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10.1242/jcs.165233

http://scihub22266oqcxt.onion/10.1242/jcs.165233
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C4582188!4582188!26163491
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suck abstract from ncbi


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pmid26163491      J+Cell+Sci 2015 ; 128 (17): 3197-209
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  • The miR-199?dynamin regulatory axis controls receptor-mediated endocytosis #MMPMID26163491
  • Aranda JF; Canfrán-Duque A; Goedeke L; Suárez Y; Fernández-Hernando C
  • J Cell Sci 2015[Sep]; 128 (17): 3197-209 PMID26163491show ga
  • Small non-coding RNAs (microRNAs) are important regulators of gene expression that modulate many physiological processes; however, their role in regulating intracellular transport remains largely unknown. Intriguingly, we found that the dynamin (DNM) genes, a GTPase family of proteins responsible for endocytosis in eukaryotic cells, encode the conserved miR-199a and miR-199b family of miRNAs within their intronic sequences. Here, we demonstrate that miR-199a and miR-199b regulate endocytic transport by controlling the expression of important mediators of endocytosis such as clathrin heavy chain (CLTC), Rab5A, low-density lipoprotein receptor (LDLR) and caveolin-1 (Cav-1). Importantly, miR-199a-5p and miR-199b-5p overexpression markedly inhibits CLTC, Rab5A, LDLR and Cav-1 expression, thus preventing receptor-mediated endocytosis in human cell lines (Huh7 and HeLa). Of note, miR-199a-5p inhibition increases target gene expression and receptor-mediated endocytosis. Taken together, our work identifies a new mechanism by which microRNAs regulate intracellular trafficking. In particular, we demonstrate that the DNM, miR-199a-5p and miR-199b-5p genes act as a bifunctional locus that regulates endocytosis, thus adding an unexpected layer of complexity in the regulation of intracellular trafficking.
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