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首页> 外文期刊>American Journal of Physiology >Dysfunctional mitochondrial bioenergetics and oxidative stress in Akita~(+/Ins2)-derived beta-cells
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Dysfunctional mitochondrial bioenergetics and oxidative stress in Akita~(+/Ins2)-derived beta-cells

机译:秋田〜(+ / Ins2)衍生的β细胞中的线粒体生物能功能失调和氧化应激。

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摘要

Insulin release from pancreatic p-cells plays a critical role in blood glucose homeostasis, and beta-cell dysfunction leads to the development of diabetes mellitus. In cases of monogenic type 1 diabetes mellitus (T1DM) that involve mutations in the insulin gene, we hypothesized that misfolding of insulin could result in endoplasmic reticulum (ER) stress, oxidant production, and mitochondrial damage. To address this, we used the Akita~(+/INS2) T1DM model in which misfolding of the insulin 2 gene leads to ER stress-mediated beta-cell death and thapsigargin to induce ER stress in two different p-cell lines and in intact mouse islets. Using transformed pancreatic beta-cell lines generated from wild-type Ins2~(+/+) (WT) and Akita~(+/INS2) mice, we evaluated cellular bioenergetics, oxidative stress, mitochondrial protein levels, and autophagic flux to determine whether changes in these processes contribute to beta-cell dysfunction. In addition, we induced ER stress pharmacologically using thapsigargin in WT beta-cells, INS-1 cells, and intact mouse islets to examine the effects of ER stress on mitochondrial function. Our data reveal that Akita~(+/INS2)-derived P-cells have increased mitochondrial dysfunction, oxidant production, mtDNA damage, and alterations in mitochondrial protein levels that are not corrected by au-tophagy. Together, these findings suggest that deterioration in mitochondrial function due to an oxidative environment and ER stress contributes to beta-cell dysfunction and could contribute to T1DM in which mutations in insulin occur.
机译:胰腺p细胞释放的胰岛素在血糖动态平衡中起关键作用,而β细胞功能障碍导致糖尿病的发展。在涉及胰岛素基因突变的单基因1型糖尿病(T1DM)病例中,我们假设胰岛素的错误折叠可能导致内质网(ER)应激,氧化剂产生和线粒体损伤。为了解决这个问题,我们使用了Akita〜(+ / INS2)T1DM模型,其中胰岛素2基因的错误折叠导致ER应激介导的β细胞死亡,毒胡萝卜素在两种不同的p细胞系中完整地诱导ER应激小鼠胰岛。使用野生型Ins2〜(+ / +)(WT)和Akita〜(+ / INS2)小鼠产生的转化的胰岛β细胞系,我们评估了细胞的生物能,氧化应激,线粒体蛋白水平和自噬通量,以确定是否这些过程的变化会导致β细胞功能障碍。此外,我们在药理学上使用thapsigargin在WTβ细胞,INS-1细胞和完整的小鼠胰岛中诱导了ER应激,以检查ER应激对线粒体功能的影响。我们的数据表明,秋田〜(+ / INS2)衍生的P细胞增加了线粒体功能障碍,氧化剂产生,mtDNA损伤和线粒体蛋白水平的改变,而这种现象不能通过自噬纠正。总之,这些发现表明,由于氧化环境和内质网应激引起的线粒体功能恶化导致β细胞功能障碍,并可能导致T1DM发生胰岛素突变。

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