MicroRNA-375 suppresses the growth and invasion of fibrolamellar carcinoma Journal Article


Authors: Dinh, T. A.; Jewell, M. L.; Kanke, M.; Francisco, A.; Sritharan, R.; Turnham, R. E.; Lee, S.; Kastenhuber, E. R.; Wauthier, E.; Guy, C. D.; Yeung, R. S.; Lowe, S. W.; Reid, L. M.; Scott, J. D.; Diehl, A. M.; Sethupathy, P.
Article Title: MicroRNA-375 suppresses the growth and invasion of fibrolamellar carcinoma
Abstract: Background & Aims: Fibrolamellar carcinoma (FLC) is a rare liver cancer that primarily affects adolescents and young adults. It is characterized by a heterozygous approximately 400-kb deletion on chromosome 19 that results in a unique fusion between DnaJ heat shock protein family member B1 (DNAJB1) and the alpha catalytic subunit of protein kinase A (PRKACA). The role of microRNAs (miRNAs) in FLC remains unclear. We identified dysregulated miRNAs in FLC and investigated whether dysregulation of 1 key miRNA contributes to FLC pathogenesis. Methods: We analyzed small RNA sequencing (smRNA-seq) data from The Cancer Genome Atlas to identify dysregulated miRNAs in primary FLC tumors and validated the findings in 3 independent FLC cohorts. smRNA-seq also was performed on a FLC patient-derived xenograft model as well as purified cell populations of the liver to determine whether key miRNA changes were tumor cell–intrinsic. We then used clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 (Cas9) technology and transposon-mediated gene transfer in mice to determine if the presence of DNAJB1-PRKACA is sufficient to suppress miR-375 expression. Finally, we established a new FLC cell line and performed colony formation and scratch wound assays to determine the functional consequences of miR-375 overexpression. Results: We identified miR-375 as the most dysregulated miRNA in primary FLC tumors (27-fold down-regulation; P =.009). miR-375 expression also was decreased significantly in a FLC patient-derived xenograft model compared to 4 different cell populations of the liver. Introduction of DNAJB1-PRKACA by clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 engineering and transposon-mediated somatic gene transfer in mice was sufficient to induce significant loss of miR-375 expression (P <.05). Overexpression of miR-375 in FLC cells inhibited Hippo signaling pathway proteins, including yes-associated protein 1 and connective tissue growth factor, and suppressed cell proliferation and migration (P <.05). Conclusions: We identified miR-375 as the most down-regulated miRNA in FLC tumors and showed that overexpression of miR-375 mitigated tumor cell growth and invasive potential. These findings open a potentially new molecular therapeutic approach. Further studies are necessary to determine how DNAJB1-PRKACA suppresses miR-375 expression and whether miR-375 has additional important targets in this tumor. Transcript profiling: GEO accession numbers: GSE114974 and GSE125602. © 2019 The Authors
Keywords: vasculotropin; clinical article; controlled study; human tissue; unclassified drug; human cell; nonhuman; comparative study; cell proliferation; mouse; gene overexpression; microrna; gene expression; animal experiment; animal model; protein; cohort analysis; tumor xenograft; gene transfer; scatter factor; cancer inhibition; messenger rna; down regulation; upregulation; migration inhibition; transposon; connective tissue growth factor; rna sequence; chimeric protein; cancer genomics; cyclic amp dependent protein kinase; colony formation; pediatric cancer; mirna; fibrolamellar carcinoma; microrna 107; tumor invasion; guide rna; protein dnaj; human; priority journal; article; fibrolamellar hepatocellular carcinoma; hippo signaling; microrna 210; crispr-cas9 system; dnaj heat shock protein family member b1; microrna 10b 5p; microrna 122 5p; microrna 134; microrna 182 5p; microrna 183 5p; microrna 320a; microrna 370; microrna 375; microrna 381; microrna 410; microrna 420; microrna 433; microrna 455 3p; microrna 543; microrna 98; protein kinase a alpha catalytic subunit; yes associated protein 1
Journal Title: Cellular and Molecular Gastroenterology and Hepatology
Volume: 7
Issue: 4
ISSN: 2352-345X
Publisher: Elsevier Inc.  
Date Published: 2019-01-01
Start Page: 803
End Page: 817
Language: English
DOI: 10.1016/j.jcmgh.2019.01.008
PUBMED: 30763770
PROVIDER: scopus
PMCID: PMC6468197
DOI/URL:
Notes: Article -- Export Date: 1 May 2019 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Scott W Lowe
    249 Lowe