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Id1 expression in kidney endothelial cells protects against diabetes‐induced microvascular injury

机译:肾内皮细胞中的ID1表达可防止糖尿病诱导的微血管损伤

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摘要

The inhibitor of differentiation (Id) transcription regulators, which are induced in response to oxidative stress, promote cell proliferation and inhibit senescence. Inhibitor of differentiation 1 (Id1) expression is limited to endothelial cells (EC) in the normal mouse kidney and is required for a normal response to injury. Endothelial dysfunction leads to the development of diabetic nephropathy, and so, we hypothesized that endothelial Id1 may help protect against hyperglycemia‐induced microvascular injury and nephropathy. Here, we tested this hypothesis by using streptozotocin to induce diabetes in Id1 knockout (KO) mice and WT B6;129 littermates and examining the mice at 3 months. Expression of Id1 was observed to be increased 15‐fold in WT kidney EC, and Id1 KO mice exhibited increased mesangial and myofibroblast proliferation, matrix deposition, and albuminuria compared with WT mice. Electron microscopy demonstrated peritubular capillary EC injury and lumen narrowing, and fluorescence microangiography showed a 45% reduction in capillary perfusion area with no reduction in CD31‐stained areas in Id1 KO mice. Microarray analysis of EC isolated from WT and KO control and diabetic mice demonstrated activation of senescence pathways in KO cells. Kidneys from KO diabetic mice showed increased histological expression of senescence markers. In addition, premature senescence in cultured KO EC was also seen in response to oxidative stress. In conclusion, endothelial Id1 upregulation with hyperglycemia protects against microvascular injury and senescence and subsequent nephropathy.
机译:响应于氧化应激诱导的分化(ID)转录调节剂的抑制剂促进细胞增殖并抑制衰老。分化1(ID1)表达的抑制剂限于正常小鼠肾中的内皮细胞(EC),并且需要正常损伤的正常反应。内皮功能障碍导致糖尿病肾病的发展,因此,我们假设内皮ID1可能有助于防止高血糖诱导的微血管损伤和肾病。在这里,我们通过使用链脲佐菌素在ID1敲除(KO)小鼠和WT B6中诱导糖尿病来测试这一假设; 129窝质液和在3个月内检查小鼠。观察到ID1的表达在WT肾脏EC中增加了15倍,ID1 KO小鼠与WT小鼠相比表现出增加的Mesangial和Myofibrobrbr增殖,基质沉积和白蛋白尿。电子显微镜显示垂直毛细管EC损伤和腔内缩小,荧光微观造影显示毛细血管灌注面积降低45%,在ID1 KO小鼠中没有降低CD31染色区域。来自WT和KO对照和糖尿病小鼠分离的EC的微阵列分析证明了KO细胞中衰老途径的激活。 KO糖尿病小鼠的肾脏显示出衰老标记的组织学表达增加。此外,还响应于氧化应激,还可以看到培养的KO EC中的过早衰老。总之,具有高血糖血症的内皮ID1上调,可防止微血管损伤和衰老和随后的肾病。

著录项

  • 期刊名称 FEBS Open Bio
  • 作者

    Shree Sharma; Matthew Plotkin;

  • 作者单位
  • 年(卷),期 2020(10),8
  • 年度 2020
  • 页码 1447–1462
  • 总页数 16
  • 原文格式 PDF
  • 正文语种
  • 中图分类 生物学;
  • 关键词

    机译:糖尿病;内皮细胞;ID1;微血管损伤;衰老;

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