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SLC7A10 表达异常的脂肪细胞促进与胰岛素抵抗相关的脂质储存以及支链氨基酸代谢改变。

Impaired Adipocyte SLC7A10 Promotes Lipid Storage in Association With Insulin Resistance and Altered BCAA Metabolism.

机构信息

Mohn Nutrition Research Laboratory, Department of Clinical Science, University of Bergen, N-5021 Bergen, Norway.

Hormone Laboratory, Department of Medical Biochemistry and Pharmacology, Haukeland University Hospital, N-5021 Bergen, Norway.

出版信息

J Clin Endocrinol Metab. 2023 Aug 18;108(9):2217-2229. doi: 10.1210/clinem/dgad148.

Abstract

CONTEXT

The neutral amino acid transporter SLC7A10/ASC-1 is an adipocyte-expressed gene with reduced expression in insulin resistance and obesity. Inhibition of SLC7A10 in adipocytes was shown to increase lipid accumulation despite decreasing insulin-stimulated uptake of glucose, a key substrate for de novo lipogenesis. These data imply that alternative lipogenic substrates to glucose fuel continued lipid accumulation during insulin resistance in obesity.

OBJECTIVE

We examined whether increased lipid accumulation during insulin resistance in adipocytes may involve alter flux of lipogenic amino acids dependent on SLC7A10 expression and activity, and whether this is reflected by extracellular and circulating concentrations of marker metabolites.

METHODS

In adipocyte cultures with impaired SLC7A10, we performed RNA sequencing and relevant functional assays. By targeted metabolite analyses (GC-MS/MS), flux of all amino acids and selected metabolites were measured in human and mouse adipose cultures. Additionally, SLC7A10 mRNA levels in human subcutaneous adipose tissue (SAT) were correlated to candidate metabolites and adiposity phenotypes in 2 independent cohorts.

RESULTS

SLC7A10 impairment altered expression of genes related to metabolic processes, including branched-chain amino acid (BCAA) catabolism, lipogenesis, and glyceroneogenesis. In 3T3-L1 adipocytes, SLC7A10 inhibition increased fatty acid uptake and cellular content of glycerol and cholesterol. SLC7A10 impairment in SAT cultures altered uptake of aspartate and glutamate, and increased net uptake of BCAAs, while increasing the net release of the valine catabolite 3- hydroxyisobutyrate (3-HIB). In human cohorts, SLC7A10 mRNA correlated inversely with total fat mass, circulating triacylglycerols, BCAAs, and 3-HIB.

CONCLUSION

Reduced SLC7A10 activity strongly affects flux of BCAAs in adipocytes, which may fuel continued lipogenesis during insulin resistance, and be reflected in increased circulating levels of the valine-derived catabolite 3-HIB.

摘要

背景

中性氨基酸转运蛋白 SLC7A10/ASC-1 是一种脂肪细胞表达的基因,在胰岛素抵抗和肥胖症中表达减少。研究表明,抑制脂肪细胞中的 SLC7A10 尽管会减少胰岛素刺激的葡萄糖摄取,这是从头合成脂肪的关键底物,但会增加脂质积累。这些数据表明,在肥胖症的胰岛素抵抗期间,替代葡萄糖的生脂底物会继续促进脂质积累。

目的

我们研究了在脂肪细胞的胰岛素抵抗期间,脂质积累的增加是否可能涉及依赖 SLC7A10 表达和活性的生脂氨基酸通量的改变,以及这种改变是否反映在细胞外和循环中的标记代谢物浓度中。

方法

在 SLC7A10 受损的脂肪细胞培养物中,我们进行了 RNA 测序和相关的功能测定。通过靶向代谢物分析(GC-MS/MS),测量了人脂肪和鼠脂肪培养物中所有氨基酸和选定代谢物的通量。此外,在 2 个独立队列中,将人皮下脂肪组织(SAT)中的 SLC7A10 mRNA 水平与候选代谢物和肥胖表型相关联。

结果

SLC7A10 受损改变了与代谢过程相关的基因表达,包括支链氨基酸(BCAA)分解代谢、脂肪生成和甘油酮生成。在 3T3-L1 脂肪细胞中,SLC7A10 抑制增加了脂肪酸摄取和甘油和胆固醇的细胞含量。SAT 培养物中的 SLC7A10 受损改变了天冬氨酸和谷氨酸的摄取,并增加了支链氨基酸的净摄取,同时增加了支链氨基酸分解产物 3-羟基异丁酸(3-HIB)的净释放。在人类队列中,SLC7A10 mRNA 与总脂肪量、循环三酰甘油、BCAA 和 3-HIB 呈负相关。

结论

SLC7A10 活性的降低强烈影响脂肪细胞中 BCAA 的通量,这可能在胰岛素抵抗期间继续促进脂肪生成,并反映在循环中增加的支链氨基酸衍生的代谢产物 3-HIB 水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e559/10438883/a072858fa65c/dgad148f1.jpg

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