Construction and validation of a signature for T cell-positive regulators related to tumor microenvironment and heterogeneity of gastric cancer

被引:7
作者
Guo, Yangyang [1 ]
Zhang, Yingjue [2 ]
Cen, Kenan [1 ]
Dai, Ying [1 ]
Mai, Yifeng [1 ]
Hong, Kai [1 ,3 ]
机构
[1] Ningbo Univ, Affiliated Hosp 1, Dept Colorectal Surg, Ningbo, Zhejiang, Peoples R China
[2] Osaka Univ, Grad Sch Med, Dept Mol Pathol, Div Hlth Sci, Suita, Osaka, Japan
[3] Ningbo Univ, Med Sch, Ningbo, Zhejiang, Peoples R China
关键词
positive regulator; T cell; gastric cancer; prognosis; tumor microenvironment; INFILTRATING IMMUNE CELLS; WNT/BETA-CATENIN; MOLECULAR SUBTYPES; CD4(+); EXPRESSION; PATHWAY; MACROPHAGES; HALLMARKS; PREDICTS; BLOCKADE;
D O I
10.3389/fimmu.2023.1125203
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background: Positive regulators of T cell function play a vital role in the proliferation and differentiation of T cells. However, their functions in gastric cancer have not been explored so far.Methods: The TCGA-STAD dataset was utilized to perform consensus clustering in order to identify subtypes related to T cell-positive regulators. The prognostic differentially expressed genes of these subtypes were identified using the least absolute shrinkage and selection operator (LASSO) regression analysis. To validate the robustness of the identified signature, verification analyses were conducted across the TCGA-train, TCGA-test, and GEO datasets. Additionally, a nomogram was constructed to enhance the clinical efficacy of this predictive tool. Transwell migration, colony formation, and T cell co-culture assays were used to confirm the function of the signature gene in gastric cancer and its influence on T cell activation.Results: Two distinct clusters of gastric cancer, related to T cell-positive regulation, were discovered through the analysis of gene expression. These clusters exhibited notable disparities in terms of survival rates (P = 0.028), immune cell infiltration (P< 0.05), and response to immunotherapy (P< 0.05). Furthermore, a 14-gene signature was developed to classify gastric cancer into low- and high-risk groups, revealing significant differences in survival rates, tumor microenvironment, tumor mutation burden, and drug sensitivity (P< 0.05). Lastly, a comprehensive nomogram model was constructed, incorporating risk factors and various clinical characteristics, to provide an optimal predictive tool. Additionally, an assessment was conducted on the purported molecular functionalities of low- and high-risk gastric cancers. Suppression of DNAAF3 has been observed to diminish the migratory and proliferative capabilities of gastric cancer, as well as attenuate the activation of T cells induced by gastric cancer within the tumor microenvironment.Conclusion: We identified an ideal prognostic signature based on the positive regulators of T cell function in this study.
引用
收藏
页数:19
相关论文
共 77 条
[1]   CD4+ T Cell Help Confers a Cytotoxic T Cell Effector Program Including Coinhibitory Receptor Downregulation and Increased Tissue Invasiveness [J].
Ahrends, Tomasz ;
Spanjaard, Aldo ;
Pilzecker, Bas ;
Babala, Nikolina ;
Bovens, Astrid ;
Xiao, Yanling ;
Jacobs, Heinz ;
Borst, Jannie .
IMMUNITY, 2017, 47 (05) :848-+
[2]   Pathobiology of Helicobacter pylori-Induced Gastric Cancer [J].
Amieva, Manuel ;
Peek, Richard M., Jr. .
GASTROENTEROLOGY, 2016, 150 (01) :64-78
[3]   xCell: digitally portraying the tissue cellular heterogeneity landscape [J].
Aran, Dvir ;
Hu, Zicheng ;
Butte, Atul J. .
GENOME BIOLOGY, 2017, 18
[4]   IFN-γ-related mRNA profile predicts clinical response to PD-1 blockade [J].
Ayers, Mark ;
Lunceford, Jared ;
Nebozhyn, Michael ;
Murphy, Erin ;
Loboda, Andrey ;
Kaufman, David R. ;
Albright, Andrew ;
Cheng, Jonathan D. ;
Kang, S. Peter ;
Shankaran, Veena ;
Piha-Paul, Sarina A. ;
Yearley, Jennifer ;
Seiwert, Tanguy Y. ;
Ribas, Antoni ;
McClanahan, Terrill K. .
JOURNAL OF CLINICAL INVESTIGATION, 2017, 127 (08) :2930-2940
[5]   Estimating the population abundance of tissue-infiltrating immune and stromal cell populations using gene expression [J].
Becht, Etienne ;
Giraldo, Nicolas A. ;
Lacroix, Laetitia ;
Buttard, Benedicte ;
Elarouci, Nabila ;
Petitprez, Florent ;
Selves, Janick ;
Laurent-Puig, Pierre ;
Sautes-Fridman, Catherine ;
Fridman, Wolf H. ;
de Reynies, Aurelien .
GENOME BIOLOGY, 2016, 17
[6]   Helping the CD8+ T-cell response [J].
Bevan, MJ .
NATURE REVIEWS IMMUNOLOGY, 2004, 4 (08) :595-602
[7]   Autoimmunity and Gastric Cancer [J].
Bizzaro, Nicola ;
Antico, Antonio ;
Villalta, Danilo .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (02)
[8]   Landscape of Microsatellite Instability Across 39 Cancer Types [J].
Bonneville, Russell ;
Krook, Melanie A. ;
Kautto, Esko A. ;
Miya, Jharna ;
Wing, Michele R. ;
Chen, Hui-Zi ;
Reeser, Julie W. ;
Yu, Lianbo ;
Roychowdhury, Sameek .
JCO PRECISION ONCOLOGY, 2017, 1 :1-15
[9]   CD4+ T cell help in cancer immunology and immunotherapy [J].
Borst, Jannie ;
Ahrends, Tomasz ;
Babala, Nikolina ;
Melief, Cornelis J. M. ;
Kastenmueller, Wolfgang .
NATURE REVIEWS IMMUNOLOGY, 2018, 18 (10) :635-647
[10]   The Gene Ontology Resource: 20 years and still GOing strong [J].
Carbon, S. ;
Douglass, E. ;
Dunn, N. ;
Good, B. ;
Harris, N. L. ;
Lewis, S. E. ;
Mungall, C. J. ;
Basu, S. ;
Chisholm, R. L. ;
Dodson, R. J. ;
Hartline, E. ;
Fey, P. ;
Thomas, P. D. ;
Albou, L. P. ;
Ebert, D. ;
Kesling, M. J. ;
Mi, H. ;
Muruganujian, A. ;
Huang, X. ;
Poudel, S. ;
Mushayahama, T. ;
Hu, J. C. ;
LaBonte, S. A. ;
Siegele, D. A. ;
Antonazzo, G. ;
Attrill, H. ;
Brown, N. H. ;
Fexova, S. ;
Garapati, P. ;
Jones, T. E. M. ;
Marygold, S. J. ;
Millburn, G. H. ;
Rey, A. J. ;
Trovisco, V. ;
dos Santos, G. ;
Emmert, D. B. ;
Falls, K. ;
Zhou, P. ;
Goodman, J. L. ;
Strelets, V. B. ;
Thurmond, J. ;
Courtot, M. ;
Osumi-Sutherland, D. ;
Parkinson, H. ;
Roncaglia, P. ;
Acencio, M. L. ;
Kuiper, M. ;
Laegreid, A. ;
Logie, C. ;
Lovering, R. C. .
NUCLEIC ACIDS RESEARCH, 2019, 47 (D1) :D330-D338