The stringent regulation of RAGs (Recombination activating genes), the site-specific endonuclease responsible for V(D)J recombination, is important to prevent genomic rearrangements and chromosomal translocations in lymphoid cells. In the present study, we identify a microRNA, miR-501, which can regulate the expression of RAG1 in lymphoid cells. Overexpression of the pre-miRNA construct led to the generation of mature miRNAs and a concomitant reduction in RAG1 expression, whereas inhibition using anti-miRs resulted in its enhanced expression. The direct interaction of the 3′UTR of miR-501 with RAG1 was confirmed by the reporter assay. Importantly, overexpression of miRNAs led to inhibition of V(D)J recombination in B cells, revealing their impact on the physiological function of RAGs. Of interest is the inverse correlation observed for miR-501 with RAG1 in various leukemia patients and lymphoid cell lines, suggesting its possible use in cancer therapy. Thus, our results reveal the regulation of RAG1 by miR-501-3p in B cells and thus V(D)J recombination and its possible implications on immunoglobulin leukemogenesis.
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Cover Image
In this issue Cobbaut and colleagues (pp. 2037–2044) bring protein kinase Cs (aPKCs) into the fold, summarizing recent reports on the direct recruitment of aPKC to membranes, providing insight into seemingly discrepant findings and integrating them with existing literature. The cover image shows a representation of the primary structure of aPKC and the AlphaFold2 colab prediction of the aPKCRM, with the PB1 domain (cyan), PSS (purple) linked via a Beta-Strand Linker (orange) to the C1 domain (blue). The image is courtesy of Mathias Cobbaut.
MicroRNA, miR-501 regulate the V(D)J recombination in B cells
Rupa Kumari, Urbi Roy, Sagar Desai, Arannya S. Mondal, Rajshree R. Nair, Namrata Nilavar, Bibha Choudhary, Sathees C. Raghavan; MicroRNA, miR-501 regulate the V(D)J recombination in B cells. Biochem J 20 December 2023; 480 (24): 2061–2077. doi: https://doi.org/10.1042/BCJ20230250
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