Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral, Consejo Nacional de Investigaciones Científicas y Técnicas, Facultad de Bioquímica y Ciencias Biológicas, Santa Fe, Argentina.
Department of Chemistry and Biochemistry, Loyola University Chicago, Chicago, IL, USA.
Plant Mol Biol. 2022 Mar;108(4-5):307-323. doi: 10.1007/s11103-021-01235-8. Epub 2022 Jan 10.
This review outlines research performed in the last two decades on the structural, kinetic, regulatory and evolutionary aspects of ADP-glucose pyrophosphorylase, the regulatory enzyme for starch biosynthesis. ADP-glucose pyrophosphorylase (ADP-Glc PPase) catalyzes the first committed step in the pathway of glycogen and starch synthesis in bacteria and plants, respectively. Plant ADP-Glc PPase is a heterotetramer allosterically regulated by metabolites and post-translational modifications. In this review, we focus on the three-dimensional structure of the plant enzyme, the amino acids that bind the regulatory molecules, and the regions involved in transmitting the allosteric signal to the catalytic site. We provide a model for the evolution of the small and large subunits, which produce heterotetramers with distinct catalytic and regulatory properties. Additionally, we review the various post-translational modifications observed in ADP-Glc PPases from different species and tissues. Finally, we discuss the subcellular localization of the enzyme found in grain endosperm from grasses, such as maize and rice. Overall, this work brings together research performed in the last two decades to better understand the multiple mechanisms involved in the regulation of ADP-Glc PPase. The rational modification of this enzyme could improve the yield and resilience of economically important crops, which is particularly important in the current scenario of climate change and food shortage.
本文概述了过去二十年中对 ADP-葡萄糖焦磷酸化酶(淀粉生物合成的调节酶)的结构、动力学、调节和进化方面的研究。ADP-葡萄糖焦磷酸化酶(ADP-Glc PPase)分别催化细菌和植物中糖原和淀粉合成途径中的第一个关键步骤。植物 ADP-Glc PPase 是一种变构调节的杂四聚体,受代谢物和翻译后修饰调节。在本综述中,我们重点介绍植物酶的三维结构、结合调节分子的氨基酸以及将别构信号传递到催化位点的区域。我们提供了一个小亚基和大亚基进化模型,它们产生具有不同催化和调节特性的杂四聚体。此外,我们还综述了不同物种和组织中观察到的各种翻译后修饰。最后,我们讨论了在禾本科谷物胚乳中发现的酶的亚细胞定位,如玉米和水稻。总的来说,这项工作汇集了过去二十年的研究成果,以更好地理解 ADP-Glc PPase 调节所涉及的多种机制。对该酶的合理修饰可以提高经济重要作物的产量和弹性,这在当前气候变化和粮食短缺的情况下尤为重要。