miRSNP rs188493331: A key player in genetic control of microRNA‐induced pathway activation in hypertrophic scars and keloids

Author:

Chen Meiqing12,Pan Yuyan3,Chen Zhiwei4,Qi Fazhi3,Gu Jianying35,Qiu Yangyang12,He Anqi26,Liu Jiaqi35ORCID

Affiliation:

1. Department of Dermatology Zhongshan Hospital (Xiamen) Fudan University Xiamen China

2. Xiamen Clinical Research Center for Cancer Therapy Zhongshan Hospital (Xiamen) Fudan University Xiamen China

3. Department of Plastic and Reconstructive Surgery Zhongshan Hospital Fudan University Shanghai China

4. Big Data and Artificial Intelligence Center Zhongshan Hospital Fudan University Shanghai China

5. Artificial Intelligence Center for Plastic Surgery and Cutaneous Soft Tissue Cancers Zhongshan Hospital Fudan University Shanghai China

6. Department of Plastic and Reconstructive Surgery Zhongshan hospital (Xiamen) Fudan University Xiamen China

Abstract

AbstractBackgroundOur study aims to delineate the miRSNP–microRNA–gene–pathway interactions in the context of hypertrophic scars (HS) and keloids.Materials and MethodsWe performed a computational biology study involving differential expression analysis to identify genes and their mRNAs in HS and keloid tissues compared to normal skin, identifying key hub genes and enriching their functional roles, comprehensively analyzing microRNA‐target genes and related signaling pathways through bioinformatics, identifying MiRSNPs, and constructing a pathway‐based network to illustrate miRSNP‐miRNA‐gene‐signaling pathway interactions.ResultsOur results revealed a total of 429 hub genes, with a strong enrichment in signaling pathways related to proteoglycans in cancer, focal adhesion, TGF‐β, PI3K/Akt, and EGFR tyrosine kinase inhibitor resistance. Particularly noteworthy was the substantial crosstalk between the focal adhesion and PI3K/Akt signaling pathways, making them more susceptible to regulation by microRNAs. We also identified specific miRNAs, including miRNA‐1279, miRNA‐429, and miRNA‐302e, which harbored multiple SNP loci, with miRSNPs rs188493331 and rs78979933 exerting control over a significant number of miRNA target genes. Furthermore, we observed that miRSNP rs188493331 shared a location with microRNA302e, microRNA202a‐3p, and microRNA20b‐5p, and these three microRNAs collectively targeted the gene LAMA3, which is integral to the focal adhesion signaling pathway.ConclusionsThe study successfully unveils the complex interactions between miRSNPs, miRNAs, genes, and signaling pathways, shedding light on the genetic factors contributing to HS and keloid formation.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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