Deep-sequencing of endothelial cells exposed to hypoxia reveals the complexity of known and novel microRNAs

  1. Fabio Martelli3,7
  1. 1Laboratorio di Cardiologia Molecolare, IRCCS-Policlinico San Donato, San Donato Milanese, 20097 Milan, Italy
  2. 2Genomnia srl, Lainate, 20020 Milan, Italy
  3. 3Laboratorio di Patologia Vascolare, Istituto Dermopatico dell'Immacolata-IRCCS, 00167 Rome, Italy
  4. 4Institute for Molecular Bioscience, University of Queensland, 4072 Brisbane, Australia
  5. 5Computational Biology Laboratory, University of Toronto, M5S 3G4 Toronto, Canada
    1. 6 These authors contributed equally to this work.

    Abstract

    In order to understand the role of microRNAs (miRNAs) in vascular physiopathology, we took advantage of deep-sequencing techniques to accurately and comprehensively profile the entire miRNA population expressed by endothelial cells exposed to hypoxia. SOLiD sequencing of small RNAs derived from human umbilical vein endothelial cells (HUVECs) exposed to 1% O2 or normoxia for 24 h yielded more than 22 million reads per library. A customized bioinformatic pipeline identified more than 400 annotated microRNA/microRNA* species with a broad abundance range: miR-21 and miR-126 totaled almost 40% of all miRNAs. A complex repertoire of isomiRs was found, displaying also 5′ variations, potentially affecting target recognition. High-stringency bioinformatic analysis identified microRNA candidates, whose predicted pre-miRNAs folded into a stable hairpin. Validation of a subset by qPCR identified 18 high-confidence novel miRNAs as detectable in independent HUVEC cultures and associated to the RISC complex. The expression of two novel miRNAs was significantly down-modulated by hypoxia, while miR-210 was significantly induced. Gene ontology analysis of their predicted targets revealed a significant association to hypoxia-inducible factor signaling, cardiovascular diseases, and cancer. Overexpression of the novel miRNAs in hypoxic endothelial cells affected cell growth and confirmed the biological relevance of their down-modulation. In conclusion, deep-sequencing accurately profiled known, variant, and novel microRNAs expressed by endothelial cells in normoxia and hypoxia.

    Keywords

    Footnotes

    • Received March 30, 2011.
    • Accepted December 7, 2011.
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