ratios and fluxes to sucrose and starch and estimation of Flux Control Coefficients and Elasticity Coefficients.

机译:桔梗胞质和叶绿体中磷酸葡萄糖异构酶活性降低的突变体。对质量比和蔗糖和淀粉通量的影响以及通量控制系数和弹性系数的估计。

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摘要

1. Subcellular-compartment-specific decreased-activity mutants of phosphoglucose isomerase in Clarkia xantiana were used to analyse the control of sucrose and starch synthesis during photosynthesis. Mutants were available in which the plastid phosphoglucose isomerase complement is decreased to 75% or 50% of the wild-type level, and the cytosol complement to 64%, 36% or 18% of the wild-type level. 2. The effects on the [product]/[substrate] ratio and on fluxes to sucrose or starch and the rate of photosynthesis were studied with the use of saturating or limiting light intensity to impose a high or low flux through these pathways. 3. Removal of a small fraction of either phosphoglucose isomerase leads to a significant shift of the [product]/[substrate] ratio away, from equilibrium. We conclude that there is no 'excess' of enzyme over that needed to maintain its reactants reasonably close to equilibrium. 4. Decreased phosphoglucose isomerase activity can also alter the fluxes to starch or sucrose. However, the effect on flux does not correlate with the extent of disequilibrium, and also varies depending on the subcellular compartment and on the conditions. 5. The results were used to estimate Flux Control Coefficients for the chloroplast and cytosolic phosphoglucose isomerases. The chloroplast isoenzyme exerts control on the rate of starch synthesis and on photosynthesis in saturating light intensity and CO2, but not at low light intensity. The cytosolic enzyme only exerts significant control when its complement is decreased 3-5-fold, and differs from the plastid isoenzyme in exerting more control in low light intensity. It has a positive Control Coefficient for sucrose synthesis, and a negative Control Coefficient for starch synthesis. 6. The Elasticity Coefficients in vivo of the cytosolic phosphoglucose isomerase were estimated to lie between 5 and 8 in the wild-type. They decrease in mutants with a lowered complement of cytosolic phosphoglucose isomerase. 7. The implications of these results for regulation and for evolution are discussed.
机译:1.以黄花苜蓿中磷酸葡萄糖异构酶的亚细胞室特异性降低活性突变体为研究对象,研究其在光合作用过程中对蔗糖和淀粉合成的控制。可获得这样的突变体,其中质体磷酸葡萄糖异构酶补体降低至野生型水平的75%或50%,而胞质溶胶补体降低至野生型水平的64%,36%或18%。 2.通过使用饱和或限制光强度通过这些途径施加高或低通量,研究了对[产物] / [底物]比率以及对蔗糖或淀粉的通量和光合作用速率的影响。 3.除去一小部分的磷酸葡萄糖异构酶会导致[产物] / [底物]比值明显偏离平衡。我们得出的结论是,没有比维持反应物合理接近平衡所需的酶“过量”。 4.降低的磷酸葡萄糖异构酶活性也可以改变通向淀粉或蔗糖的通量。然而,对通量的影响与不平衡程度无关,并且还取决于亚细胞区室和条件而变化。 5.结果用于估计叶绿体和胞质磷酸葡萄糖异构酶的通量控制系数。叶绿体同工酶在饱和光强度和CO2中控制淀粉的合成速率和光合作用,但在低光强度下则不起作用。胞质酶仅在其补体减少3-5倍时才发挥重要的控制作用,并且与质体同工酶的不同之处在于在低光照强度下发挥更大的控制作用。对于蔗糖合成,它具有正控制系数,对于淀粉合成,它具有负控制系数。 6.在野生型中,胞质磷酸葡萄糖异构酶的体内弹性系数估计为5至8。在具有降低的胞质磷酸葡萄糖异构酶补体的突变体中它们减少。 7.讨论了这些结果对调节和进化的影响。

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