MicroRNA expression profiling of Xp11 renal cell carcinoma.

TitleMicroRNA expression profiling of Xp11 renal cell carcinoma.
Publication TypeJournal Article
Year of Publication2017
AuthorsMarchionni L, Hayashi M, Guida E, Ooki A, Munari E, Jabboure FJ, Dinalankara W, Raza A, Netto GJ, Hoque MO, Argani P
JournalHum Pathol
Volume67
Pagination18-29
Date Published2017 09
ISSN1532-8392
KeywordsAdolescent, Adult, Biomarkers, Tumor, Carcinoma, Renal Cell, Child, Child, Preschool, Chromosomes, Human, X, Computational Biology, Databases, Genetic, Female, Gene Expression Profiling, Gene Expression Regulation, Neoplastic, Genetic Predisposition to Disease, Humans, Kidney Neoplasms, Male, MicroRNAs, Middle Aged, Oligonucleotide Array Sequence Analysis, Phenotype, Prognosis, Reproducibility of Results, Reverse Transcriptase Polymerase Chain Reaction, Transcriptome, Translocation, Genetic
Abstract

Renal cell carcinomas (RCCs) with Xp11 translocation (Xp11 RCC) constitute a distinctive molecular subtype characterized by chromosomal translocations involving the Xp11.2 locus, resulting in gene fusions between the TFE3 transcription factor with a second gene (usually ASPSCR1, PRCC, NONO, or SFPQ). RCCs with Xp11 translocations comprise up to 1% to 4% of adult cases, frequently displaying papillary architecture with epithelioid clear cells. To better understand the biology of this molecularly distinct tumor subtype, we analyze the microRNA (miRNA) expression profiles of Xp11 RCC compared with normal renal parenchyma using microarray and quantitative reverse-transcription polymerase chain reaction. We further compare Xp11 RCC with other RCC histologic subtypes using publically available data sets, identifying common and distinctive miRNA signatures along with the associated signaling pathways and biological processes. Overall, Xp11 RCC more closely resembles clear cell rather than papillary RCC. Furthermore, among the most differentially expressed miRNAs specific for Xp11 RCC, we identify miR-148a-3p, miR-221-3p, miR-185-5p, miR-196b-5p, and miR-642a-5p to be up-regulated, whereas miR-133b and miR-658 were down-regulated. Finally, Xp11 RCC is most strongly associated with miRNA expression profiles modulating DNA damage responses, cell cycle progression and apoptosis, and the Hedgehog signaling pathway. In summary, we describe here for the first time the miRNA expression profiles of a molecularly distinct type of renal cancer associated with Xp11.2 translocations involving the TFE3 gene. Our results might help understanding the molecular underpinning of Xp11 RCC, assisting in developing targeted treatments for this disease.

DOI10.1016/j.humpath.2017.03.011
Alternate JournalHum Pathol
PubMed ID28411178
PubMed Central IDPMC5628161
Grant ListR01 CA200859 / CA / NCI NIH HHS / United States
UL1 TR001079 / TR / NCATS NIH HHS / United States
Related Faculty: 
Luigi Marchionni, M.D., Ph.D.

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