Boehlein Susan K, Shaw Janine R, Hannah L Curtis
Genetics Institute, University of Florida, Gainesville, FL, United States.
Department of Horticultural Sciences, University of Florida, Gainesville, FL, United States.
Front Plant Sci. 2018 Dec 12;9:1849. doi: 10.3389/fpls.2018.01849. eCollection 2018.
ADP-glucose pyrophosphorylase (AGPase) is an important enzyme in starch synthesis and previous studies showed that the heat lability of this enzyme is a determinant to starch synthesis in the maize endosperm and, in turn, seed yield. Here, amino acids in the AGPase endosperm small subunit with high B-factors were mutagenized and individual changes enhancing heat stability and/or kinetic parameters in an expression system were chosen. Individual mutations were combined and analyzed. One triple mutant, here termed , was chosen for further study. Combinations of this heat stable, 3-PGA-independent small subunit variant with large subunits also heat stable yielded complex patterns of heat stability and kinetic and allosteric properties. Interestingly, two of the three changes reside in a protein motif found only in AGPases that exhibit high sensitivity to 3-PGA. While not the 3-PGA binding site, amino acid substitutions in this region significantly alter 3-PGA activation kinetics.
ADP - 葡萄糖焦磷酸化酶(AGPase)是淀粉合成中的一种重要酶,先前的研究表明,该酶的热不稳定性是玉米胚乳中淀粉合成的一个决定因素,进而影响种子产量。在此,对AGPase胚乳小亚基中具有高B因子的氨基酸进行诱变,并在表达系统中选择增强热稳定性和/或动力学参数的个体变化。将单个突变进行组合并分析。选择了一个三重突变体,在此称为 ,进行进一步研究。这种热稳定的、不依赖3 - 磷酸甘油酸(3 - PGA)的小亚基变体与同样热稳定的大亚基的组合产生了热稳定性、动力学和别构性质的复杂模式。有趣的是,三个变化中的两个位于仅在对3 - PGA表现出高敏感性的AGPases中发现的蛋白质基序中。虽然不是3 - PGA结合位点,但该区域的氨基酸取代显著改变了3 - PGA激活动力学。