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Updated: Nov 29, 2025

RNA Pull-down Procedure to Identify RNA Targets of a Long Non-coding RNA
Published on: April 10, 2018
Long noncoding RNA H19 act as a competing endogenous RNA of Let-7g to facilitate IEC-6 cell migration and
Cuijie Li1,2, Ye Li1,2, Mengmeng Zhuang1,2
1Department of Burn Surgery, The Affiliated Huaihai Hospital of Xuzhou Medical University, Xuzhou, Jiangsu, China.
Abstract:
Intestinal mucosal injury is one of the most significant complications of burns. In our previous study, it was found that autophagy could alleviate burn-induced intestinal injury, but the underlying mechanisms are still unclear. Irregular expression of long noncoding RNAs (lncRNAs) is present in many diseases, including burns. However, the relationship between lncRNAs and intestinal mucosal injury requires further elucidation. In this study, we established a burn mice model and detected the expression level of autophagy-related proteins. Then, H19 content after autophagy intervention was tested in vitro and in vivo. The interaction of H19 with Let-7g and that of Let-7g with epidermal growth factor (EGF) were verified by dual-luciferase reporter assays. We found that the expression of the autophagy-associated proteins LC3-II and Beclin-1 was raised in the intestinal tract of the burn mice model. Similarly, the transfection of H19 raised autophagy levels. H19 was elevated after autophagy intervention in vitro and in vivo. H19 overexpression was able to promote IEC-6 cell migration and proliferation. Let-7g was suppressed by the overexpression of H19 and the combination of Let-7g mimic was able to abolish the physiological effect of H19. Moreover, the suppression of Let-7g increased the expression of EGF protein, which heightened IEC-6 cell migration and proliferation. Besides this, dual-luciferase assays revealed that Let-7g was a direct target of H19 as well as the EGF gene. Taken together, autophagy-mediated H19 increases in mouse intestinal tract after severe burn and functions as a sponge to Let-7g to regulate EGF, which suggests that H19 serves as a potential therapeutic target and biomarker for intestinal mucosal injury after burns.
Insights
Autophagy-induced H19 long noncoding RNA (lncRNA) exacerbates burn-induced intestinal injury by sponging Let-7g and upregulating EGF. This suggests H19 is a potential therapeutic target for burn-related gut damage.
Area of Science:
- Biochemistry
- Molecular Biology
- Gastroenterology
Background:
- Intestinal mucosal injury is a severe complication following burns.
- Autophagy plays a protective role in burn-induced intestinal injury, but its mechanisms involving long noncoding RNAs (lncRNAs) are not fully understood.
Purpose of the Study:
- To investigate the role of lncRNA H19 in autophagy-mediated intestinal mucosal injury after burns.
- To elucidate the molecular mechanism involving H19, Let-7g, and epidermal growth factor (EGF) in burn injury.
Main Methods:
- Established a murine burn model and analyzed autophagy-related protein expression (LC3-II, Beclin-1).
- Investigated H19 expression in vitro and in vivo following autophagy intervention.
- Utilized dual-luciferase reporter assays to confirm interactions between H19, Let-7g, and EGF.
Main Results:
- Burn injury increased autophagy markers (LC3-II, Beclin-1) and H19 expression in the mouse intestine.
- H19 overexpression promoted intestinal epithelial cell migration and proliferation.
- H19 suppressed Let-7g, which in turn increased EGF expression, enhancing cell migration and proliferation.
- Let-7g was identified as a direct target of both H19 and EGF.
Conclusions:
- Autophagy-mediated upregulation of H19 in the mouse intestine after severe burns contributes to injury.
- H19 acts as a molecular sponge for Let-7g, regulating EGF expression and promoting intestinal mucosal injury.
- H19 presents a potential therapeutic target and biomarker for managing intestinal mucosal injury post-burns.
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