Meng Zhang, Yi Feng, Xue Du, Changda Qu, Meizhu Meng, Meiying Ye, Min Liang, Ziran Yang, Wenjuan Gong, Xingyu Ma, Jialiang Guo, Wenmei Li, Shuqin Jia
While ALK fusion partners exhibit tumor-type specificity, ALK-TKIs demonstrate potential efficacy in rare fusions though these findings are exploratory and need validation. Short EML4-ALK variants and TP53 co-mutation are associated with poorer TKI efficacy.
BACKGROUND: ALK fusions are validated oncogenic drivers, yet their molecular heterogeneity and therapeutic implications remain poorly characterized. This study defined the landscape of ALK fusion partners, EML4-ALK variants, and co-mutations and their impact on treatment responses in a large Chinese pan-cancer cohort.
METHODS: We retrospectively analyzed 16,335 consecutive pan-cancer patients via next-generation sequencing to identify ALK fusions. Clinical characteristics, fusion partners, co-mutations, and treatment responses were evaluated. Progression-free survival (PFS) was assessed in advanced non-small cell lung cancer (NSCLC) patients receiving first-line ALK tyrosine kinase inhibitors (TKIs), stratified by EML4-ALK variants and TP53 status.
RESULTS: ALK fusions were detected in 321 patients. NSCLC accounted for 93.1% (299/321), predominantly adenocarcinomas (292/299, 97.7%). EML4 was the predominant fusion partner, accounting for 92.1% of ALK fusion in lung adenocarcinoma but only 27.3% in extrapulmonary tumors. Conversely, non-EML4 fusions were more frequent in extrapulmonary tumors (72.7%). Among 13 evaluable advanced-stage patients with rare ALK fusions, 10 achieved objective response (76.9%). In 161 advanced or recurrent NSCLC patients treated with ALK-TKIs, the median PFS was 28.2 months. Patients with long EML4-ALK variants had superior PFS than those with short variants when treated with second-generation TKIs (55.7 vs. 27.1 months; p = 0.019). TP53 co-mutations were associated with shorter PFS in the first-generation TKI subgroup (5.6 vs. 21.4 months; p = 0.009).
CONCLUSIONS: While ALK fusion partners exhibit tumor-type specificity, ALK-TKIs demonstrate potential efficacy in rare fusions though these findings are exploratory and need validation. Short EML4-ALK variants and TP53 co-mutation are associated with poorer TKI efficacy.