Pan-Cancer Proteomics Analysis Reveals Wiskott-Aldrich Syndrome Protein as a Potential Regulator of Programmed Death-Ligand 1.
Liling HuDanya LiuDandan ZhengJiangli LuXiaoyi YuanYuying LiFujin ShiXinyu ShiQing-Yu HeQiuli LiChris Zhiyi ZhangPublished in: Journal of proteome research (2024)
The programmed death-ligand 1 (PD-L1) is a key mediator of immunosuppression in the tumor microenvironment. The expression of PD-L1 in cancer cells is useful for the clinical determination of an immune checkpoint blockade (ICB). However, the regulatory mechanism of the PD-L1 abundance remains incompletely understood. Here, we integrated the proteomics of 52 patients with solid tumors and examined immune cell infiltration to reveal PD-L1-related regulatory modules. Wiskott-Aldrich syndrome protein (WASP) was identified as a potential regulator of PD-L1 transcription. In two independent cohorts containing 164 cancer patients, WASP expression was significantly associated with PD-L1. High WASP expression contributed to immunosuppressive cell composition, including cells positive for immune checkpoints (PD1, CTLA4, TIGIT, and TIM3), FoxP3+ Treg cells, and CD163+ tumor-associated macrophages. Overexpression of WASP increased, whereas knockdown of WASP decreased the protein level of PD-L1 in cancer cells without alteration of PD-L1 protein stability. The WASP-mediated cell migration and invasion were markedly attenuated by the silence of PD-L1. Collectively, our data suggest that WASP is a potential regulator of PD-L1 and the WASP/PD-L1 axis is responsible for cell migration and an immunosuppressive microenvironment.
Keyphrases
- transcription factor
- binding protein
- poor prognosis
- induced apoptosis
- cell migration
- single cell
- protein protein
- cell cycle arrest
- stem cells
- mass spectrometry
- cell therapy
- small molecule
- regulatory t cells
- case report
- squamous cell carcinoma
- human health
- machine learning
- risk assessment
- electronic health record
- cell proliferation
- endoplasmic reticulum stress
- dna methylation
- label free
- mesenchymal stem cells
- microbial community
- genome wide
- dendritic cells
- squamous cell
- pi k akt
- molecularly imprinted
- solid phase extraction