| [1] |
Clough E, Barrett T. The gene expression omnibus database[J]. Methods Mol Biol, 2016, 1418: 93-110.
doi: 10.1007/978-1-4939-3578-9_5
pmid: 27008011
|
| [2] |
Tomczak K, Czerwińska P, Wiznerowicz M. The Cancer Genome Atlas (TCGA): An immeasurable source of knowledge[J]. Contemp Oncol, 2015, 19(1A): A68-A77.
|
| [3] |
Shojaei M, McLean AS. Interferon-stimulated gene IFI27 as a multifaceted candidate target in precision medicine[J]. Trends Immunol, 2025, 46(3): 219-228.
doi: 10.1016/j.it.2025.01.008
pmid: 40044530
|
| [4] |
Butt DQ, Harun MH, Che Jalil NA, et al. Protumorigenic interferon-stimulated genes in cancer: A comprehensive review[J]. Cureus, 2024, 16(6): e63216.
|
| [5] |
Gytz H, Hansen MF, Skovbjerg S, et al. Apoptotic properties of the type 1 interferon induced family of human mitochondrial membrane ISG12 proteins[J]. Biol Cell, 2017, 109(2): 94-112.
doi: 10.1111/boc.201600034
pmid: 27673746
|
| [6] |
Rosebeck S, Leaman DW. Mitochondrial localization and pro-apoptotic effects of the interferon-inducible protein ISG12a[J]. Apoptosis, 2008, 13(4): 562-572.
doi: 10.1007/s10495-008-0190-0
pmid: 18330707
|
| [7] |
Malhotra S, Bustamante MF, Pérez-Miralles F, et al. Search for specific biomarkers of IFNβ bioactivity in patients with multiple sclerosis[J]. PLoS One, 2011, 6(8): e23634.
doi: 10.1371/journal.pone.0023634
|
| [8] |
Papac-Milicevic N, Breuss JM, Zaujec J, et al. The interferon stimulated gene 12 inactivates vasculoprotective functions of NR4A nuclear receptors[J]. Circ Res, 2012, 110(8): e50-e63.
|
| [9] |
Gjermandsen IM, Justesen J, Martensen PM. The interferon-induced gene ISG12 is regulated by various cytokines as the gene 6-16 in human cell lines[J]. Cytokine, 2000, 12(3): 233-238.
pmid: 10704250
|
| [10] |
Li TW, Fu JX, Zeng ZX, et al. TIMER2.0 for analysis of tumor-infiltrating immune cells[J]. Nucleic Acids Res, 2020, 48(W1): W509-W514.
doi: 10.1093/nar/gkaa407
|
| [11] |
Tang ZF, Kang BX, Li CW, et al. GEPIA2: An enhanced web server for large-scale expression profiling and interactive analysis[J]. Nucleic Acids Res, 2019, 47(W1): W556-W560.
doi: 10.1093/nar/gkz430
|
| [12] |
Chandrashekar DS, Bashel B, Balasubramanya SAH, et al. UALCAN aportal for facilitating tumor subgroup gene expression and survival analyses[J]. Neoplasia, 2017, 19(8): 649-658.
doi: S1476-5586(17)30179-3
pmid: 28732212
|
| [13] |
Cerami E, Gao JJ, Dogrusoz U, et al. The cBio cancer genomics portal: An open platform for exploring multidimensional cancer genomics data[J]. Cancer Discov, 2012, 2(5): 401-404.
doi: 10.1158/2159-8290.CD-12-0095
pmid: 22588877
|
| [14] |
Rui R, Zhou LQ, He SM. Cancer immunotherapies: Advances and bottlenecks[J]. Front Immunol, 2023, 14: 1212476.
doi: 10.3389/fimmu.2023.1212476
|
| [15] |
de Visser KE, Joyce JA. The evolving tumor microenvironment: From cancer initiation to metastatic outgrowth[J]. Cancer Cell, 2023, 41(3): 374-403.
doi: 10.1016/j.ccell.2023.02.016
pmid: 36917948
|
| [16] |
Kennel KB, Bozlar M, De ValkAF, et al. Cancer-associated fibroblasts in inflammation and antitumor immunity[J]. Clin Cancer Res, 2023, 29(6): 1009-1016.
doi: 10.1158/1078-0432.CCR-22-1031
|
| [17] |
Arpinati L, Scherz-Shouval R. From gatekeepers to providers: Regulation of immune functions by cancer-associated fibroblasts[J]. Trends Cancer, 2023, 9(5): 421-443.
doi: 10.1016/j.trecan.2023.01.007
pmid: 36870916
|
| [18] |
Bardou P, Mariette J, Escudié F, et al. Jvenn: An interactive Venn diagram viewer[J]. BMC Bioinformatics, 2014, 15(1): 293.
doi: 10.1186/1471-2105-15-293
|
| [19] |
Tang DD, Chen MJ, Huang XH, et al. SRplot: A free online platform for data visualization and graphing[J]. PLoS One, 2023, 18(11): e0294236.
doi: 10.1371/journal.pone.0294236
|
| [20] |
Padzińska-PruszyńskaI B, Taciak B, Kiraga Ł, et al. Targeting cancer: Microenvironment and immunotherapy innovations[J]. Int J Mol Sci, 2024, 25(24): 13569.
doi: 10.3390/ijms252413569
|
| [21] |
Chen YX, Yu DN, Qian H, et al. CD8+T cell-based cancer immunotherapy[J]. J Transl Med, 2024, 22(1): 394.
doi: 10.1186/s12967-024-05134-6
|
| [22] |
Zhou DE, Zheng L. Recent advances in cancer-associated fibroblast: Biomarkers, signaling pathways, and therapeutic opportunities[J]. Chin Med J, 2024, 137(6): 638-650.
doi: 10.1097/CM9.0000000000003031
|
| [23] |
Xu L, Zu TJ, Li T, et al. ATF3 downmodulates its new targets IFI6 and IFI27 to suppress the growth and migration of tongue squamous cell carcinoma cells[J]. PLoS Genet, 2021, 17(2): e1009283.
doi: 10.1371/journal.pgen.1009283
|
| [24] |
Chiang KC, Huang ST, Wu RC, et al. Interferon α-inducible protein 27 is an oncogene and highly expressed in cholangiocarcinoma patients with poor survival[J]. Cancer Manag Res, 2019, 11: 1893-1905.
doi: 10.2147/CMAR
|
| [25] |
Villamayor L, López-García D, Rivero V, et al. The IFN-stimulated gene IFI27 counteracts innate immune responses after viral infections by interfering with RIG-I signaling[J]. Front Microbiol, 2023, 14: 1176177.
doi: 10.3389/fmicb.2023.1176177
|
| [26] |
Girone C, Calati F, Lo Cigno I, et al. The RIG-I agonist M8 triggers cell death and natural killer cell activation in human papillomavirus-associated cancer and potentiates cisplatin cytotoxicity[J]. Cancer Immunol Immunother, 2023, 72(9): 3097-3110.
doi: 10.1007/s00262-023-03483-7
pmid: 37356050
|
| [27] |
Li SQ, Xie Y, Zhang W, et al. Interferon alpha-inducible protein 27 promotes epithelial-mesenchymal transition and induces ovarian tumorigenicity and stemness[J]. J Surg Res, 2015, 193(1): 255-264.
doi: 10.1016/j.jss.2014.06.055
pmid: 25103640
|
| [28] |
Mandahl N, Mertens F, Mitelman F. Gene amplification in neoplasia: A cytogenetic survey of 80 131 cases[J]. Genes Chromosomes Cancer, 2024, 63(1): e23214.
doi: 10.1002/gcc.v63.1
|
| [29] |
Nozawa H, Oda E, Ueda S, et al. Functionally inactivating point mutation in the tumor-suppressor IRF-1 gene identified in human gastric cancer[J]. Int J Cancer, 1998, 77(4): 522-527.
doi: 10.1002/(sici)1097-0215(19980812)77:4<522::aid-ijc8>3.0.co;2-w
pmid: 9679752
|
| [30] |
Purbey PK, Seo J, Paul MK, et al. Opposing tumor-cell-intrinsic and-extrinsic roles of the IRF1 transcription factor in antitumor immunity[J]. Cell Rep, 2024, 43(6): 114289.
doi: 10.1016/j.celrep.2024.114289
|
| [31] |
Bhandarkar V, Dinter T, Spranger S. Architects of immunity: How dendritic cells shape CD8+ T cell fate in cancer[J]. Sci Immunol, 2025, 10(103): eadf4726.
|