首页> 外文期刊>Journal of nutrigenetics and nutrigenomics. >Interactions between dietary fat intake and FASN genetic variation influence LDL peak particle diameter.
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Interactions between dietary fat intake and FASN genetic variation influence LDL peak particle diameter.

机译:膳食脂肪摄入与FASN遗传变异之间的相互作用影响LDL峰粒径。

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BACKGROUND: The small, dense LDL phenotype is associated with an increased cardiovascular disease risk. A genome-wide scan performed on the Quebec Family Study (QFS) revealed a quantitative trait locus for LDL peak particle diameter (LDL-PPD) on the 17q21 region. A positional candidate gene - the fatty acid synthase gene (FASN) - encodes a key enzyme in the biogenesis of membrane lipids. FASN may play a role in the regulation of feeding and may be a potential therapeutic target for obesity and insulin resistance. METHODS: Analyses were performed on 592 subjects of the QFS. Dietary fat was estimated by a 3-day food record. LDL-PPD was measured by gradient gel electrophoresis on polyacrylamide gradient gels. RESULTS: Five single nucleotide polymorphisms were genotyped in FASN gene. FASN rs4246444 was associated with LDL-PPD, but only when fat intake was taken into account (p = 0.001). High and low lipid consumers were defined using a cutoff of 35% of dietary fat intake. Carriers of the variant allele showed smaller LDL-PPD only when consuming a high amount of fat. This association remained significant after adjustments for age, sex, body mass index and plasma triglyceride levels. CONCLUSION: The results suggest that dietary fat intake may modify the effect of the FASN rs4246444 polymorphism on LDL-PPD.
机译:背景:小型,致密的LDL表型与增加的心血管疾病风险相关。在魁北克族家庭研究(QFS)上进行的基因组扫描揭示了在17 Q21区上的LDL峰粒径(LDL-PPD)的定量性状轨迹。位置候选基因 - 脂肪酸合成酶基因(FASN) - 编码膜脂质生物发生的关键酶。 Fasn可能在喂养的调节中发挥作用,并且可能是肥胖和胰岛素抵抗的潜在治疗靶标。方法:对QFS的592个受试者进行分析。膳食脂肪估计为3天的食物记录。通过聚丙烯酰胺梯度凝胶上的梯度凝胶电泳测量LDL-PPD。结果:五种单一核苷酸多态性在FasN基因中进行基因分型。 FASN RS4246444与LDL-PPD相关,但仅当考虑脂肪摄入量时(P = 0.001)。使用35%的膳食脂肪摄入量定义高低脂消费者。变异等位基因的载体仅在消耗大量脂肪时显示出较小的LDL-PPD。这种协会在调整年龄,性别,体重指数和血浆甘油三酯水平调整后仍然显着。结论:结果表明,膳食脂肪摄入可能会改变FASN RS4246444多态性对LDL-PPD的影响。

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