Literature DB >> 21692035

Upregulation of the high mobility group AT-hook 2 gene in acute aortic dissection is potentially associated with endothelial-mesenchymal transition.

Gazanfer Belge1, Arlo Radtke, Anke Meyer, Isabel Stegen, Doreen Richardt, Rolf Nimzyk, Vishal Nigam, Andreas Dendorfer, Hans H Sievers, Markus Tiemann, Igor Buchwalow, Joern Bullerdiek, Salah A Mohamed.   

Abstract

The high mobility group AT-hook 2 (HMGA2) gene is proposed to regulate the genes involved in the epithelial-mesenchymal transition (EMT). One form of EMT is endothelial-mesenchymal transition (EndMT). We analyzed the expression profile of the HMGA2 gene in different human aortic diseases. Aortic specimens were collected from 51 patients, including 19 with acute aortic dissection, 26 with aortic aneurysm, two with Marfan syndrome and four aortic valves. Quantitative real-time polymerase chain reaction was carried out for HMGA2 and immunohistochemical analyses were performed for HMGA2, SNAI1, Vimentin, CD34, MKI-67 and TGFB1. The expression of let-7d microRNA, which is assumed to play a role in the regulation of HMGA2, was also quantified. The level of HMGA2 gene expression was significantly higher in acute aortic dissection compared with all the other samples (193.1 vs. 8.1 fold normalized to calibrator, P<0.001). The immunohistochemical investigation showed that HMGA2, SNAI1, and Vimentin proteins were mainly detected in the endothelial cells of the vasa vasorum. The HMGA2 gene is upregulated in acute aortic dissection. This is the first report describing a link between HMGA2 and acute aortic dissection. The HMGA2, SNAI1 and Vimentin proteins were mainly detected in the endothelium of the vasa vasorum. It seems that HMGA2 overexpression in acute aortic dissection occurs in a let-7d-independent manner and is associated with EndMT of the vasa vasorum.

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Year:  2011        PMID: 21692035     DOI: 10.14670/HH-26.1029

Source DB:  PubMed          Journal:  Histol Histopathol        ISSN: 0213-3911            Impact factor:   2.303


  6 in total

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2.  MiR-26b Suppresses the Development of Stanford Type A Aortic Dissection by Regulating HMGA2 and TGF-β/Smad3 Signaling Pathway.

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Journal:  Ann Thorac Cardiovasc Surg       Date:  2019-11-14       Impact factor: 1.520

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Review 4.  Non-coding RNAs in aortic dissection: From biomarkers to therapeutic targets.

Authors:  Mengdie Cheng; Yanyan Yang; Hai Xin; Min Li; Tingyu Zong; Xingqiang He; Tao Yu; Hui Xin
Journal:  J Cell Mol Med       Date:  2020-09-04       Impact factor: 5.310

5.  Long non-coding RNA HIF1A-AS2 modulates the proliferation, migration, and phenotypic switch of aortic smooth muscle cells in aortic dissection via sponging microRNA-33b.

Authors:  Kai Zhang; Yujuan Qi; Meng Wang; Qingliang Chen
Journal:  Bioengineered       Date:  2022-03       Impact factor: 3.269

6.  Exosomal HMGA2 protein from EBV-positive NPC cells destroys vascular endothelial barriers and induces endothelial-to-mesenchymal transition to promote metastasis.

Authors:  Deng-Ke Li; Xing-Rui Chen; Li-Na Wang; Jia-Hong Wang; Ji-Ke Li; Zi-Ying Zhou; Xin Li; Lin-Bo Cai; Shui-Sheng Zhong; Jing-Jing Zhang; Yu-Mei Zeng; Qian-Bing Zhang; Xiao-Yan Fu; Xiao-Ming Lyu; Min-Ying Li; Zhong-Xi Huang; Kai-Tai Yao
Journal:  Cancer Gene Ther       Date:  2022-04-06       Impact factor: 5.854

  6 in total

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