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与基因相关的餐后甘油三酯代谢紊乱——亚洲印第安人患糖尿病风险的新机制。

gene associated postprandial triglyceride dysmetabolism- a novel mechanism for diabetes risk among Asian Indians.

机构信息

University College of Medical Sciences, University of Delhi, Delhi, India.

出版信息

Front Endocrinol (Lausanne). 2022 Oct 3;13:973718. doi: 10.3389/fendo.2022.973718. eCollection 2022.

Abstract

AIM

gene is believed to increase the risk of T2DM by its effects on insulin secretion. However, the exact mechanism of this enhanced risk is not clearly known. While gene has been shown to affect lipid metabolism, these effects have remained largely unexplored in the context of diabetes risk.

METHODS

Postprandial lipid responses to a standardized fat challenge test were performed in 620 Asian Indian subjects (310 with NGT and 310 with T2DM/prediabetes) and compared between the risk and wild genotypes of the rs7903146 gene. In 30 subjects scheduled to undergo abdominal surgery (10 each with NGT, Prediabetes and T2DM), adipocyte gene expression was also performed by real time qPCR and confirmed by protein expression in western blot.

RESULTS

T allele of rs7903146 gene was confirmed as the risk allele for (OR=1.8(1.2-2.74), p=0.005). TT+CT genotypes of rs7903146 gene showed significantly higher 4hrTg (p<0.01), TgAUC (p<0.01), peakTg (p<0.01) as well as higher postprandial plasma glucose (p=.006) levels and HOMA-IR (p=0.03) and significantly lower adiponectin levels (p=0.02) as compared to CC genotype. The expression of gene in VAT was 11-fold higher in prediabetes group as compared to NGT (P<0.01) and 5.7-fold higher in T2DM group as compared to NGT group(P=0.003) and was significantly associated with PPTg and glucose levels.

CONCLUSION

There is significant PPTg dysmetabolism associated with the risk allele of rs7903146 polymorphism as well as adipocyte expression of gene. Significant upregulation of TCF7L2 gene expression in VAT that correlates with PPTg and glycaemia is also seen in Asian Indians with glucose intolerance. Modulation of PPTg metabolism by gene and the resultant may be a novel mechanism that contributes to its diabetes risk in them.

摘要

目的

该基因被认为通过影响胰岛素分泌来增加 T2DM 的风险。然而,这种风险增加的确切机制尚不清楚。虽然 基因已被证明会影响脂代谢,但这些影响在糖尿病风险背景下仍在很大程度上未被探索。

方法

对 620 名亚洲印度受试者(310 名 NGT 和 310 名 T2DM/糖尿病前期)进行标准化脂肪挑战测试后的餐后脂质反应,并比较 rs7903146 基因的风险和野生基因型之间的差异。在 30 名计划接受腹部手术的受试者(每组 10 名,分别患有 NGT、糖尿病前期和 T2DM)中,还通过实时 qPCR 进行了脂肪细胞 基因表达,并通过 Western blot 进行了蛋白表达验证。

结果

rs7903146 基因的 T 等位基因被确认为 (OR=1.8(1.2-2.74),p=0.005)的风险等位基因。rs7903146 基因的 TT+CT 基因型显示出显著更高的 4hrTg(p<0.01)、TgAUC(p<0.01)、峰值 Tg(p<0.01)以及更高的餐后血糖(p=.006)和 HOMA-IR(p=0.03)水平,以及更低的脂联素水平(p=0.02)。与 NGT 相比,糖尿病前期组 VAT 中的 基因表达增加了 11 倍(P<0.01),与 NGT 相比,T2DM 组增加了 5.7 倍(P=0.003),并且与 PPTg 和葡萄糖水平显著相关。

结论

rs7903146 多态性的风险等位基因与 PPTg 代谢异常以及脂肪细胞 基因表达有关。在糖耐量受损的亚洲印度人中,还观察到 VAT 中 TCF7L2 基因表达的显著上调,与 PPTg 和血糖相关。 基因对 PPTg 代谢的调节及其导致的 可能是其在这些人群中增加糖尿病风险的一种新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed75/9573951/c45fbfcee5a4/fendo-13-973718-g001.jpg

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