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首页> 外文期刊>American Journal of Physiology >Limited role for SREBP-1c in defective glucose-induced insulin secretion from Zucker diabetic fatty rat islets: a functional and gene profiling analysis.
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Limited role for SREBP-1c in defective glucose-induced insulin secretion from Zucker diabetic fatty rat islets: a functional and gene profiling analysis.

机译:SREBP-1c在Zucker糖尿病性脂肪大鼠胰岛中由葡萄糖诱导的胰岛素分泌缺陷中的作用有限:功能和基因谱分析。

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Accumulation of intracellular lipid may contribute to defective insulin secretion in type 2 diabetes. Although Zucker diabetic fatty (ZDF; fa/fa) rat islets are fat-laden and overexpress the lipogenic master gene, sterol regulatory element binding protein 1c (SREBP-1c), the contribution of SREBP-1c to the secretory defects observed in this model remains unclear. Here we compare the gene expression profile of lean control (fa/+) and ZDF rat islets in the absence or presence of dominant-negative SREBP-1c (SREBP-1c DN). ZDF islets displayed elevated basal insulin secretion at 3 mmol/l glucose but a severely depressed response to 17 mmol/l glucose. While SREBP-1c DN reduced basal insulin secretion from ZDF islets, glucose-stimulated insulin secretion was not improved. Of 57 genes differentially regulated in ZDF islets and implicated in glucose metabolism, vesicle trafficking, ion fluxes, and/or exocytosis, 21 were upregulated and 5 were suppressed by SREBP-1c DN. Genes underrepresented in ZDF islets were either unaffected (Glut-2, Kir6.2, Rab3), stimulated (voltage-dependent Ca(2+) channel subunit alpha1D, CPT2, SUR2, rab9, syt13), or inhibited (syntaxin 7, secretogranin-2) by SREBP-1c inhibition. Correspondingly, SREBP-1c DN largely corrected decreases in the expression of the transcription factors Pdx-1 and MafA but did not affect the abnormalities in Pax6, Arx, hepatic nuclear factor-1alpha (HNF1alpha), HNF3beta/Forkhead box-a2 (Foxa2), inducible cyclic AMP early repressor (ICER), or transcription factor 7-like 2 (TCF7L2) expression observed in ZDF islets. We conclude that upregulation of SREBP-1c and mild increases in triglyceride content do not explain defective glucose-stimulated insulin secretion from ZDF rats. However, overexpression of SREBP-1c may contribute to enhanced basal insulin secretion in this model.
机译:细胞内脂质的积累可能导致2型糖尿病中胰岛素分泌缺陷。尽管Zucker糖尿病性脂肪(ZDF; fa / fa)大鼠胰岛富含脂肪并过表达脂肪生成主基因,固醇调节元件结合蛋白1c(SREBP-1c),但SREBP-1c对在此模型中观察到的分泌缺陷的贡献还不清楚。在这里,我们比较不存在或存在显性负性SREBP-1c(SREBP-1c DN)时,瘦肉对照(fa / +)和ZDF大鼠胰岛的基因表达谱。 ZDF胰岛在3 mmol / l葡萄糖下显示出较高的基础胰岛素分泌,但对17 mmol / l葡萄糖的反应却严重降低。尽管SREBP-1c DN减少了ZDF胰岛的基础胰岛素分泌,但葡萄糖刺激的胰岛素分泌却没有改善。在ZDF胰岛中差异调节的57个基因涉及葡萄糖代谢,囊泡运输,离子通量和/或胞吐作用,其中21个被SREBP-1c DN上调,其中5个被SREBP-1c DN抑制。 ZDF胰岛中代表性不足的基因不受影响(Glut-2,Kir6.2,Rab3),受刺激(电压依赖性Ca(2+)通道亚基alpha1D,CPT2,SUR2,rab9,syt13)或被抑制(syntaxin 7,secretogranin) -2)受到SREBP-1c的抑制。相应地,SREBP-1c DN在很大程度上纠正了转录因子Pdx-1和MafA的表达下降,但并未影响Pax6,Arx,肝核因子-1alpha(HNF1alpha),HNF3beta / Forkhead box-a2(Foxa2)的异常。 ,诱导型环状AMP早期阻遏物(ICER)或在ZDF胰岛中观察到的转录因子7样2(TCF7L2)表达。我们得出结论,SREBP-1c的上调和甘油三酯含量的轻度增加不能解释ZDF大鼠葡萄糖刺激的胰岛素分泌的缺陷。但是,在该模型中,SREBP-1c的过度表达可能有助于增强基础胰岛素的分泌。

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