Expression and Clinical Implications of LAG-3 in Small Cell Lung Cancer
Liangdong Sun1, Junjie Hu1, Jue Wang1
1Department of Thoracic Surgery, Shanghai Pulmonary Hospital, School of Medicine, Tongji University, Shanghai, China.
Abstract:
The PD-L1 immune checkpoint inhibitors (ICIs) improve the survival in small cell lung cancer (SCLC), yet only a small subset experiences durable responses, possibly due to less than 20% of SCLC expressing PD-L1 > 1% of tumor cells. Evaluating the expression of checkpoint molecules in SCLC may identify molecules beyond PD-L1 that are amenable to ICIs. We firstly evaluated 28 immune checkpoint molecules via RNA-seq data in the Cancer Cell Line Encyclopedia database. Next, our in-house proteogenomic dataset and other publicly available datasets, including microarray data, RNA-seq data, and scRNA-seq data from tumor specimens, were enrolled. IMpower133 and Roper et al. datasets were employed to evaluate LAG-3 as a predictive marker of immunotherapy efficacy in SCLC. Finally, Immunohistochemistry was performed to verify LAG-3 expression in SCLC. LAG-3 exhibited higher expression in SCLC cell lines than in lung adenocarcinoma, lung squamous cell carcinoma, and melanoma. Analysis of SCLC tumor and paired normal samples revealed the highest overexpression of LAG-3 in SCLC tumors among compiled checkpoint molecules. Higher LAG-3 expression correlated with longer overall survival and served as an independent favorable prognostic factor. Furthermore, higher LAG-3 expression was associated with increased MHC-I expression, immune cell infiltration, and certain immune checkpoints' expression. Increased LAG-3 expression correlated with ICI benefit in SCLC patients. scRNA-seq analysis revealed that LAG-3 was primarily expressed in the tumor cells and T cells, and LAG-3 expression was higher than that of PD-1, CD274, and CTLA-4 on the CD8+ T cells. LAG-3 might serve as a potential biomarker in SCLC.
Insights
Lymphocyte-activation gene 3 (LAG-3) shows higher expression in small cell lung cancer (SCLC) and may predict immunotherapy response. Higher LAG-3 levels correlate with improved survival and could serve as a novel biomarker for SCLC treatment.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Immune checkpoint inhibitors (ICIs) show promise in small cell lung cancer (SCLC), but durable responses are limited.
- Low PD-L1 expression in SCLC suggests other immune checkpoints may be relevant targets for ICIs.
Purpose of the Study:
- To evaluate the expression of 28 immune checkpoint molecules in SCLC.
- To identify potential biomarkers beyond PD-L1 for ICI therapy in SCLC.
- To assess Lymphocyte-activation gene 3 (LAG-3) as a predictive marker for immunotherapy efficacy in SCLC.
Main Methods:
- Analysis of RNA-seq data from cell lines (Cancer Cell Line Encyclopedia).
- Evaluation of proteogenomic and public datasets (microarray, RNA-seq, scRNA-seq) from tumor specimens.
- Immunohistochemistry to confirm LAG-3 expression in SCLC.
- Utilized IMpower133 and Roper et al. datasets to assess LAG-3's predictive value.
Main Results:
- LAG-3 expression was significantly higher in SCLC cell lines compared to other cancers.
- LAG-3 was the most overexpressed checkpoint molecule in SCLC tumors versus paired normal samples.
- Higher LAG-3 expression correlated with longer overall survival and was an independent favorable prognostic factor.
- LAG-3 expression associated with increased MHC-I, immune cell infiltration, and other immune checkpoints.
- LAG-3 expression on tumor cells and T cells, particularly CD8+ T cells, was higher than PD-1, CD274, and CTLA-4.
- Increased LAG-3 expression correlated with benefit from ICI therapy in SCLC patients.
Conclusions:
- LAG-3 is highly expressed in SCLC and may serve as a potential predictive biomarker for immunotherapy.
- Targeting LAG-3 could be a promising strategy to improve ICI efficacy in SCLC patients.


