首页> 美国卫生研究院文献>Diabetes >Cutaneous Epithelial to Mesenchymal Transition Activator ZEB1 Regulates Wound Angiogenesis and Closure in a Glycemic Status–Dependent Manner
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Cutaneous Epithelial to Mesenchymal Transition Activator ZEB1 Regulates Wound Angiogenesis and Closure in a Glycemic Status–Dependent Manner

机译:皮肤上皮对间充质过渡活化剂Zeb1以血糖地位依赖性方式调节伤口血管生成和闭合

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摘要

Epithelial to mesenchymal transition (EMT) and wound vascularization are two critical interrelated processes that enable cutaneous wound healing. Zinc finger E-box binding homeobox 1 (ZEB1), primarily studied in the context of tumor biology, is a potent EMT activator. ZEB1 is also known to contribute to endothelial cell survival as well as stimulate tumor angiogenesis. The role of ZEB1 in cutaneous wounds was assessed using Zeb1+/− mice, as Zeb1−/− mice are not viable. Quantitative stable isotope labeling by amino acids in cell culture (SILAC) proteomics was used to elucidate the effect of elevated ZEB1, as noted during hyperglycemia. Under different glycemic conditions, ZEB1 binding to E-cadherin promoter was investigated using chromatin immunoprecipitation. Cutaneous wounding resulted in loss of epithelial marker E-cadherin with concomitant gain of ZEB1. The dominant proteins downregulated after ZEB1 overexpression functionally represented adherens junction pathway. Zeb1+/− mice exhibited compromised wound closure complicated by defective EMT and poor wound angiogenesis. Under hyperglycemic conditions, ZEB1 lost its ability to bind E-cadherin promoter. Keratinocyte E-cadherin, thus upregulated, resisted EMT required for wound healing. Diabetic wound healing was improved in ZEB+/− as well as in db/db mice subjected to ZEB1 knockdown. This work recognizes ZEB1 as a key regulator of cutaneous wound healing that is of particular relevance to diabetic wound complication.
机译:下皮对间充质转变(EMT)和伤口血管化是一种致力于伤口愈合的两个关键相互关联的过程。锌指e-box结合Homeobox 1(Zeb1),主要在肿瘤生物学的背景下研究,是一种有效的EMT活化剂。 Zeb1也已知有助于内皮细胞存活以及刺激肿瘤血管生成。使用Zeb1 +/-小鼠评估ZeB1在皮肤伤口中的作用,因为Zeb1 - / - 小鼠不可行。通过在高血糖血症期间所述,通过细胞培养物(Silac)蛋白质组学中的氨基酸(Silac)蛋白质组学中的氨基酸标记的定量稳定同位素标记阐明。在不同的血糖条件下,使用染色质免疫沉淀研究了Zeb1与E-Cadherin启动子的结合。皮肤伤害导致具有Zeb1的伴随增益的上皮标记物E-钙粘蛋白。 Zeb1过表达在功能上指出的粘附结途径后下调的显性蛋白质。 Zeb1 +/-鼠标表现出受缺陷的EMT和伤口血管生成复杂的伤口闭合。在高血糖条件下,Zeb1丧失了其结合E-Cadherin启动子的能力。如此上调的角质形成细胞e-cadherin,抵抗伤口愈合所需的EMT。在Zeb +/-中改善糖尿病伤口愈合,以及对Zeb1敲低的DB / DB小鼠中。这项工作将Zeb1识别为皮肤伤口愈合的关键调节器,其与糖尿病伤口并发症特别相关。

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