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Processivity and subcellular localization of glycogen synthase depend on a non-catalytic high affinity glycogen-binding site

机译:糖原合酶的合成能力和亚细胞定位取决于非催化的高亲和力糖原结合位点

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摘要

Glycogen synthase, a central enzyme in glucose metabolism, catalyzes the successive addition of α-1,4-linked glucose residues to the non-reducing end of a growing glycogen molecule. A non-catalytic glycogen-binding site, identified by x-ray crystallography on the surface of the glycogen synthase from the archaeon Pyrococcus abyssi, has been found to be functionally conserved in the eukaryotic enzymes. The disruption of this binding site in both the archaeal and the human muscle glycogen synthases has a large impact when glycogen is the acceptor substrate. Instead, the catalytic efficiency remains essentially unchanged when small oligosaccharides are used as substrates. Mutants of the human muscle enzyme with reduced affinity for glycogen also show an altered intracellular distribution and a marked decrease in their capacity to drive glycogen accumulation in vivo. The presence of a high affinity glycogen-binding site away from the active center explains not only the long-recognized strong binding of glycogen synthase to glycogen but also the processivity and the intracellular localization of the enzyme. These observations demonstrate that the glycogen-binding site is a critical regulatory element responsible for the in vivo catalytic efficiency of GS. © 2011 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:糖原合酶,在葡萄糖代谢中的核心酶,催化α-1,4-连接的葡萄糖残基的相继添加到生长糖原分子的非还原端。通过X射线晶体学鉴定来自古生毕赤酵母的糖原合酶表面上的非催化糖原结合位点在真核酶中在功能上是保守的。当糖原是受体底物时,古细菌和人肌肉糖原合酶中该结合位点的破坏都具有很大的影响。相反,当小的寡糖用作底物时,催化效率基本上保持不变。对糖原亲和力降低的人肌肉酶突变体也显示出改变的细胞内分布,并在体内驱动糖原积累的能力上显着降低。远离活性中心的高亲和力糖原结合位点的存在不仅解释了糖原合酶与糖原的长期公认的强结合,还解释了该酶的持续合成能力和细胞内定位。这些观察表明,糖原结合位点是负责GS的体内催化效率的关键调节元件。 ©2011,美国生物化学与分子生物学学会。

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