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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

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.