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载脂蛋白 A-I 糖基化后,无论在游离状态还是结合状态下,其结构都发生严重修饰,并丧失了有益功能,从而加速了动脉粥样硬化和衰老。

Fructated apolipoprotein A-I showed severe structural modification and loss of beneficial functions in lipid-free and lipid-bound state with acceleration of atherosclerosis and senescence.

机构信息

Aging-associated Vascular Disease Research Center, Yeungnam University, Gyeongsan 712-749, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2010 Feb 12;392(3):295-300. doi: 10.1016/j.bbrc.2009.12.179. Epub 2010 Jan 7.

DOI:10.1016/j.bbrc.2009.12.179
PMID:20059975
Abstract

Non-enzymatic glycation of serum apolipoproteins is a main feature of diabetes mellitus under hyperglycemia. Advanced glycation end products are implicated in the development of aging and metabolic syndrome, including premature atherosclerosis in diabetic subjects. ApoA-I is the principal protein constituent of HDL. In this study, glycated human apoA-I (gA-I) by fructation was characterized on functional and structural correlations in lipid-free and lipid-bound states. The gA-I showed more spontaneous multimeric band formation up to pentamer and exhibited slower elution profile with more degraded fragments from fast protein liquid chromatography. The gA-I showed modified secondary structure from fluorescence and circular dichroism analysis. Reconstituted high-density lipoprotein (rHDL) containing the gA-I had less content of phospholipid with a much smaller particle size than those of rHDL-containing nA-I (nA-I-rHDL). The rHDL containing gA-I (gA-I-rHDL) consisted of less molecular number of apoA-I than nA-I-rHDL with decreased alpha-helical content. Treatment of the gA-I-rHDL induced more atherogenic process in macrophage cell and premature senescence in human dermal fibroblast cell. Conclusively, fructose-mediated apoA-I glycation resulted in severe loss of several beneficial functions of apoA-I and HDL regarding anti-senescence and anti-atherosclerosis activities due to a lack of anti-oxidant activity with increased susceptibility of protein degradation and structural modification.

摘要

血清载脂蛋白的非酶糖基化是高血糖下糖尿病的主要特征。糖基化终产物与衰老和代谢综合征的发展有关,包括糖尿病患者的动脉粥样硬化。ApoA-I 是 HDL 的主要蛋白质成分。在这项研究中,果糖糖化的人载脂蛋白 A-I(gA-I)在无脂和脂结合状态下的功能和结构相关性进行了表征。gA-I 表现出更多的自发多聚体形成,直到五聚体,并表现出较慢的洗脱谱,具有更多的降解片段从快速蛋白液相色谱。gA-I 显示出荧光和圆二色性分析中修饰的二级结构。含有 gA-I 的重组高密度脂蛋白(rHDL)的磷脂含量较少,粒径比含有 nA-I 的 rHDL 小得多。与 nA-I-rHDL 相比,含有 gA-I 的 rHDL(gA-I-rHDL)的载脂蛋白 A-I 分子数量较少,α-螺旋含量降低。gA-I-rHDL 的处理诱导巨噬细胞中的动脉粥样硬化过程和人皮肤成纤维细胞中的早衰。总之,果糖介导的 apoA-I 糖基化导致 apoA-I 和 HDL 的几种有益功能严重丧失,关于抗衰老和抗动脉粥样硬化活性,由于缺乏抗氧化活性,导致蛋白质降解和结构修饰的易感性增加。

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