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ATP结合盒转运体G5/G8缺乏通过影响多种代谢途径导致高甘油三酯血症。

ATP-binding cassette G5/G8 deficiency causes hypertriglyceridemia by affecting multiple metabolic pathways.

作者信息

Méndez-González Jesús, Julve Josep, Rotllan Noemí, Llaverias Gemma, Blanco-Vaca Francisco, Escolà-Gil Joan Carles

机构信息

IIB Sant Pau, Barcelona, Spain.

出版信息

Biochim Biophys Acta. 2011 Dec;1811(12):1186-93. doi: 10.1016/j.bbalip.2011.07.019. Epub 2011 Aug 10.

Abstract

Mutations in ABCG5 or ABCG8 transporters are responsible for sitosterolemia, an autosomal recessive disease characterized by the accumulation of plant sterols. The aim of this study was to investigate the effects of ABCG5 and ABCG8 deficiency on TG metabolism in mice. Experiments were carried out in wild-type (G5/G8+/+) mice, mice heterozygous for ABCG5 and ABCG8 deficiency (G5/G8+/-) and ABCG5/G8-deficient (G5/G8-/-) mice fed a chow diet. Plasma TG were 2.6 and 4.3-fold higher in fasted G5/G8+/- and G5/G8-/- mice, respectively, than in G5/G8+/+ mice. Postprandial TG were 5-fold higher in G5/G8-/- mice. TG metabolism studies indicate that: first, the fractional catabolic rate was significantly lower in G5/G8+/- (1.3-fold) and G5/G8-/- mice (1.5-fold) compared to G5/G8+/+ and postheparin plasma lipoprotein lipase activities were significantly lower in G5/G8+/- (1.8-fold) and G5/G8-/- mice (5.4-fold) than in G5/G8+/+. Second, liver TG secretion was 1.3-fold higher in G5/G8+/- and G5/G8-/- than in G5/G8+/+ mice and this was associated with an increase in liver LXR, FAS, ACAC and CD36 gene expression. Third, TG intestinal secretion, determined after an oral fat gavage of glycerol tri[9,10(n)-(3)H] oleate, was 5.8-fold higher in G5/G8-/- than in G5/G8+/+ mice. Also, the HOMA index was 2.6-fold higher in G5/G8-/- than in G5/G8+/+ mice, reflecting a degree of insulin resistance. In conclusion, ABCG5/G8 deficiency in mice fed a chow diet markedly raises TG levels by impairing TG catabolism and by increasing liver and intestinal TG secretion.

摘要

ABCG5或ABCG8转运蛋白的突变是导致谷甾醇血症的原因,这是一种常染色体隐性疾病,其特征是植物甾醇积累。本研究的目的是调查ABCG5和ABCG8缺乏对小鼠甘油三酯(TG)代谢的影响。实验在野生型(G5/G8+/+)小鼠、ABCG5和ABCG8缺乏的杂合子小鼠(G5/G8+/-)以及喂食普通饲料的ABCG5/G8缺陷(G5/G8-/-)小鼠中进行。禁食的G5/G8+/-和G5/G8-/-小鼠的血浆TG分别比G5/G8+/+小鼠高2.6倍和4.3倍。餐后G5/G8-/-小鼠的TG比G5/G8+/+小鼠高5倍。TG代谢研究表明:第一,与G5/G8+/+小鼠相比,G5/G8+/-(1.3倍)和G5/G8-/-小鼠(1.5倍)的分解代谢率显著降低,且G5/G8+/-(1.8倍)和G5/G8-/-小鼠(5.4倍)的肝素后血浆脂蛋白脂肪酶活性显著低于G5/G8+/+小鼠。第二,G5/G8+/-和G5/G8-/-小鼠的肝脏TG分泌比G5/G8+/+小鼠高1.3倍,这与肝脏肝X受体(LXR)、脂肪酸合成酶(FAS)、乙酰辅酶A羧化酶(ACAC)和CD36基因表达增加有关。第三,经口服甘油三[9,10(n)-(3)H]油酸酯进行脂肪灌胃后测定的TG肠道分泌,G5/G8-/-小鼠比G5/G8+/+小鼠高5.8倍。此外,G5/G8-/-小鼠的稳态模型评估(HOMA)指数比G5/G8+/+小鼠高2.6倍,反映出一定程度的胰岛素抵抗。总之,喂食普通饲料的小鼠中ABCG5/G8缺乏通过损害TG分解代谢以及增加肝脏和肠道TG分泌,显著提高了TG水平。

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