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人糖原素-2的特性研究,肝脏糖原代谢的一种自我糖基化启动因子

Characterization of human glycogenin-2, a self-glucosylating initiator of liver glycogen metabolism.

作者信息

Mu J, Roach P J

机构信息

Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, Indiana 46202-5122, USA.

出版信息

J Biol Chem. 1998 Dec 25;273(52):34850-6. doi: 10.1074/jbc.273.52.34850.

Abstract

Glycogenin-2 is a recently described self-glucosylating protein potentially involved in the initiation of glycogen biosynthesis (Mu, J., Skurat, A. V., and Roach, P. J. (1997) J. Biol. Chem. 272, 27589-27597). In human liver extracts, most of the glycogenin-2 was only detectable after treatment with alpha-amylase. Similarly, purifed high Mr glycogen was only detected after release by alpha-amylase treatment. Based on analysis by polymerase chain reaction, the predominant isoform in liver was glycogenin-2beta. Glycogenin-2 was found in Ewing's sarcoma RD-ES cells where, however, it was not associated with high Mr carbohydrate. Both human liver and human RD-ES cell extracts also contained glycogenin-1. Glycogenin-1 and glycogenin-2 interact with one another, based on in vitro interactions and co-immunoprecipitation from liver and cell extracts. Mutation of Tyr-196 in glycogenin-2 to a Phe residue abolished the ability of glycogenin-2 to self-glucosylate but not to interact with glycogenin-1. Stable overexpression of glycogenin-2alpha in Rat-1 fibroblast cells resulted in a 5-fold increase in the level of glycogen present in the low speed pellet but little change in the low speed supernatant. This result is important since it indicates that the level of glycogenin-2 can determine glycogen accumulation and hence has the potential to control glycogen synthesis.

摘要

糖原素-2是一种最近被描述的自我葡糖基化蛋白,可能参与糖原生物合成的起始过程(Mu, J., Skurat, A. V., and Roach, P. J. (1997) J. Biol. Chem. 272, 27589 - 27597)。在人肝脏提取物中,大部分糖原素-2只有在用α-淀粉酶处理后才能检测到。同样,纯化的高分子量糖原只有在经过α-淀粉酶处理释放后才能被检测到。基于聚合酶链反应分析,肝脏中主要的同工型是糖原素-2β。在尤因肉瘤RD-ES细胞中发现了糖原素-2,然而,在该细胞中它与高分子量碳水化合物并无关联。人肝脏和人RD-ES细胞提取物中也都含有糖原素-1。基于体外相互作用以及从肝脏和细胞提取物中的共免疫沉淀结果,糖原素-1和糖原素-2相互作用。糖原素-2中酪氨酸-196突变为苯丙氨酸残基消除了糖原素-2自我葡糖基化的能力,但并未消除其与糖原素-1相互作用的能力。在大鼠-1成纤维细胞中稳定过表达糖原素-2α导致低速沉淀中糖原水平增加了5倍,但低速上清液中的变化很小。这一结果很重要,因为它表明糖原素-2的水平可以决定糖原积累,因此有控制糖原合成的潜力。

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