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2000
Volume 27, Issue 27
  • ISSN: 1381-6128
  • E-ISSN: 1873-4286

Abstract

Background: This study was performed to identify the alterations of Long non-coding RNAs (lncRNAs) induced by oxidative stress and investigate the functional roles of SNHG16 in the pathological angiogenesis by human retinal microvascular endothelial cells (HMRECs). Methods: The expression profiles of lncRNAs and mRNAs induced by oxidative stress were identified by RNA-Seq, and the dysregulation of 16 lncRNAs including SNHG16 was verified in HO-treated human umbilical vein endothelial cells (HUVECs). Luciferase reporter assay and RIP analysis were used to investigate the binding relationship of SNHG16 to miR-195. Results: We confirmed that over-expression of SNGH16 attenuated HO-induced angiogenesis by HMRECs. In addition, SNHG16 was significantly decreased, whereas miR-195, a predictive target of SNHG16, was upregulated in HO, HG, and AGE-treated HMRECs. The binding relationship of SNHG16 to miR-195 was subsequently verified by luciferase reporter assay and RIP analysis. SNHG16 cotransfection abolished miR-195-mediated repression on mitofusin 2 (mfn2) protein level and counteracted the inductive effect of miR-195 on angiogenesis by HMRECs. Conclusion: These results indicated that decreased SNHG16 accelerates oxidative stress-induced pathological angiogenesis in HMRECs by regulating the miR-195/mfn2 axis, providing a potential target for diabetic retinopathy (DR) therapy.

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/content/journals/cpd/10.2174/1381612827666210202141541
2021-08-01
2025-04-16
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/content/journals/cpd/10.2174/1381612827666210202141541
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  • Article Type:
    Research Article
Keyword(s): endothelial cell; long non-coding RNA; miR-195; Mitofusin 2 (mfn2); Oxidative stress; SNHG16
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