Long non-coding RNAs and JAK/STAT signaling pathway regulation in colorectal cancer development
暂无分享,去创建一个
A. Ghasemian | Y. Mansoori | Farzaneh Darbeheshti | X. Deng | M. Kohansal | H. Omear | Hailin Tang | Zhangling Wang | Pardis Mansouri | Elham Zarenezhad | Babak Pezeshki
[1] Jindong Xie,et al. Circular RNA: A promising new star of vaccine , 2023, Journal of translational internal medicine.
[2] L. Mikhaleva,et al. Long Non-Coding RNAs in Colorectal Cancer: Navigating the Intersections of Immunity, Intercellular Communication, and Therapeutic Potential , 2023, Biomedicines.
[3] Hailin Tang,et al. Isoliquiritigenin inhibits circ0030018 to suppress glioma tumorigenesis via the miR‐1236/HER2 signaling pathway , 2023, MedComm.
[4] A. Akbari,et al. Regulation of long non-coding RNAs XIST and ROR induced by homeodomain protein TGIF2LX in colorectal cancer , 2022, Journal of Cancer Research and Therapeutics.
[5] Q. Gou,et al. LncRNAs as biomarkers for predicting radioresistance and survival in cancer: a meta-analysis , 2022, Scientific Reports.
[6] M. Lulli,et al. Role of Non-Coding RNAs in Colorectal Cancer: Focus on Long Non-Coding RNAs , 2022, International journal of molecular sciences.
[7] Zhuo Liu,et al. The lncRNA NEAT1 Inhibits miRNA-216b and Promotes Colorectal Cancer Progression by Indirectly Activating YY1 , 2022, Journal of oncology.
[8] Yi Lu,et al. Identification and validation of a fatty acid metabolism-related lncRNA signature as a predictor for prognosis and immunotherapy in patients with liver cancer , 2022, BMC Cancer.
[9] Jia He,et al. Comprehensive landscape and future perspectives of long noncoding RNAs (lncRNAs) in colorectal cancer (CRC): Based on a bibliometric analysis , 2022, Non-coding RNA research.
[10] F. Chen,et al. The crucial roles of long noncoding RNA SNHGs in lung cancer , 2022, Clinical and Translational Oncology.
[11] Liang Gao,et al. Long non-coding RNA LINC00152 in cancer: Roles, mechanisms, and chemotherapy and radiotherapy resistance , 2022, Frontiers in Oncology.
[12] Wu-chun Feng,et al. MicroRNA-188-5p targeting Forkhead Box L1 promotes colorectal cancer progression via activating Wnt/β-catenin signaling , 2022, Oncology Research.
[13] Tianzhun Wu,et al. Research Progress of Long Non-Coding RNA GAS5 in Malignant Tumors , 2022, Frontiers in Oncology.
[14] Lianghu Qu,et al. CREB1 contributes colorectal cancer cell plasticity by regulating lncRNA CCAT1 and NF-κB pathways , 2022, Science China Life Sciences.
[15] A. Alizadeh,et al. Novel targets in rectal cancer by considering lncRNA–miRNA–mRNA network in response to Lactobacillus acidophilus consumption: a randomized clinical trial , 2022, Scientific reports.
[16] Jia He,et al. The Mechanism of Long Non-coding RNA in Cancer Radioresistance/Radiosensitivity: A Systematic Review , 2022, Frontiers in Pharmacology.
[17] Kongming Wu,et al. Notch signaling pathway: architecture, disease, and therapeutics , 2022, Signal Transduction and Targeted Therapy.
[18] Zhuo Gao,et al. Dysregulation of MiR-144-5p/RNF187 Axis Contributes To the Progression of Colorectal Cancer , 2022, Journal of translational internal medicine.
[19] S. Mustjoki,et al. JAK‐STAT core cancer pathway: An integrative cancer interactome analysis , 2022, Journal of cellular and molecular medicine.
[20] S. Shamdani,et al. Weighted correlation network analysis revealed novel long non-coding RNAs for colorectal cancer , 2022, Scientific Reports.
[21] K. Young,et al. RNA-mediated immunotherapy regulating tumor immune microenvironment: next wave of cancer therapeutics , 2022, Molecular Cancer.
[22] S. Baritaki,et al. Long Non-Coding RNAs (lncRNAs) in Response and Resistance to Cancer Immunosurveillance and Immunotherapy , 2021, Cells.
[23] L. Z. Shi,et al. Bridging Radiotherapy to Immunotherapy: The IFN–JAK–STAT Axis , 2021, International journal of molecular sciences.
[24] Yuting He,et al. Promising Advances in LINC01116 Related to Cancer , 2021, Frontiers in Cell and Developmental Biology.
[25] Saman Zeeshan,et al. Targeting the immune microenvironment during immunotherapy for solid tumors , 2021, Molecular & cellular oncology.
[26] Hossein Khiabanian,et al. JAK/STAT of all trades: Linking inflammation with cancer development, tumor progression, and therapy resistance. , 2021, Carcinogenesis.
[27] M. Peymani,et al. LAMTOR5 expression level is a biomarker for colorectal cancer and lncRNA LAMTOR5-AS1 predicting miRNA sponging effect , 2021, Molecular Biology Reports.
[28] Jiang Chang,et al. Colorectal cancer risk variant rs7017386 modulates two oncogenic lncRNAs expression via ATF1-mediated long-range chromatin loop. , 2021, Cancer Letters.
[29] S. M. Toor,et al. Integrated whole transcriptome and small RNA analysis revealed multiple regulatory networks in colorectal cancer , 2021, Scientific Reports.
[30] Fang Wang,et al. Potential impact and mechanism of Long Non-coding RNAs on cancer and associated T cells , 2021, Journal of Cancer.
[31] Tao Jiang,et al. The circular RNA circSPARC enhances the migration and proliferation of colorectal cancer by regulating the JAK/STAT pathway , 2021, Molecular Cancer.
[32] Guoquan Tao,et al. LncRNA SLCO4A1-AS1 modulates colon cancer stem cell properties by binding to miR-150-3p and positively regulating SLCO4A1 , 2021, Laboratory Investigation.
[33] C. Subramanian,et al. LIMIT is an immunogenic lncRNA in cancer immunity and immunotherapy , 2021, Nature Cell Biology.
[34] Zhining Fan,et al. LncRNA KLK8 modulates stem cell characteristics in colon cancer. , 2021, Pathology, research and practice.
[35] Jing Liu,et al. Regulatory role of long non-coding RNA UCA1 in signaling pathways and its clinical applications , 2021, Oncology letters.
[36] Zhenlin Yang,et al. LINC00152 mediates CD8+ T-cell infiltration in gastric cancer through binding to EZH2 and regulating the CXCL9, 10/CXCR3 axis , 2021, Journal of Molecular Histology.
[37] J. Xu,et al. LncRNA OTUD6B-AS1 inhibits many cellular processes in colorectal cancer by sponging miR-21-5p and regulating PNRC2 , 2021, Human & experimental toxicology.
[38] Jian-hua Zhou,et al. The Emerging Landscape of Long Non-Coding RNAs in Colorectal Cancer Metastasis , 2021, Frontiers in Oncology.
[39] Xinxiang Li,et al. Invited review article: Cancer letters long non-coding RNAs in colorectal cancer: Novel oncogenic mechanisms and promising clinical applications. , 2021, Cancer letters.
[40] Li Zhou,et al. Long non-coding RNAs and cancer metastasis: Molecular basis and therapeutic implications. , 2021, Biochimica et biophysica acta. Reviews on cancer.
[41] Jie Wu,et al. LINC01116 facilitates colorectal cancer cell proliferation and angiogenesis through targeting EZH2-regulated TPM1 , 2021, Journal of Translational Medicine.
[42] A. Heimberger,et al. The Role and Therapeutic Targeting of JAK/STAT Signaling in Glioblastoma , 2021, Cancers.
[43] A. Farooqi,et al. Mechanistic role of DANCR in the choreography of signaling pathways in different cancers: Spotlight on regulation of Wnt/β-catenin and JAK/STAT pathways by oncogenic long non-coding RNA , 2021, Non-coding RNA research.
[44] Fei Ye,et al. Long noncoding RNA TPT1-AS1 promotes the progression and metastasis of colorectal cancer by upregulating the TPT1-mediated FAK and JAK-STAT3 signalling pathways , 2021, Aging.
[45] Wei Wang,et al. Long non-coding RNA OTUD6B-AS1 overexpression inhibits the proliferation, invasion and migration of colorectal cancer cells via downregulation of microRNA-3171 , 2021, Oncology letters.
[46] E. Song,et al. Non-coding RNAs rewire cancer metabolism networks. , 2021, Seminars in cancer biology.
[47] Zihua Chen,et al. Comprehensive analysis of lncRNA-miRNA-mRNA regulatory networks for microbiota-mediated colorectal cancer associated with immune cell infiltration , 2021, Bioengineered.
[48] Aimin Li,et al. CPEB3 functions as a tumor suppressor in colorectal cancer via JAK/STAT signaling , 2020, Aging.
[49] D. Fan,et al. Biological Implications and Clinical Potential of Metastasis-Related miRNA in Colorectal Cancer , 2020, Molecular therapy. Nucleic acids.
[50] H. Cui,et al. LncRNA LINC01116 Promotes the Development of Colorectal Cancer by Targeting miR-9-5p/STMN1 , 2020, OncoTargets and therapy.
[51] J. Park,et al. Cancer Metabolism: Phenotype, Signaling and Therapeutic Targets , 2020, Cells.
[52] Wei Huang,et al. Targeting STAT3 in Cancer Immunotherapy , 2020, Molecular cancer.
[53] Haijun Liu,et al. RP11-462C24.1 suppresses proliferation and invasion of colorectal carcinoma cells by regulating HSP70 through PI3K/AKT signaling pathway , 2020, Human cell.
[54] P. Zhao,et al. The long non-coding RNA HOXA11-AS promotes epithelial mesenchymal transition by sponging miR-149-3p in Colorectal Cancer , 2020, Journal of Cancer.
[55] Sen Yang,et al. Identification of diagnostic and prognostic lncRNA biomarkers in oral squamous carcinoma by integrated analysis and machine learning. , 2020, Cancer biomarkers : section A of Disease markers.
[56] D. Pang,et al. Noncoding RNAs: the shot callers in tumor immune escape , 2020, Signal Transduction and Targeted Therapy.
[57] D. Piao,et al. LncRNA ADAMTS9-AS2 inhibits gastric cancer (GC) development and sensitizes chemoresistant GC cells to cisplatin by regulating miR-223-3p/NLRP3 axis , 2020, Aging.
[58] Dan-guang Li,et al. Silencing of lncRNA LINC00346 Inhibits the Proliferation and Promotes the Apoptosis of Colorectal Cancer Cells Through Inhibiting JAK1/STAT3 Signaling , 2020, Cancer management and research.
[59] Jundong Zhou,et al. Overexpression of LINC00691 promotes the proliferation and invasion of gastric cancer cells via the Janus kinase/signal transducer and activator of transcription signalling pathway. , 2020, The international journal of biochemistry & cell biology.
[60] Ke-Tao Jin,et al. Roles of lncRNAs in cancer: Focusing on angiogenesis. , 2020, Life sciences.
[61] Wei Zhang,et al. miR-365a-3p regulates ADAM10-JAK-STAT signaling to suppress the growth and metastasis of colorectal cancer cells , 2020, Journal of Cancer.
[62] Daojie Yan,et al. lncRNA HAND2-AS1 Inhibits Liver Cancer Cell Proliferation and Migration by Upregulating SOCS5 to Inactivate the JAK-STAT Pathway. , 2020, Cancer biotherapy & radiopharmaceuticals.
[63] B. Parker,et al. JAK-STAT Signaling: A Double-Edged Sword of Immune Regulation and Cancer Progression , 2019, Cancers.
[64] Jun-feng Wang,et al. Long non-coding RNA RP11-468E2.5 curtails colorectal cancer cell proliferation and stimulates apoptosis via the JAK/STAT signaling pathway by targeting STAT5 and STAT6 , 2019, Journal of Experimental & Clinical Cancer Research.
[65] Yiran Huang,et al. The HOTAIR/miR-214/ST6GAL1 crosstalk modulates colorectal cancer procession through mediating sialylated c-Met via JAK2/STAT3 cascade , 2019, Journal of Experimental & Clinical Cancer Research.
[66] Jiandong Shi,et al. Comprehensive Analysis of the Expression Profiles of Long Non-Coding RNAs with Associated ceRNA Network Involved in the Colon Cancer Staging and Progression , 2019, Scientific Reports.
[67] S. Hann,et al. Novel Tumor Suppressor lncRNA Growth Arrest-Specific 5 (GAS5) In Human Cancer , 2019, OncoTargets and therapy.
[68] S. Tian,et al. Downregulating long non-coding RNA CCAT5 inhibits tumor growth, invasion and metastasis in colorectal cancer through suppressing STAT3. , 2019, European review for medical and pharmacological sciences.
[69] Jichun Yang,et al. Long Non-Coding RNA in the Pathogenesis of Cancers , 2019, Cells.
[70] Jiansheng Guo,et al. Long Non-coding RNA ITIH4-AS1 Accelerates the Proliferation and Metastasis of Colorectal Cancer by Activating JAK/STAT3 Signaling , 2019, Molecular therapy. Nucleic acids.
[71] M. Gorospe,et al. Long Noncoding RNAs in Intestinal Epithelium Homeostasis. , 2019, American journal of physiology. Cell physiology.
[72] Yan-Qiu Liu,et al. HOTAIR/miR-326/FUT6 axis facilitates colorectal cancer progression through regulating fucosylation of CD44 via PI3K/AKT/mTOR pathway. , 2019, Biochimica et biophysica acta. Molecular cell research.
[73] Jun Yao,et al. Oncogenic LncRNA downregulates cancer cell antigen presentation and intrinsic tumor suppression , 2019, Nature Immunology.
[74] Rongcun Yang,et al. The Pseudogene Olfr29-ps1 Promotes the Suppressive Function and Differentiation of Monocytic MDSCs , 2019, Cancer Immunology Research.
[75] S. Snapper,et al. STAT1 signaling shields T cells from NK cell-mediated cytotoxicity , 2019, Nature Communications.
[76] Yibin Kang,et al. Long Noncoding RNA GMAN, Up-regulated in Gastric Cancer Tissues, Is Associated With Metastasis in Patients and Promotes Translation of Ephrin A1 by Competitively Binding GMAN-AS. , 2019, Gastroenterology.
[77] Chao Yuan,et al. Novel long noncoding RNA OTUD6B-AS1 indicates poor prognosis and inhibits clear cell renal cell carcinoma proliferation via the Wnt/β-catenin signaling pathway , 2019, Molecular Cancer.
[78] Gui-yuan Li,et al. YAP1-induced MALAT1 promotes epithelial–mesenchymal transition and angiogenesis by sponging miR-126-5p in colorectal cancer , 2018, Oncogene.
[79] J. Babon,et al. The molecular details of cytokine signaling via the JAK/STAT pathway , 2018, Protein science : a publication of the Protein Society.
[80] Dan Ding,et al. Knockdown of lncRNA HOTAIR sensitizes breast cancer cells to ionizing radiation through activating miR-218 , 2018, Bioscience reports.
[81] Jinlan Jiang,et al. LINC01116 targets miR-520a-3p and affects IL6R to promote the proliferation and migration of osteosarcoma cells through the Jak-stat signaling pathway. , 2018, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[82] Z. Rahimi,et al. Interaction of long noncoding RNA MEG3 with miRNAs: A reciprocal regulation , 2018, Journal of cellular biochemistry.
[83] H. Yao,et al. NKILA lncRNA promotes tumor immune evasion by sensitizing T cells to activation-induced cell death , 2018, Nature Immunology.
[84] Xia Li,et al. Capturing functional long non-coding RNAs through integrating large-scale causal relations from gene perturbation experiments , 2018, EBioMedicine.
[85] Jian-Min Luo,et al. The Long Noncoding RNA MEG3 and its Target miR-147 Regulate JAK/STAT Pathway in Advanced Chronic Myeloid Leukemia , 2018, EBioMedicine.
[86] A. Yoshimura,et al. Negative Regulation of Cytokine Signaling in Immunity. , 2018, Cold Spring Harbor perspectives in biology.
[87] Zuozhang Yang,et al. Upregulated lncRNA ADAMTS9‐AS2 suppresses progression of lung cancer through inhibition of miR‐223‐3p and promotion of TGFBR3 , 2018, IUBMB life.
[88] Ning Zhang,et al. Long noncoding RNA BC200 regulates cell growth and invasion in colon cancer. , 2018, The international journal of biochemistry & cell biology.
[89] Lei Yang,et al. LncRNA H19/miR-29b-3p/PGRN Axis Promoted Epithelial-Mesenchymal Transition of Colorectal Cancer Cells by Acting on Wnt Signaling , 2018, Molecules and cells.
[90] P. Gonzalez-Ericsson,et al. Melanoma response to anti-PD-L1 immunotherapy requires JAK1 signaling, but not JAK2 , 2018, Oncoimmunology.
[91] Pingjian Yu,et al. A RNA-Sequencing approach for the identification of novel long non-coding RNA biomarkers in colorectal cancer , 2018, Scientific Reports.
[92] O. Shaker,et al. Association of rs6983267 at 8q24, HULC rs7763881 polymorphisms and serum lncRNAs CCAT2 and HULC with colorectal cancer in Egyptian patients , 2017, Scientific Reports.
[93] De Chen,et al. A Peptide Encoded by a Putative lncRNA HOXB-AS3 Suppresses Colon Cancer Growth. , 2017, Molecular cell.
[94] Chen Li,et al. lncRNA HOTAIR Contributes to 5FU Resistance through Suppressing miR-218 and Activating NF-κB/TS Signaling in Colorectal Cancer , 2017, Molecular therapy. Nucleic acids.
[95] Hossein Aazami,et al. The role of JAK-STAT signaling pathway and its regulators in the fate of T helper cells , 2017, Cell Communication and Signaling.
[96] Jun Yang,et al. Long Noncoding RNA MEG3 Negatively Regulates Proliferation and Angiogenesis in Vascular Endothelial Cells. , 2017, DNA and cell biology.
[97] T. Waldmann,et al. Disorders of the JAK/STAT Pathway in T Cell Lymphoma Pathogenesis: Implications for Immunotherapy. , 2017, Annual review of immunology.
[98] Shifeng Huang,et al. Meta-signature LncRNAs serve as novel biomarkers for colorectal cancer: integrated bioinformatics analysis, experimental validation and diagnostic evaluation , 2017, Scientific Reports.
[99] Z. Zeng,et al. Co-expression of AFAP1-AS1 and PD-1 predicts poor prognosis in nasopharyngeal carcinoma , 2017, Oncotarget.
[100] J. Beermann,et al. Non-coding RNAs in Development and Disease: Background, Mechanisms, and Therapeutic Approaches. , 2016, Physiological reviews.
[101] Xiufen Zheng,et al. miR-28 modulates exhaustive differentiation of T cells through silencing programmed cell death-1 and regulating cytokine secretion , 2016, Oncotarget.
[102] I. Nagtegaal,et al. Advances in the care of patients with mucinous colorectal cancer , 2016, Nature Reviews Clinical Oncology.
[103] Xiangjian Chen,et al. The long noncoding RNA CASC2 functions as a competing endogenous RNA by sponging miR-18a in colorectal cancer , 2016, Scientific Reports.
[104] Yuan Yin,et al. LncRNA—UCA1 enhances cell proliferation and 5-fluorouracil resistance in colorectal cancer by inhibiting miR-204-5p , 2016, Scientific Reports.
[105] Z. Bago-Horvath,et al. STAT5 Is a Key Regulator in NK Cells and Acts as a Molecular Switch from Tumor Surveillance to Tumor Promotion. , 2016, Cancer discovery.
[106] Michael Kahn,et al. Targeting Notch, Hedgehog, and Wnt pathways in cancer stem cells: clinical update , 2015, Nature Reviews Clinical Oncology.
[107] Massimo Gadina,et al. The JAK-STAT pathway: impact on human disease and therapeutic intervention. , 2015, Annual review of medicine.
[108] Guodong Yang,et al. LncRNA: a link between RNA and cancer. , 2014, Biochimica et biophysica acta.
[109] Hua Yu,et al. Revisiting STAT3 signalling in cancer: new and unexpected biological functions , 2014, Nature Reviews Cancer.
[110] Jian Zhang,et al. A new tumor suppressor LncRNA ADAMTS9-AS2 is regulated by DNMT1 and inhibits migration of glioma cells , 2014, Tumor Biology.
[111] Hermann Brenner,et al. Colorectal cancer , 2014, The Lancet.
[112] Enzo Medico,et al. Emergence of KRAS mutations and acquired resistance to anti-EGFR therapy in colorectal cancer , 2012, Nature.
[113] M. Toyota,et al. Upregulation of miR-196a and HOTAIR drive malignant character in gastrointestinal stromal tumors. , 2012, Cancer research.
[114] S. Miyano,et al. Long noncoding RNA HOTAIR regulates polycomb-dependent chromatin modification and is associated with poor prognosis in colorectal cancers. , 2011, Cancer research.
[115] Min-hui Yang,et al. MALAT-1: a long non-coding RNA and its important 3' end functional motif in colorectal cancer metastasis. , 2011, International journal of oncology.
[116] Zhipeng Wang,et al. Triptolide downregulates Rac1 and the JAK/STAT3 pathway and inhibits colitis-related colon cancer progression , 2009, Experimental & Molecular Medicine.
[117] B. Aggarwal,et al. Signal Transducer and Activator of Transcription‐3, Inflammation, and Cancer , 2009, Annals of the New York Academy of Sciences.
[118] P. Heinrich,et al. Principles of interleukin (IL)-6-type cytokine signalling and its regulation. , 2003, The Biochemical journal.
[119] Yuan-Shan Zhu,et al. Molecular and cellular functions of long non-coding RNAs in prostate and breast cancer. , 2022, Advances in clinical chemistry.
[120] Q. Xiao,et al. Adsorption of miR-218 by lncRNA HOTAIR regulates PDE7A and affects glioma cell proliferation, invasion, and apoptosis. , 2020, International journal of clinical and experimental pathology.
[121] Xiaojun Zhou,et al. Up-regulated long noncoding RNA AB073614 modulates the tumor cell proliferation, invasion and migration in human colorectal cancer. , 2019, International journal of clinical and experimental pathology.
[122] Shuhan Sun,et al. A novel lncRNA‐LINC01116 regulates tumorigenesis of glioma by targeting VEGFA , 2019, International journal of cancer.
[123] Xiaojun Zhou,et al. LncRNA AB073614 induces epithelial- mesenchymal transition of colorectal cancer cells via regulating the JAK/STAT3 pathway. , 2018, Cancer biomarkers : section A of Disease markers.