Application of SNP Microarrays to the Genome-Wide Analysis of Chromosomal Instability in Premalignant Airway Lesions

作者:Nakachi Ichiro*; Rice Jessica L; Coldren Christopher D; Edwards Michael G; Stearman Robert S; Glidewell Steven C; Varella Garcia Marileila; Franklin Wilbur A; Keith Robert L; Lewis Marina T; Gao Bifeng; Merrick Daniel T; Miller York E; Geraci Mark W
来源:Cancer Prevention Research, 2014, 7(2): 255-265.
DOI:10.1158/1940-6207.CAPR-12-0485

摘要

Chromosomal instability is central to the process of carcinogenesis. The genome-wide detection of somatic chromosomal alterations (SCA) in small premalignant lesions remains challenging because sample heterogeneity dilutes the aberrant cell information. To overcome this hurdle, we focused on the B allele frequency data from single-nucleotide polymorphism microarrays (SNP arrays). The difference of allelic fractions between paired tumor and normal samples from the same patient (delta-theta) provides a simple but sensitive detection of SCA in the affected tissue. We applied the delta-theta approach to small, heterogeneous clinical specimens, including endobronchial biopsies and brushings. Regions identified by delta-theta were validated by FISH and quantitative PCR in heterogeneous samples. Distinctive genomic variations were successfully detected across the whole genome in all invasive cancer cases (6 of 6), carcinoma in situ (3 of 3), and high-grade dysplasia (severe or moderate; 3 of 11). Not only well-described SCAs in lung squamous cell carcinoma, but also several novel chromosomal alterations were frequently found across the preinvasive dysplastic cases. Within these novel regions, losses of putative tumor suppressors (RNF20 and SSBP2) and an amplification of RASGRP3 gene with oncogenic activity were observed. Widespread sampling of the airway during bronchoscopy demonstrated that field cancerization reflected by SCAs at multiple sites was detectable. SNP arrays combined with delta-theta analysis can detect SCAs in heterogeneous clinical sample and expand our ability to assess genomic instability in the airway epithelium as a biomarker of lung cancer risk.

  • 出版日期2014-2