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A pan-cancer study of spalt-like transcription factors 1/2/3/4 as therapeutic targets
Ting Ma1, Shanping Shi2, Haizhong Jiang3
1The Affiliated Hospital of Medical School, Ningbo University, Ningbo, China; Institute of Biochemistry and Molecular Biology, School of Medicine, Ningbo University, Ningbo, China.
Abstract:
Spalt-like transcription factors (SALLs) are evolutionarily conserved proteins that participate in embryonic development. Four members of the SALL family, SALL1, SALL2, SALL3, and SALL4, are involved in cellular apoptosis, angiogenesis, invasion, and metastasis of tumors. We used the TCGA pan-cancer data to conduct a comprehensive analysis of SALL genes. High heterogeneity in the expression of these genes was observed across various cancers, SALL1 and SALL2 were downregulated, whereas SALL4 was upregulated. Moreover, we verified that SALL4 was commonly associated with survival disadvantage, whereas others were linked to a better prognosis. In renal cancer, SALL1, SALL2, and SALL3 showed downregulation, suggesting that they acted as tumor suppressors. Furthermore, SALLs were associated with immune infiltrate subtypes, with a close association between different degrees of infiltration of stromal cells and immune cells. DNA and RNA analyses in different tumors suggested different degrees of negative or positive correlation with tumor stem cell-like features. Finally, we revealed that SALLs were related to cancer cell resistance. Our results highlight the necessity to further study each SALL gene as a separate entity in specific types of cancer. Although this article showed that SALLs could be promising targets for cancer therapy, it needs further studies to validate the findings.
Insights
Spalt-like transcription factors (SALLs) impact cancer development and patient survival. While SALL4 correlates with poor prognosis, other SALL genes may act as tumor suppressors, offering potential therapeutic targets.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Spalt-like transcription factors (SALLs) are evolutionarily conserved proteins crucial for embryonic development.
- Four SALL family members (SALL1-4) are implicated in tumor apoptosis, angiogenesis, invasion, and metastasis.
Purpose of the Study:
- To comprehensively analyze the pan-cancer expression and prognostic significance of SALL genes.
- To investigate the association of SALL genes with tumor-infiltrating immune cells, stem cell-like features, and cancer cell resistance.
Main Methods:
- Utilized The Cancer Genome Atlas (TCGA) pan-cancer dataset for gene expression analysis.
- Correlated SALL gene expression with patient survival, immune cell infiltration, and stem cell-like characteristics.
Main Results:
- Observed significant heterogeneity in SALL gene expression across cancers; SALL1/2 downregulated, SALL4 upregulated.
- SALL4 associated with survival disadvantage, while other SALLs linked to better prognosis.
- Identified correlations between SALLs, immune/stromal cell infiltration, tumor stemness, and cancer cell resistance.
Conclusions:
- SALL genes exhibit diverse roles in tumorigenesis and patient outcomes, necessitating cancer-specific investigations.
- SALLs represent potential therapeutic targets, warranting further validation in preclinical and clinical studies.
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