Maze Therapeutics, 171 Oyster Point Blvd, Suite 300, South San Francisco, CA 94080, USA.
Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN 46220, USA.
Cell Rep. 2022 Jul 5;40(1):111041. doi: 10.1016/j.celrep.2022.111041.
Glycogen is the primary energy reserve in mammals, and dysregulation of glycogen metabolism can result in glycogen storage diseases (GSDs). In muscle, glycogen synthesis is initiated by the enzymes glycogenin-1 (GYG1), which seeds the molecule by autoglucosylation, and glycogen synthase-1 (GYS1), which extends the glycogen chain. Although both enzymes are required for proper glycogen production, the nature of their interaction has been enigmatic. Here, we present the human GYS1:GYG1 complex in multiple conformations representing different functional states. We observe an asymmetric conformation of GYS1 that exposes an interface for close GYG1 association, and propose this state facilitates handoff of the GYG1-associated glycogen chain to a GYS1 subunit for elongation. Full activation of GYS1 widens the GYG1-binding groove, enabling GYG1 release concomitant with glycogen chain growth. This structural mechanism connecting chain nucleation and extension explains the apparent stepwise nature of glycogen synthesis and suggests distinct states to target for GSD-modifying therapeutics.
糖原是哺乳动物的主要能量储备,糖原代谢的失调可导致糖原贮积病(GSD)。在肌肉中,糖原的合成由酶糖原合酶-1(GYS1)起始,该酶通过自葡糖基化作用来启动分子,而糖原合酶-1(GYS1)则延伸糖原链。尽管这两种酶对于正常的糖原产生都是必需的,但它们相互作用的性质一直是神秘的。在这里,我们展示了多种代表不同功能状态的人 GYS1:GYG1 复合物。我们观察到 GYS1 的不对称构象,暴露出一个易于与 GYG1 紧密结合的界面,我们提出这种状态有利于将 GYG1 相关的糖原链传递给 GYS1 亚基进行延伸。GYS1 的完全激活拓宽了 GYG1 结合槽,从而能够在糖原链生长的同时释放 GYG1。这种连接链引发和延伸的结构机制解释了糖原合成的明显分步性质,并为针对 GSD 修饰治疗的不同状态提供了目标。