A Novel Prognostic Signature Associated With the Tumor Microenvironment in Kidney Renal Clear Cell Carcinoma

被引:8
作者
Pei, Dongchen [1 ]
Xu, Chaojie [1 ]
Wang, Dong [1 ]
Shi, Xiaoxue [1 ]
Zhang, Yurui [1 ]
Liu, Yi [1 ]
Guo, Jianhua [1 ]
Liu, Nan [1 ]
Zhu, Haipeng [1 ]
机构
[1] Zhengzhou Univ, Affiliated Hosp 5, Dept Urol, Zhengzhou, Peoples R China
来源
FRONTIERS IN ONCOLOGY | 2022年 / 12卷
关键词
kidney renal clear cell carcinoma; bioinformatics; tumor microenvironment; prognosis signature; NMF (nonnegative matrix factorization); IMMUNE; CANCER; IDENTIFICATION; IMMUNOTHERAPY; HETEROGENEITY; BIOMARKERS; TARGETS; FAMILY; ADAM8; ATLAS;
D O I
10.3389/fonc.2022.912155
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
BackgroundThe tumor microenvironment (TME) is a complex and evolving environment, and the tumor immune microenvironment in kidney renal clear cell carcinoma (KIRC) has a strong suppressive profile. This study investigates the potential prognostic role and value of genes of the tumor microenvironment in KIRC. MethodsThe transcriptome sequencing data of 530 cases and 39 cases of KIRC and the corresponding clinical prognosis information were downloaded from TCGA data and GEO data, respectively, and TME-related gene expression profiles were extracted. A prognostic signature was constructed and evaluated using univariate Cox regression analysis and LASSO regression analysis. Gene set enrichment analysis (GSEA) was used to obtain the biological process of gene enrichment in patients with high and low-risk groups. ResultsA prognostic signature consisting of eight TME-related genes (LRFN1, CSF1, UCN, TUBB2B, SERPINF1, ADAM8, ABCB4, CCL22) was constructed. Kaplan-Meier survival analysis yielded significantly lower survival times for patients in the high-risk group than in the low-risk group, and the AUC values for the ROC curves of this prognostic signature were essentially greater than 0.7, and univariate and multifactorial Cox regression analyses indicated that the risk score was independent risk factors for KIRC prognosis. GSEA analysis showed that immune-related biological processes were enriched in the high-risk group and that risk values were strongly associated with multiple immune cell scores and immune checkpoint-related genes (PDCD1, CTLA4). ConclusionsThe prognostic signature can accurately predict the prognosis of KIRC patients, which may provide new ideas for future precision immunotherapy of KIRC.
引用
收藏
页数:13
相关论文
共 48 条
[1]  
Anderson NM, 2020, CURR BIOL, V30, pR921, DOI 10.1016/j.cub.2020.06.081
[2]   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
[3]   MYC regulates the antitumor immune response through CD47 and PD-L1 [J].
Casey, Stephanie C. ;
Tong, Ling ;
Li, Yulin ;
Do, Rachel ;
Walz, Susanne ;
Fitzgerald, Kelly N. ;
Gouw, Arvin M. ;
Baylot, Virginie ;
Guetgemann, Ines ;
Eilers, Martin ;
Felsher, Dean W. .
SCIENCE, 2016, 352 (6282) :227-231
[4]   KCNN4 is a potential prognostic marker and critical factor affecting the immune status of the tumor microenvironment in kidney renal clear cell carcinoma [J].
Chen, Shaohua ;
Wang, Chengbang ;
Su, Xiaotao ;
Dai, Xiaodi ;
Li, Songheng ;
Mo, Zengnan .
TRANSLATIONAL ANDROLOGY AND UROLOGY, 2021, 10 (06) :2454-2470
[5]   Heterogeneity of tumor microenvironment is associated with clinical prognosis of non-clear cell renal cell carcinoma: a single-cell genomics study [J].
Chen, Wen-jin ;
Cao, Hao ;
Cao, Jian-wei ;
Zuo, Li ;
Qu, Fa-jun ;
Xu, Da ;
Zhang, Hao ;
Gong, Hai-yi ;
Chen, Jia-xin ;
Ye, Jian-qing ;
Gan, Si-shun ;
Zhou, Wang ;
Zhu, Da-wei ;
Pan, Xiu-Wu ;
Cui, Xin-gang .
CELL DEATH & DISEASE, 2022, 13 (01)
[6]   An Immune Atlas of Clear Cell Renal Cell Carcinoma [J].
Chevrier, Stephane ;
Levine, Jacob Harrison ;
Zanotelli, Vito Riccardo Tomaso ;
Silina, Karina ;
Schulz, Daniel ;
Bacac, Marina ;
Ries, Carola Hermine ;
Ailles, Laurie ;
Jewett, Michael Alexander Spencer ;
Moch, Holger ;
van den Broek, Maries ;
Beisel, Christian ;
Stadler, Michael Beda ;
Gedye, Craig ;
Reis, Bernhard ;
Pe'er, Dana ;
Bodenmiller, Bernd .
CELL, 2017, 169 (04) :736-749
[7]   ADAM8 in invasive cancers: links to tumor progression, metastasis, and chemoresistance [J].
Conrad, Catharina ;
Benzel, Julia ;
Dorzweiler, Kristina ;
Cook, Lena ;
Schlomann, Uwe ;
Zarbock, Alexander ;
Slater, Emily P. ;
Nimsky, Christopher ;
Bartsch, Joerg W. .
CLINICAL SCIENCE, 2019, 133 (01) :83-99
[8]   The immunology of renal cell carcinoma [J].
Diaz-Montero, C. Marcela ;
Rini, Brian I. ;
Finke, James H. .
NATURE REVIEWS NEPHROLOGY, 2020, 16 (12) :721-735
[9]   Cancer immunoediting: from immunosurveillance to tumor escape [J].
Dunn, GP ;
Bruce, AT ;
Ikeda, H ;
Old, LJ ;
Schreiber, RD .
NATURE IMMUNOLOGY, 2002, 3 (11) :991-998
[10]   A flexible R package for nonnegative matrix factorization [J].
Gaujoux, Renaud ;
Seoighe, Cathal .
BMC BIOINFORMATICS, 2010, 11