The Longitudinal Effect of Diabetes-Associated Variation in TCF7L2 on Islet Function in Humans.

Diabetes Pub Date : 2024-09-01 DOI:10.2337/db24-0192
Maya Zeini, Marcello C Laurenti, Aoife M Egan, Kalpana Muthusamy, Anisha Ramar, Emma Vella, Kent R Bailey, Claudio Cobelli, Chiara Dalla Man, Adrian Vella
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Abstract

The T allele at rs7903146 in TCF7L2 increases the rate of conversion from prediabetes to type 2 diabetes. This has been associated with impaired β-cell function and with defective suppression of α-cell secretion by glucose. However, the temporal relationship of these abnormalities is uncertain. To study the longitudinal changes in islet function, we recruited 128 subjects, with 67 homozygous for the diabetes-associated allele (TT) at rs7903146 and 61 homozygous for the protective allele. Subjects were studied on two occasions, 3 years apart, using an oral 75-g glucose challenge. The oral minimal model was used to quantitate β-cell function; the glucagon secretion rate was estimated from deconvolution of glucagon concentrations. Glucose tolerance worsened in subjects with the TT genotype. This was accompanied by impaired postchallenge glucagon suppression but appropriate β-cell responsivity to rising glucose concentrations. These data suggest that α-cell abnormalities associated with the TT genotype (rs7903146) occur early and may precede β-cell dysfunction in people as they develop glucose intolerance and type 2 diabetes.

Article highlights:

与糖尿病相关的 TCF7L2 变异对人类胰岛功能的纵向影响。
TCF7L2 中 rs7903146 的 T 等位基因会增加糖尿病前期向 2 型糖尿病的转化率。这与β细胞功能受损以及葡萄糖对α细胞分泌的抑制缺陷有关。然而,这些异常的时间关系尚不确定。为了研究胰岛功能的纵向变化,我们招募了 128 名受试者,其中 67 人为 rs7903146 的糖尿病相关等位基因 (TT),61 人为保护性等位基因 (CC)。受试者在相隔 3 年的时间里接受了两次口服 75 克葡萄糖挑战的研究。口服最小模型用于量化 β 细胞功能;胰高血糖素分泌率通过胰高血糖素浓度的解卷积来估算。TT 基因型患者的葡萄糖耐量恶化。这伴随着挑战后胰高血糖素抑制功能受损,但β细胞对葡萄糖浓度升高的反应性适当。这些数据表明,与 TT 基因型(rs7903146)相关的 α 细胞异常发生较早,可能先于 β 细胞功能障碍而出现葡萄糖耐受不良和 2 型糖尿病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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