遗传模拟分析揭示了 ANGPTL3-ANGPTL8 复合物和 ANGPTL4 靶向的特定脂肪酶。

Genetic Mimicry Analysis Reveals the Specific Lipases Targeted by the ANGPTL3-ANGPTL8 Complex and ANGPTL4.

机构信息

Department of Public Health and Clinical Medicine, Section of Medicine, Umeå University, Umeå, Sweden.

Department of Public Health and Clinical Medicine, Section of Medicine, Umeå University, Umeå, Sweden.

出版信息

J Lipid Res. 2023 Jan;64(1):100313. doi: 10.1016/j.jlr.2022.100313. Epub 2022 Nov 11.

Abstract

Angiopoietin-like proteins, ANGPTL3, ANGPTL4, and ANGPTL8, are involved in regulating plasma lipids. In vitro and animal-based studies point to LPL and endothelial lipase (EL, LIPG) as key targets of ANGPTLs. To examine the ANGPTL mechanisms for plasma lipid modulation in humans, we pursued a genetic mimicry analysis of enhancing or suppressing variants in the LPL, LIPG, lipase C hepatic type (LIPC), ANGPTL3, ANGPTL4, and ANGPTL8 genes using data on 248 metabolic parameters derived from over 110,000 nonfasted individuals in the UK Biobank and validated in over 13,000 overnight fasted individuals from 11 other European populations. ANGPTL4 suppression was highly concordant with LPL enhancement but not HL or EL, suggesting ANGPTL4 impacts plasma metabolic parameters exclusively via LPL. The LPL-independent effects of ANGPTL3 suppression on plasma metabolic parameters showed a striking inverse resemblance with EL suppression, suggesting ANGPTL3 not only targets LPL but also targets EL. Investigation of the impact of the ANGPTL3-ANGPTL8 complex on plasma metabolite traits via the ANGPTL8 R59W substitution as an instrumental variable showed a much higher concordance between R59W and EL activity than between R59W and LPL activity, suggesting the R59W substitution more strongly affects EL inhibition than LPL inhibition. Meanwhile, when using a rare and deleterious protein-truncating ANGPTL8 variant as an instrumental variable, the ANGPTL3-ANGPTL8 complex was very LPL specific. In conclusion, our analysis provides strong human genetic evidence that the ANGPTL3-ANGPTL8 complex regulates plasma metabolic parameters, which is achieved by impacting LPL and EL. By contrast, ANGPTL4 influences plasma metabolic parameters exclusively via LPL.

摘要

血管生成素样蛋白 3、4 和 8(ANGPTL3、4 和 8)参与调节血浆脂质。体外和动物研究表明,脂蛋白脂肪酶(LPL)和内皮脂肪酶(EL,LIPG)是 ANGPTLs 的关键靶点。为了研究 ANGPTLs 调节人类血浆脂质的机制,我们利用英国生物库中超过 11 万名非禁食个体的 248 项代谢参数数据,对 LPL、LIPG、肝型脂肪酶 C(LIPC)、ANGPTL3、ANGPTL4 和 ANGPTL8 基因的增强或抑制变异进行了遗传模拟分析,并在来自 11 个欧洲其他人群的超过 13000 名禁食过夜个体中进行了验证。ANGPTL4 的抑制与 LPL 的增强高度一致,但与 HL 或 EL 无关,这表明 ANGPTL4 仅通过 LPL 影响血浆代谢参数。ANGPTL3 抑制对血浆代谢参数的独立影响与 EL 抑制的惊人相似,这表明 ANGPTL3 不仅针对 LPL,还针对 EL。通过 ANGPTL8 R59W 取代作为工具变量研究 ANGPTL3-ANGPTL8 复合物对血浆代谢物特征的影响表明,R59W 与 EL 活性之间的一致性远高于 R59W 与 LPL 活性之间的一致性,这表明 R59W 取代更强烈地影响 EL 抑制而不是 LPL 抑制。同时,当使用罕见且有害的蛋白截断 ANGPTL8 变体作为工具变量时,ANGPTL3-ANGPTL8 复合物非常特异性地针对 LPL。总之,我们的分析提供了强有力的人类遗传证据,表明 ANGPTL3-ANGPTL8 复合物通过影响 LPL 和 EL 来调节血浆代谢参数。相比之下,ANGPTL4 仅通过 LPL 影响血浆代谢参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/879a/9852701/8de568090e3b/gr1.jpg

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