Pancreatic β-Cell TRAPδ Deficiency Reduces Insulin Production but Improves Insulin Sensitivity.

Diabetes Pub Date : 2024-11-01 DOI:10.2337/db23-0984
Jiyun Guo, Yanshu Yang, Ning Xu, Xin Li, Ying Yang, Wenli Feng, Yuanyuan Ye, Xiaoxi Xu, Jingqiu Cui, Ming Liu, Yumeng Huang
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Abstract

The translocon-associated protein-δ (TRAPδ) plays a role in insulin biosynthesis within pancreatic β-cells. However, its pathophysiological significance in maintaining islet β-cell function and glucose homeostasis remains unclear. In this study, we generated a mouse model featuring pancreatic β-cell-specific deletion of TRAPδ (TRAPδ βKO). Our findings revealed that TRAPδ βKO resulted in decreased circulating insulin levels in mice fed either a normal chow diet or a high-fat diet. Multiple independent experiments established that although TRAPδ deletion reduced insulin content in the islets, it had no discernible effect on insulin gene expression, the insulin to proinsulin ratio, or the expression and glycosylation of the prohormone enzymes involved in proinsulin processing. These data suggest that TRAPδ does not play a pivotal role in the transcription of the insulin gene or proinsulin processing. However, untranslocated preproinsulin levels were significantly increased when islets were treated with a proteasomal inhibitor, suggesting that TRAPδ deficiency may hinder preproinsulin translocation, resulting in a rapid degradation of untranslocated preproinsulin that accounts for the decreased insulin production. Remarkably, despite the moderate decrease in circulating insulin levels in TRAPδ βKO mice, their glucose levels remained unaffected, indicating the presence of compensatory mechanisms that help maintain glucose homeostasis. Insulin tolerance tests further revealed improved insulin sensitivity, accompanied by upregulation of phosphorylated AKT in the peripheral tissues of TRAPδ βKO mice. Collectively, these data highlight the important role of TRAPδ in insulin biosynthesis and β-cell function. The moderate reduction in circulating insulin appears to promote insulin sensitivity in insulin target tissues.

Article highlights:

胰腺β细胞TRAPδ缺乏会减少胰岛素分泌,但会提高胰岛素敏感性。
易位相关蛋白-δ(TRAPδ)在胰岛β细胞内的胰岛素生物合成过程中发挥作用。然而,它在维持胰岛β细胞功能和葡萄糖稳态方面的病理生理学意义仍不清楚。在这项研究中,我们建立了一种特异性缺失 TRAPδ 的胰岛β细胞小鼠模型(TRAPδ βKO)。我们的研究结果表明,TRAPδ βKO 会导致以正常饲料或高脂饲料喂养的小鼠体内循环胰岛素水平下降。多个独立实验证实,虽然 TRAPδ 基因缺失会降低胰岛中的胰岛素含量,但对胰岛素基因表达、胰岛素/胰岛素比率或参与胰岛素前体加工的前体酶的表达和糖基化没有明显影响。这些数据表明,TRAPδ在胰岛素基因转录或原胰岛素加工过程中并不发挥关键作用。然而,用蛋白酶体抑制剂处理胰岛时,未转运的前胰岛素水平显著增加,这表明 TRAPδ 的缺乏可能会阻碍前胰岛素的转运,导致未转运的前胰岛素快速降解,从而导致胰岛素产量下降。值得注意的是,尽管 TRAPδ βKO 小鼠的循环胰岛素水平适度下降,但它们的血糖水平却未受影响,这表明存在有助于维持血糖平衡的代偿机制。胰岛素耐量试验进一步显示,TRAPδ βKO 小鼠外周组织中磷酸化 AKT 上调,胰岛素敏感性得到改善。总之,这些数据凸显了 TRAPδ 在胰岛素生物合成和 β 细胞功能中的重要作用。循环胰岛素的适度减少似乎促进了胰岛素靶组织对胰岛素的敏感性。
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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