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载脂蛋白 L1、TM6SF2、GCKR 和 LYPLAL1 中的非酒精性脂肪性肝病风险等位基因显示出不同的代谢效应。

NAFLD risk alleles in PNPLA3, TM6SF2, GCKR and LYPLAL1 show divergent metabolic effects.

机构信息

Center for Life Course Health Research, Faculty of Medicine, University of Oulu, Oulu, Finland.

Biocenter Oulu, University of Oulu, Oulu, Finland.

出版信息

Hum Mol Genet. 2018 Jun 15;27(12):2214-2223. doi: 10.1093/hmg/ddy124.

Abstract

Fatty liver has been associated with unfavourable metabolic changes in circulation. To provide insights in fatty liver-related metabolic deviations, we compared metabolic association profile of fatty liver versus metabolic association profiles of genotypes increasing the risk of non-alcoholic fatty liver disease (NAFLD). The cross-sectional associations of ultrasound-ascertained fatty liver with 123 metabolic measures were determined in 1810 (Nfatty liver = 338) individuals aged 34-49 years from The Cardiovascular Risk in Young Finns Study. The association profiles of NAFLD-risk alleles in PNPLA3, TM6SF2, GCKR, and LYPLAL1 with the corresponding metabolic measures were obtained from a publicly available metabolomics GWAS including up to 24 925 Europeans. The risk alleles showed different metabolic effects: PNPLA3 rs738409-G, the strongest genetic NAFLD risk factor, did not associate with metabolic changes. Metabolic effects of GCKR rs1260326-T were comparable in many respects to the fatty liver associations. Metabolic effects of LYPLAL1 rs12137855-C were similar, but statistically less robust, to the effects of GCKR rs1260326-T. TM6SF2 rs58542926-T displayed opposite metabolic effects when compared with the fatty liver associations. The metabolic effects of the risk alleles highlight heterogeneity of the molecular pathways leading to fatty liver and suggest that the fatty liver-related changes in the circulating lipids and metabolites may vary depending on the underlying pathophysiological mechanism. Despite the robust cross-sectional associations on population level, the present results showing neutral or cardioprotective metabolic effects for some of the NAFLD risk alleles advocate that hepatic lipid accumulation by itself may not increase the level of circulating lipids or other metabolites.

摘要

脂肪肝与循环中不利的代谢变化有关。为了深入了解与脂肪肝相关的代谢偏差,我们比较了脂肪肝与增加非酒精性脂肪性肝病(NAFLD)风险的基因型的代谢关联图谱。在心血管风险在年轻芬兰人中的研究中,在 1810 名年龄在 34-49 岁的个体中,通过超声确定的脂肪肝与 123 种代谢指标的横断面关联。从一个公开的代谢组学 GWAS 中获得了 PNPLA3、TM6SF2、GCKR 和 LYPLAL1 中与相应代谢指标相关的 NAFLD 风险等位基因的关联图谱,该 GWAS 包括多达 24925 名欧洲人。风险等位基因显示出不同的代谢效应:最强的遗传 NAFLD 风险因素 PNPLA3 rs738409-G 与代谢变化无关。GCKR rs1260326-T 的代谢效应在许多方面与脂肪肝关联相似。LYPLAL1 rs12137855-C 的代谢效应与 GCKR rs1260326-T 的效应相似,但统计学上不那么稳健。与脂肪肝关联相比,TM6SF2 rs58542926-T 显示出相反的代谢效应。风险等位基因的代谢效应突出了导致脂肪肝的分子途径的异质性,并表明循环脂质和代谢物中与脂肪肝相关的变化可能因潜在的病理生理机制而异。尽管在人群水平上具有稳健的横断面关联,但本研究结果显示,一些 NAFLD 风险等位基因具有中性或心脏保护的代谢效应,这表明肝脏脂质堆积本身可能不会增加循环脂质或其他代谢物的水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6871/5985737/0b42bf17ecbf/ddy124f1.jpg

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