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The <i>let-7</i> MicroRNA Represses Cell Proliferation Pathways in Human Cells

Cancer Research · 2007 · Vol. 67(16) · pp. 7713–7722
Charles D. JohnsonAurora Esquela‐KerscherGiovanni StefaniMike ByromKevin KelnarDmitriy OvcharenkoMike WilsonXiaowei WangJeffrey SheltonJaclyn ShingaraLena J. ChinDavid BrownFrank J. Slack

Abstract

MicroRNAs play important roles in animal development, cell differentiation, and metabolism and have been implicated in human cancer. The let-7 microRNA controls the timing of cell cycle exit and terminal differentiation in Caenorhabditis elegans and is poorly expressed or deleted in human lung tumors. Here, we show that let-7 is highly expressed in normal lung tissue, and that inhibiting let-7 function leads to increased cell division in A549 lung cancer cells. Overexpression of let-7 in cancer cell lines alters cell cycle progression and reduces cell division, providing evidence that let-7 functions as a tumor suppressor in lung cells. let-7 was previously shown to regulate the expression of the RAS lung cancer oncogenes, and our work now shows that multiple genes involved in cell cycle and cell division functions are also directly or indirectly repressed by let-7. This work reveals the let-7 microRNA to be a master regulator of cell proliferation pathways.

MicroRNA in disease regulationRNA Research and SplicingGenetics, Aging, and Longevity in Model OrganismsmicroRNABiologyCell growthCell cycleCell divisionCell biologyCellLung cancerCancer researchCancer

MeSH terms

Cell CycleHeLa CellsHumansLiver NeoplasmsLungGenes, rasTransfectionGene Expression Regulation, Neoplasticcdc25 PhosphatasesMicroRNAsCell Line, TumorMicroarray AnalysisCell Growth ProcessesCyclin-Dependent Kinase 6

Funding

  • National Science Foundation
  • Yale University
  • National Institutes of Health
Citations
1,230
FWCI
33.08
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50
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100%
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