Nakai T, Whayne T F
J Lab Clin Med. 1976 Jul;88(1):63-80.
The catabolic site(s) of plasma lipoproteins and apolipoproteins has not been established. We have purified one of the major apolipoproteins and explored its catabolic rate and its site of catabolism. Apolipoprotein (Apo) A-1 was purified by column chromatography of canine high-density lipoprotein (HDL) subfraction, HDL3, which was totally delipidated; the purified Apo A-1, molecular weight 28,000, had only one precipitin line to either anti-Apo A-1, or anti-Apo HDL3 serum. Apo A-I was then iodinated, its catabolic rate measured, and the various organs and the subcellular sites of liver involved in the catabolism were investigated. The T 1/2 of 125I-Apo A-I in HDL3 was 3.33 +/- 0.08 days and in plasma 3.52 +/- 0.17 days. The disappearance curve of radioactivity recovered in density fractions d less than 1.110 and d greater than 1.210 Gm. per milliliter was the same as that in HDL3, suggesting identical Apo A-I catabolism in each density class. The liver and kidney absorbed more radioactivity than did the spleen, heart, lung, and intestine. In subcellular fractions of liver, radioactivity was predominantly recovered in the light mitochondrial fraction. There was a statistically significant correlation between the acid phosphatase relative specific activity and the relative specific radioactivity in each subcellular fraction examined at several time intervals after the injection of 125I-Apo A-I. Direct organelle isolation and demonstration of labeled apoplipoprotein uptake indicate that liver lysosomes may play an important role in the catabolism of Apo A-I, as may those of the kidney.
血浆脂蛋白和载脂蛋白的分解代谢部位尚未明确。我们已纯化出一种主要的载脂蛋白,并探究了其分解代谢速率及分解代谢部位。通过对犬高密度脂蛋白(HDL)亚组分HDL3进行柱层析来纯化载脂蛋白(Apo)A - 1,HDL3经过完全脱脂处理;纯化后的Apo A - 1分子量为28,000,与抗Apo A - 1或抗Apo HDL3血清反应时仅出现一条沉淀线。接着对Apo A - I进行碘化,测定其分解代谢速率,并研究参与分解代谢的肝脏的各个器官及亚细胞部位。125I - Apo A - I在HDL3中的半衰期为3.33±0.08天,在血浆中为3.52±0.17天。密度小于1.110和大于1.210克/毫升的密度组分中回收的放射性消失曲线与HDL3中的相同,表明每个密度类别中Apo A - I的分解代谢相同。肝脏和肾脏比脾脏、心脏、肺和肠道吸收的放射性更多。在肝脏的亚细胞组分中,放射性主要在轻线粒体组分中回收。在注射125I - Apo A - I后的几个时间间隔,所检测的每个亚细胞组分中酸性磷酸酶相对比活性与相对比放射性之间存在统计学上的显著相关性。直接细胞器分离及标记载脂蛋白摄取的证明表明,肝脏溶酶体可能在Apo A - I的分解代谢中起重要作用,肾脏的溶酶体可能也是如此。