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MicroRNA In situ Hybridization for Formalin Fixed Kidney Tissues
Published on: November 30, 2013
Macrophage M1 regulatory diabetic nephropathy is mediated by m6A methylation modification of lncRNA expression
ChangYan Li1, Feng Su1, Zhang Liang2
1Department of Nephrology, the First Affiliated Hospital of Kunming Medical University, Kunming, Yunnan Province 650032, China.
Abstract:
Immune and inflammatory responses have been identified to play an important role in diabetic nephropathy (DN) (H. Zhou et al. (2021)). It was found that the part of long non-coding RNA (LncRNA) in nephrosis is related to the negative regulation of MicroRNA (miRNA) (C. Gao et al., 2020), which mechanism is unclear; N6-methyladenosine (m6A) is one of the most common mRNA modifications in eukaryotes (Gu et al. (2020)). m6A has been proved in many works of literature can act on the triple helix structure of RNA-DNA and regulate the relationship between lncRNA and specific DNA sites (Fico et al. (2020); Łoboś and Regulska-Ilow (2021); Xu et al. (2021)). Other studies have shown that m6A methylation modification plays a vital role in developing metabolic diseases such as obesity and type 2 diabetes by regulating glucose and lipid metabolism and immune inflammation. In this study, we performed a subgroup analysis of m6A-modified LncRNA expression in the DN transcriptome dataset (LncRNA high-low expression group); the results showed that the presence of Macrophage M1-related lncRNA (LINC00342, LINC00667, and LNC00963) in the process of m6A methylation recognition and metastasis was indirectly related to the downstream demethylase FTO, at the same time, we analyzed the interaction between m6A and RBM15, which is involved in the immune regulation of macrophage M1, and found that there might be a potential interaction between RBM15 and WTAP, which may play a role in regulating the methylation of lncRNA in macrophage M1, the DN was mediated by macrophage M1 immunoreaction of macrophages.
Insights
Diabetic nephropathy (DN) involves immune responses and long non-coding RNAs (lncRNAs). This study explores N6-methyladenosine (m6A) modification of lncRNAs in DN, revealing connections to macrophage M1 immune responses.
Area of Science:
- Molecular Biology
- Immunology
- Genetics
Background:
- Diabetic nephropathy (DN) pathogenesis involves immune and inflammatory responses.
- Long non-coding RNAs (lncRNAs) and N6-methyladenosine (m6A) modifications are implicated in cellular processes.
- m6A modification influences metabolic diseases, including diabetes, by regulating metabolism and immune inflammation.
Purpose of the Study:
- To investigate the role of m6A-modified lncRNA expression in diabetic nephropathy (DN).
- To explore the relationship between m6A, lncRNAs, and macrophage M1 immune responses in DN.
Main Methods:
- Subgroup analysis of m6A-modified lncRNA expression in the DN transcriptome dataset.
- Analysis of interactions between m6A regulators (e.g., FTO, RBM15, WTAP) and specific lncRNAs (LINC00342, LINC00667, LNC00963).
Main Results:
- Identified specific Macrophage M1-related lncRNAs (LINC00342, LINC00667, LNC00963) associated with m6A modification in DN.
- Found an indirect relationship between these lncRNAs and the demethylase FTO.
- Revealed potential interactions between m6A regulators RBM15 and WTAP in regulating lncRNA methylation within macrophage M1.
Conclusions:
- Macrophage M1-mediated immunoreaction plays a role in DN.
- m6A modification of lncRNAs, particularly those related to Macrophage M1, is implicated in DN pathogenesis.
- Further research into the m6A-lncRNA-macrophage M1 axis may offer therapeutic targets for DN.

