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Published on: May 10, 2024
Comprehensive molecular and clinical characterization of SLC1A5 in human cancers
Han Zhang1, Kaisa Cui1, Surui Yao1
1Wuxi Cancer Institute, Affiliated Hospital of Jiangnan University, Wuxi 214062, Jiangsu, China; Laboratory of Cancer Epigenetics, Wuxi School of Medicine, Jiangnan University, Wuxi 214122, Jiangsu, China.
Abstract:
Although SLC1A5 has been reported to be closely associated with some cancer types, a comprehensive and systematic assessment of SLC1A5 across human cancers is lacking. Thus, Pan-cancer analysis of SLC1A5 was performed across 30 types of human cancers in this study. We examined mRNA expression, protein expression, copy number variation (CNV), DNA methylation, clinical relevance, cell functions, drug response and total immune infiltrates of SLC1A5 in more than 9000 patients across 30 human cancer types from The Cancer Genome Atlas (TCGA) dataset. Additionally, nine independent Gene Expression Omnibus datasets, more than 800 cancer cell lines from the Cancer Cell Line Encyclopedia dataset and the Project Achilles dataset were used to validate our findings in the TCGA dataset. Landscapes of SLC1A5 were established across multiple cancers. We showed that SLC1A5 is upregulated in multiple cancers, particularly in digestive and respiratory system cancers. SLC1A5 upregulation may be driven by CNV gain and DNA hypomethylation in human cancers. Furthermore, SLC1A5 overexpression is associated with tumor progression and poor survival in multiple cancers. Moreover, we systematically explored the potential effects of SLC1A5 expression on cell functions and drug response in human cancers. SLC1A5 knockdown showed significant proliferation-inhibiting effects in most human cancer types, especially in the digestive system and KRAS-mutant cancers. SLC1A5 expression is associated with proliferation activities of KRAS-mutant cancer cell lines and drug response of many anti-cancer drugs. Finally, we demonstrated that SLC1A5-realted tumor immune microenvironment characteristics showed strong heterogeneity in human cancers. Taken together, our findings highlight the important roles of SLC1A5 in tumorigenesis, progression, prognosis and therapy.
Insights
The solute carrier family 1 member 5 (SLC1A5) is upregulated in many cancers, driving tumor growth and poor survival. Targeting SLC1A5 shows promise for inhibiting cancer proliferation and improving drug response.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- The role of solute carrier family 1 member 5 (SLC1A5) in cancer is not fully understood.
- Previous studies suggest SLC1A5 is linked to certain cancer types, but a comprehensive analysis is missing.
Purpose of the Study:
- To conduct a systematic pan-cancer analysis of SLC1A5 across 30 human cancer types.
- To investigate the expression, clinical relevance, functional impact, and therapeutic potential of SLC1A5 in cancer.
Main Methods:
- Utilized The Cancer Genome Atlas (TCGA) dataset for mRNA and protein expression, copy number variation (CNV), DNA methylation, and clinical data from over 9000 patients.
- Validated findings using Gene Expression Omnibus (GEO) datasets, Cancer Cell Line Encyclopedia (CCLE), and Project Achilles.
- Analyzed SLC1A5's association with tumor progression, survival, cell proliferation, drug response, and tumor immune microenvironment.
Main Results:
- SLC1A5 is significantly upregulated in multiple cancers, especially digestive and respiratory system cancers, driven by CNV gain and DNA hypomethylation.
- SLC1A5 overexpression correlates with tumor progression and poorer survival.
- SLC1A5 knockdown inhibits cancer cell proliferation, particularly in digestive and KRAS-mutant cancers, and influences drug response and tumor immunity.
Conclusions:
- SLC1A5 plays a critical role in tumorigenesis, progression, and prognosis across various human cancers.
- SLC1A5 represents a potential therapeutic target for cancer treatment, with implications for drug response and patient outcomes.
- The study establishes SLC1A5 as a significant pan-cancer biomarker with diverse functional roles in cancer development and progression.

