Chao Y B, Scovell W M, Yan S B
Cardiovascular Research, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.
Protein Sci. 1994 Dec;3(12):2452-4. doi: 10.1002/pro.5560031230.
High mobility group protein-1 (HMG-1) is a ubiquitous, highly conserved, and abundant nuclear protein. Recent findings suggest that HMG-1 may serve as a DNA chaperone protein and play a role in the regulation of transcription. There is a mounting interest in elucidating the mechanism by which HMG-1 protein takes part in these activities. HMG-1 has been reported to undergo an extensive array of posttranslational modifications, including glycosylation. We extend the earlier findings on the glycosylation of HMG-1 by quantitating the amount of carbohydrate on HMG-1 from calf thymus and chicken erythrocytes isolated by 2 different purification procedures. In addition, 2 different developmental stages (embryonic and adult) were examined in the chicken erythrocytes. The glycosyl composition was quantitated using the Dionex HPAE-PAD II system. Furthermore, the presence of O-linked GlcNAc on HMG-1 was determined by the enzymatic incorporation of 3H-galactose into HMG-1 protein. Contrary to earlier reports, less than 0.5 mol of total monosaccharides (Fuc, Man, GalNH2, GlcNH2, Gal) were detected per mole of HMG-1 protein, regardless of the source of the protein or the method of isolation. In addition, less than 0.002 mol of O-linked GlcNAc per mole of HMG-1 protein was detected. Thus, insignificant amount of glycosylation was found on HMG-1 protein. Because O-linked GlcNAc modification of proteins is believed to be a reversible posttranslational event, more definitive studies will need to be conducted before ruling out that the function of HMG-1 protein is not regulated by glycosylation.
高迁移率族蛋白1(HMG-1)是一种普遍存在、高度保守且含量丰富的核蛋白。最近的研究结果表明,HMG-1可能作为一种DNA伴侣蛋白,并在转录调控中发挥作用。人们对阐明HMG-1蛋白参与这些活动的机制越来越感兴趣。据报道,HMG-1会经历一系列广泛的翻译后修饰,包括糖基化。我们通过对用两种不同纯化方法分离的小牛胸腺和鸡红细胞中的HMG-1上的碳水化合物含量进行定量,扩展了关于HMG-1糖基化的早期研究结果。此外,在鸡红细胞中检测了两个不同的发育阶段(胚胎期和成年期)。使用戴安公司的高效阴离子交换色谱-脉冲安培检测II系统对糖基组成进行定量。此外,通过将3H-半乳糖酶促掺入HMG-1蛋白来确定HMG-1上O-连接的N-乙酰葡糖胺的存在。与早期报道相反,无论蛋白来源或分离方法如何,每摩尔HMG-1蛋白中检测到的总单糖(岩藻糖、甘露糖、半乳糖胺、葡糖胺、半乳糖)少于0.5摩尔。此外,每摩尔HMG-1蛋白中检测到的O-连接的N-乙酰葡糖胺少于0.002摩尔。因此,在HMG-1蛋白上发现的糖基化量微不足道。由于蛋白质的O-连接的N-乙酰葡糖胺修饰被认为是一种可逆的翻译后事件,在排除HMG-1蛋白的功能不受糖基化调节之前,还需要进行更明确的研究。