N6-methyladenosine (m6A) has been identified in various biological processes and plays important regulatory functions in diverse cells. However, there is still no visualization database for exploring global m6A patterns across cell lines. Here we collected all available MeRIP-Seq and m6A-CLIP-Seq datasets from public databases and identified 340,950 and 179,201 m6A peaks dependent on 23 human and eight mouse cell lines respectively. Those m6A peaks were further classified into mRNA and lncRNA groups. To better understand the potential function of m6A, we then mapped m6A peaks in different subcellular components and gene regions. Among those human m6A modification, 190,050 and 150,900 peaks were identified in cancer and non-cancer cells, respectively. Finally, all results were integrated and imported into a visualized cell-dependent m6A database CVm6A. We believe the specificity of CVm6A could significantly contribute to the research for the function and regulation of cell-dependent m6A modification in disease and development.
A practical method for the amidation reaction between carboxylic acids and amines was developed, for the first time, through a visible light-mediated photoredox deoxygenation at room temperature.
Despite the recent development of boryl radical reactions, current methods to generate them relying on the photocatalysts or radical initiators cause contamination of the reaction. Herein, a novel system for...
A green and practical photoinduced method for regioselective hydroboration of electron-deficient alkenes with NHC-borane has been developed in which 1,2-diphenyldisulfane was employed as photocatalyst and hydrogen atom transfer (HAT) reagent...
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