首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Delayed catabolism of high density lipoprotein apolipoproteins A-I and A-II in human cholesteryl ester transfer protein deficiency.
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Delayed catabolism of high density lipoprotein apolipoproteins A-I and A-II in human cholesteryl ester transfer protein deficiency.

机译:人胆固醇酯转移蛋白缺乏症中高密度脂蛋白载脂蛋白A-I和A-II的延迟分解代谢。

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摘要

Deficiency of the cholesteryl ester transfer protein (CETP) in humans is characterized by markedly elevated plasma concentrations of HDL cholesterol and apoA-I. To assess the metabolism of HDL apolipoproteins in CETP deficiency, in vivo apolipoprotein kinetic studies were performed using endogenous and exogenous labeling techniques in two unrelated homozygotes with CETP deficiency, one heterozygote, and four control subjects. All study subjects were administered 13C6-labeled phenylalanine by primed constant infusion for up to 16 h. The fractional synthetic rates (FSRs) of apoA-I in two homozygotes with CETP deficiency (0.135, 0.134/d) were found to be significantly lower than those in controls (0.196 +/- 0.041/d, P < 0.01). Delayed apoA-I catabolism was confirmed by an exogenous radiotracer study in one CETP-deficient homozygote, in whom the fractional catabolic rate of 125I-apoA-I was 0.139/d (normal 0.216 +/- 0.018/d). The FSRs of apoA-II were also significantly lower in the homozygous CETP-deficient subjects (0.104, 0.112/d) than in the controls (0.170 +/- 0.023/d, P < 0.01). The production rates of apoA-I and apoA-II were normal in both homozygous CETP-deficient subjects. The turnover of apoA-I and apoA-II was substantially slower in both HDL2 and HDL3 in the CETP-deficient homozygotes than in controls. The kinetics of apoA-I and apoA-II in the CETP-deficient heterozygote were not different from those in controls. These data establish that homozygous CETP deficiency causes markedly delayed catabolism of apoA-I and apoA-II without affecting the production rates of these apolipoproteins.
机译:人体内胆固醇酯转移蛋白(CETP)的缺乏症的特征在于,HDL胆固醇和apoA-I的血浆浓度显着升高。为了评估CETP缺乏症中HDL载脂蛋白的代谢,使用内源性和外源性标记技术对两名CETP缺乏症无关纯合子,一名杂合子和四名对照对象进行了体内载脂蛋白动力学研究。所有研究对象均通过初次持续输注长达13小时,以13C6标记的苯丙氨酸给药。发现两个患有CETP缺陷的纯合子(0.135,0.134 / d)的apoA-I的分数合成速率(FSRs)明显低于对照(0.196 +/- 0.041 / d,P <0.01)。一项CETP缺陷型纯合子的外源放射性示踪研究证实了apoA-I的分解代谢延迟,其中125I-apoA-I的分解代谢率为0.139 / d(正常值为0.216 +/- 0.018 / d)。在纯合CETP缺陷受试者(0.104,0.112 / d)中,apoA-II的FSR也显着低于对照组(0.170 +/- 0.023 / d,P <0.01)。在纯合CETP缺陷的受试者中,apoA-I和apoA-II的产生率均正常。在CETP缺失的纯合子中,HDL2和HDL3的apoA-I和apoA-II的周转比对照组的要慢得多。 CETP缺陷杂合子中apoA-I和apoA-II的动力学与对照组无差异。这些数据证明纯合的CETP缺乏会导致apoA-I和apoA-II的分解代谢明显延迟,而不会影响这些载脂蛋白的生产率。

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