High-resolution array CGH and gene expression profiling of alveolar soft part sarcoma.

TitleHigh-resolution array CGH and gene expression profiling of alveolar soft part sarcoma.
Publication TypeJournal Article
Year of Publication2014
AuthorsSelvarajah S, Pyne S, Chen E, Sompallae R, Ligon AH, Nielsen GP, Dranoff G, Stack E, Loda M, Flavin R
JournalClin Cancer Res
Volume20
Issue6
Pagination1521-30
Date Published2014 Mar 15
ISSN1557-3265
KeywordsAdult, Basic Helix-Loop-Helix Leucine Zipper Transcription Factors, Comparative Genomic Hybridization, Eye Proteins, Female, Gene Expression Profiling, High-Throughput Screening Assays, Homeodomain Proteins, Humans, Immunohistochemistry, In Situ Hybridization, Fluorescence, Intracellular Signaling Peptides and Proteins, Kaplan-Meier Estimate, Male, Middle Aged, Oncogene Proteins, Fusion, Paired Box Transcription Factors, PAX6 Transcription Factor, Repressor Proteins, Sarcoma, Alveolar Soft Part, Young Adult
Abstract

PURPOSE: Alveolar soft part sarcoma (ASPS) is a soft tissue sarcoma with poor prognosis, and little molecular evidence exists for its origin, initiation, and progression. The aim of this study was to elucidate candidate molecular pathways involved in tumor pathogenesis.

EXPERIMENTAL DESIGN: We employed high-throughput array comparative genomic hybridization (aCGH) and cDNA-Mediated Annealing, Selection, Ligation, and Extension Assay to profile the genomic and expression signatures of primary and metastatic ASPS from 17 tumors derived from 11 patients. We used an integrative bioinformatics approach to elucidate the molecular pathways associated with ASPS progression. FISH was performed to validate the presence of the t(X;17)(p11.2;q25) ASPL-TFE3 fusion and, hence, confirm the aCGH observations.

RESULTS: FISH analysis identified the ASPL-TFE3 fusion in all cases. aCGH revealed a higher number of numerical aberrations in metastatic tumors relative to primaries, but failed to identify consistent alterations in either group. Gene expression analysis highlighted 1,063 genes that were differentially expressed between the two groups. Gene set enrichment analysis identified 16 enriched gene sets (P < 0.1) associated with differentially expressed genes. Notable among these were several stem cell gene expression signatures and pathways related to differentiation. In particular, the paired box transcription factor PAX6 was upregulated in the primary tumors, along with several genes whose mouse orthologs have previously been implicated in Pax6 DNA binding during neural stem cell differentiation.

CONCLUSION: In addition to suggesting a tentative neural line of differentiation for ASPS, these results implicate transcriptional deregulation from fusion genes in the pathogenesis of ASPS.

DOI10.1158/1078-0432.CCR-13-2090
Alternate JournalClin Cancer Res
PubMed ID24493828
Grant ListP01CA89021 / CA / NCI NIH HHS / United States
R01CA131945 / CA / NCI NIH HHS / United States
P50 CA90381 / CA / NCI NIH HHS / United States
Related Faculty: 
Massimo Loda, M.D.

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