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ADP-核糖介导的蛋白质糖基化:模型缀合物的研究

Protein glycation by ADP-ribose: studies of model conjugates.

作者信息

Cervantes-Laurean D, Minter D E, Jacobson E L, Jacobson M K

机构信息

Department of Biochemistry and Molecular Biology, Texas College of Osteopathic Medicine, University of North Texas, Fort Worth 76107.

出版信息

Biochemistry. 1993 Feb 16;32(6):1528-34. doi: 10.1021/bi00057a017.

Abstract

Protein glycation by hexoses has been implicated in the pathophysiology of a number of diseases as well as the aging process. Studies of ADP-ribose polymer metabolism have shown that free ADP-ribose is generated at high rates in the cell nucleus following DNA damage. Protein glycation by ADP-ribose has been reported although the chemistry is not understood. Described here is the synthesis and characterization of model conjugates for protein glycation of lysine residues by ADP-ribose. Two stable conjugates derived from ADP-ribose and n-butylamine were isolated and characterized. Both conjugates were shown to be ketoamines derived from a Schiff base by an Amadori rearrangement. The chemical stability of the ketamines allowed them to be differentiated from all classes of enzymic protein modification by ADP-ribose. Further, their chemical properties suggest that a previous report of histone H1 modification in carcinogen treated cells was due to glycation by ADP-ribose.

摘要

己糖介导的蛋白质糖基化与多种疾病的病理生理学以及衰老过程有关。对ADP-核糖聚合物代谢的研究表明,DNA损伤后细胞核中会高速产生游离的ADP-核糖。尽管其化学过程尚不清楚,但已有报道称存在ADP-核糖介导的蛋白质糖基化。本文描述了用于ADP-核糖对赖氨酸残基进行蛋白质糖基化的模型共轭物的合成与表征。分离并表征了两种源自ADP-核糖和正丁胺的稳定共轭物。两种共轭物均显示为通过阿马多里重排由席夫碱衍生而来的酮胺。酮胺的化学稳定性使其能够与ADP-核糖介导的所有类型的酶促蛋白质修饰区分开来。此外,它们的化学性质表明,先前关于致癌物处理细胞中组蛋白H1修饰的报道是由于ADP-核糖的糖基化作用。

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