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ROS1-rearranged lung cancer: a clinicopathologic and molecular study of 15 surgical cases
Akihiko Yoshida1, Takashi Kohno, Koji Tsuta
1Division of Pathology and Clinical Laboratories, National Cancer Center Hospital, Tokyo, Japan. akyoshid@ncc.go.jp
Abstract:
Recent discovery of ROS1 gene fusion in a subset of lung cancers has raised clinical interest, because ROS1 fusion-positive cancers are reportedly sensitive to kinase inhibitors. To better understand these tumors, we examined 799 surgically resected non-small cell lung cancers by reverse transcriptase polymerase chain reaction and identified 15 tumors harboring ROS1 fusion transcripts (2.5% of adenocarcinomas). The most frequent fusion partner was CD74 followed by EZR. The affected patients were often younger nonsmoking female individuals, and they had overall survival rates similar to those of the ROS1 fusion-negative cancer patients. All the ROS1 fusion-positive tumors were adenocarcinomas except 1, which was an adenosquamous carcinoma. Histologic examination identified an at least focal presence of either solid growth with signet-ring cells or cribriform architecture with abundant extracellular mucus in 53% of the cases. These 2 patterns are reportedly also characteristic of anaplastic lymphoma kinase (ALK)-rearranged lung cancers, and our data suggest a phenotypic resemblance between the ROS1-rearranged and ALK-rearranged tumors. All tumors except 1 were immunoreactive to thyroid transcription factor-1. Fluorescence in situ hybridization using ROS1 break-apart probes revealed positive rearrangement signals in 23% to 93% of the tumor cells in ROS1 fusion-positive cancers, which were readily distinguished using a 15% cutoff value from 50 ROS1 fusion-negative tumors tested, which showed 0% to 6% rearrangement signals. However, this perfect test performance was achieved only when isolated 3' signals were included along with classic split signals in the definition of rearrangement positivity. Fluorescence in situ hybridization signal patterns were unrelated to 5' fusion partner genes. All ROS1 fusion-positive tumors lacked alteration of EGFR, KRAS, HER2, ALK, and RET genes.
Insights
ROS1 gene fusions occur in 2.5% of non-small cell lung cancers, often in younger, non-smoking females. These ROS1-rearranged tumors share features with ALK-rearranged lung cancers and are distinct from other common gene alterations.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- ROS1 gene fusions are newly discovered in lung cancer subsets.
- ROS1 fusion-positive lung cancers show sensitivity to kinase inhibitors.
- Understanding ROS1 fusion-positive tumors is clinically relevant.
Purpose of the Study:
- To investigate the frequency and characteristics of ROS1 gene fusions in non-small cell lung cancer (NSCLC).
- To identify ROS1 fusion partners and patient demographics.
- To explore histological and molecular features of ROS1-rearranged NSCLC and compare them to ALK-rearranged tumors.
Main Methods:
- Reverse transcriptase polymerase chain reaction (RT-PCR) was used to detect ROS1 fusion transcripts in 799 NSCLC samples.
- Fluorescence in situ hybridization (FISH) was employed to assess ROS1 rearrangement status.
- Histological examination and immunohistochemistry for thyroid transcription factor-1 were performed.
Main Results:
- ROS1 fusion transcripts were identified in 15 tumors (2.5% of adenocarcinomas), with CD74 and EZR as frequent fusion partners.
- Patients with ROS1 fusions were often younger, non-smoking females, with survival rates similar to ROS1-negative patients.
- Histologically, ROS1-rearranged tumors showed features like solid growth with signet-ring cells or cribriform architecture, resembling ALK-rearranged lung cancers.
- FISH analysis with a 15% cutoff accurately distinguished ROS1 fusion-positive from negative cases.
- ROS1 fusion-positive tumors lacked alterations in EGFR, KRAS, HER2, ALK, and RET genes.
Conclusions:
- ROS1 gene fusions represent a distinct molecular subset of NSCLC, primarily adenocarcinomas.
- ROS1-rearranged lung cancers exhibit phenotypic similarities to ALK-rearranged tumors.
- FISH is a reliable method for detecting ROS1 rearrangements in NSCLC.