首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Comparison of glucosylated low density lipoprotein with methylated or cyclohexanedione-treated low density lipoprotein in the measurement of receptor-independent low density lipoprotein catabolism.
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Comparison of glucosylated low density lipoprotein with methylated or cyclohexanedione-treated low density lipoprotein in the measurement of receptor-independent low density lipoprotein catabolism.

机译:糖基化低密度脂蛋白与甲基化或环己二酮处理的低密度脂蛋白在受体非依赖性低密度脂蛋白分解代谢测量中的比较。

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摘要

We previously showed that glucosylation of lysine residues of low density lipoproteins (LDL) blocks high-affinity degradation by cultured human fibroblasts, and markedly slows LDL turnover in guinea pigs. The present studies were done to evaluate glucosylated (GLC) LDL as a tracer of receptor-independent LDL catabolism, and to compare it with two other modified LDL, methylated (MET) LDL, and cyclohexanedione (CHD)-treated LDL, which have been used previously for this purpose. Glucosylation of LDL did not affect receptor-independent degradation in vivo, as the turnover of GLC-LDL and native LDL were similar in the LDL receptor-deficient, Watanabe heritable hyperlipidemic rabbit. Each modified radiolabeled LDL preparation was injected into eight guinea pigs, and fractional catabolic rates (FCR) determined. The FCR of GLC-LDL (0.024 +/- 0.005 h-1; SD) was similar to that of MET-LDL (0.023 +/- 0.006 h-1), and approximately 22% of that of native LDL (0.105 +/- 0.02 h-1). The FCR of CHD-LDL was greater than that of the other modified LDL, and it varied depending on how soon after preparation the CHD-LDL was injected: when used within 2 h of preparation, the mean FCR was 0.044 +/- 0.007 h-1 (n = 4); when used after overnight dialysis at 4 degrees C, the mean FCR was 0.082 +/- 0.03 h-1 (n = 4). This suggests that CHD-LDL overestimates the amount of LDL degraded by receptor-independent pathways, perhaps because the CHD modification is spontaneously reversible. The present studies indicate that GLC-LDL is a useful tracer of receptor-independent LDL catabolism in animals.
机译:我们以前显示低密度脂蛋白(LDL)的赖氨酸残基的糖基化可阻止培养的人成纤维细胞的高亲和力降解,并显着减慢豚鼠的LDL周转率。进行本研究是为了评估作为受体非依赖性LDL分解代谢示踪剂的糖基化(GLC)LDL,并将其与另外两个经过修饰的LDL,甲基化(MET)LDL和环己二酮(CHD)处理的LDL进行比较。以前用于此目的。 LDL的糖基化作用不会影响体内受体依赖性的降解,因为在LDL受体缺乏的渡边遗传性高脂血症兔子中,GLC-LDL和天然LDL的转化率相似。将每种经过修饰的放射性标记的LDL制剂注射入八只豚鼠,并测定分解代谢率(FCR)。 GLC-LDL(0.024 +/- 0.005 h-1; SD)的FCR与MET-LDL(0.023 +/- 0.006 h-1)的FCR相似,约为天然LDL(0.105 + / -0.02 h-1)。 CHD-LDL的FCR大于其他修饰的LDL,其变化取决于制备后注射CHD-LDL的时间:在制备后2小时内使用时,平均FCR为0.044 +/- 0.007 h -1(n = 4);当在4摄氏度过夜透析后使用时,平均FCR为0.082 +/- 0.03 h-1(n = 4)。这表明CHD-LDL高估了由受体非依赖性途径降解的LDL的数量,这可能是因为CHD修饰是自发可逆的。本研究表明,GLC-LDL是动物中受体依赖性LDL分解代谢的有用示踪剂。

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