Hong Yang , Jini Qiu , Xinhan Cui , Xueling Zhang , Rongmei Zhou , Jianjiang Xu , Ruiping Gu , Kun Shan
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引用次数: 0
Abstract
Müller cells (MCs) represent the major glial cells that are responsible for maintaining retinal homeostasis. In diabetic retinopathy, Müller cell activation occurs in the initial stages, playing a role in many pathological processes, such as neovascularization, neuronal dysfunction, and inflammatory retinal environment. As the most common RNA modification in eukaryotes, N6-methyladenosine (m6A) exerts dynamic and reversible control over cellular functions in the context of high glucose (HG) stress. Here, we performed combined m6A and RNA sequencing to elucidate the landscape of m6A modification in MCs under HG environmental stimuli. The potential functions of aberrant m6A peaks and differentially expressed genes were analyzed using bioinformatics analysis. Our findings indicate that m6A modification may regulate the expression of heat shock proteins (HSPs) 70 isoforms HSPA1A and HSPA1B, which are stress-inducible chaperones critical for cell survival under adverse conditions, including hyperglycemia. Modulating m6A modification may regulate critical gene expression and cellular functions of MCs under HG stress.
期刊介绍:
The primary goal of Experimental Eye Research is to publish original research papers on all aspects of experimental biology of the eye and ocular tissues that seek to define the mechanisms of normal function and/or disease. Studies of ocular tissues that encompass the disciplines of cell biology, developmental biology, genetics, molecular biology, physiology, biochemistry, biophysics, immunology or microbiology are most welcomed. Manuscripts that are purely clinical or in a surgical area of ophthalmology are not appropriate for submission to Experimental Eye Research and if received will be returned without review.