Identification of Actionable Fusions as an Anti-EGFR Resistance Mechanism Using a Circulating Tumor DNA Assay.

Clifton, Katherine; Rich, Thereasa A; Parseghian, Christine; Raymond, Victoria M; Dasari, Arvind; Pereira, Allan Andresson Lima; Willis, Jason; Loree, Jonathan M et al. · JCO Precis Oncol · 2019

cross_sectional · Level IV

Where this comes from

Abstract

Gene fusions are established oncogenic drivers and emerging therapeutic targets in advanced colorectal cancer. This study aimed to detail the frequencies and clinicopathological features of gene fusions in colorectal cancer using a circulating tumor DNA assay. Circulating tumor DNA samples in patients with advanced colorectal cancer were analyzed at 4,581 unique time points using a validated plasma-based multigene assay that includes assessment of fusions in <i>FGFR2</i>, <i>FGFR3</i>, <i>RET</i>, <i>ALK</i>, <i>NTRK1</i>, and <i>ROS1.</i> Associations between fusions and clinicopathological features were measured using Fisher's exact test. Relative frequencies of genomic alterations were compared between fusion-present and fusion-absent cases using an unpaired <i>t</i> test. Forty-four unique fusions were identified in 40 (1.1%) of the 3,808 patients with circulating tumor DNA detected: <i>RET</i> (n = 6; 36% of all fusions detected), <i>FGFR3</i> (n = 2; 27%), <i>ALK</i> (n = 10, 23%), <i>NTRK1</i> (n = 3; 7%), <i>ROS1</i> (n = 2; 5%), and <i>FGFR2</i> (n = 1; 2%). Relative to nonfusion variants detected, fusions were more likely to be subclonal (odds ratio, 8.2; 95% CI, 2.94 to 23.00; <i>P</i> < .001). Mutations associated with a previously reported anti-epidermal growth factor receptor (anti-EGFR) therapy resistance signature (subclonal <i>RAS</i> and <i>EGFR</i> mutations) were found with fusions in <i>FGFR3</i> (10 of 12 patients), <i>RET</i> (nine of 16 patients), and <i>ALK</i> (seven of 10 patients). For the 27 patients with available clinical histories, 21 (78%) had EGFR monoclonal antibody treatment before fusion detection. Diverse and potentially actionable fusions can be detected using a circulating tumor DNA assay in patients with advanced colorectal cancer. Distribution of coexisting subclonal mutations in <i>EGFR</i>, <i>KRAS</i>, and <i>NRAS</i> in a subset of the patients with fusion-present colorectal cancer suggests that these fusions may arise as a novel mechanism of resistance to anti-EGFR therapies in patients with metastatic colorectal cancer.