Max Rubner-Institute, Federal Research Institute of Nutrition and Food, Department of Physiology and Biochemistry of Nutrition, Kiel, Germany.
Horm Metab Res. 2010 Nov;42(12):854-9. doi: 10.1055/s-0030-1267186. Epub 2010 Oct 13.
The fatty acid transport protein 5 (FATP5) is exclusively expressed in the liver and is involved in hepatic lipid and bile metabolism. We investigated whether a variation in the FATP5 promoter (rs56225452) is associated with hepatic steatosis and further features of the metabolic syndrome. A total of 716 male subjects from the Metabolic Intervention Cohort Kiel (MICK) and 103 male subjects with histologically proved nonalcoholic fatty liver disease (NAFLD) were genotyped for this FATP5 polymorphism rs56225452 and phenotyped for features of the metabolic syndrome. In the MICK cohort, ALT activities, postprandial insulin, and triglyceride concentrations were higher in subjects carrying the rare A-allele compared to GG homozygotes. Accordingly, the insulin sensitivity index determined after a mixed meal and standardized glucose load was lower in A-allele carriers. NAFLD cases carrying allele A were presented with also higher ALT activities. In NAFLD subjects, the association of BMI with the degree of steatosis and glucose concentration differed across FATP5 promoter polymorphism. The FATP5 promoter polymorphism rs56225452 is associated with higher ALT activity, insulin resistance, and dyslipidemia in the general population. The impact of the BMI on the severity of steatosis in NAFLD cases seems to depend on the FATP5 polymorphism.
脂肪酸转运蛋白 5(FATP5)仅在肝脏中表达,参与肝脏脂质和胆汁代谢。我们研究了 FATP5 启动子(rs56225452)的变异是否与肝脂肪变性和代谢综合征的其他特征有关。总共对来自代谢干预队列基尔(MICK)的 716 名男性和 103 名经组织学证实的非酒精性脂肪性肝病(NAFLD)男性进行了这种 FATP5 多态性 rs56225452 的基因分型,并对代谢综合征的特征进行了表型分析。在 MICK 队列中,与 GG 纯合子相比,携带罕见 A-等位基因的个体的 ALT 活性、餐后胰岛素和甘油三酯浓度更高。因此,在混合餐和标准化葡萄糖负荷后确定的胰岛素敏感性指数在 A-等位基因携带者中较低。携带等位基因 A 的 NAFLD 病例的 ALT 活性也更高。在 NAFLD 患者中,BMI 与脂肪变性程度和葡萄糖浓度的关联因 FATP5 启动子多态性而异。FATP5 启动子多态性 rs56225452 与普通人群中更高的 ALT 活性、胰岛素抵抗和血脂异常相关。BMI 对 NAFLD 病例中脂肪变性严重程度的影响似乎取决于 FATP5 多态性。