Peritoneal high-fat environment promotes peritoneal metastasis of gastric cancer cells through activation of NSUN2-mediated ORAI2 m5C modification
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Zekuan Xu | Hao Xu | Bowen Li | Diancai Zhang | Jialun Lv | H. Ge | Li Yang | Kanghui Liu | P. Xu | Zhengyuan Yan | Shansong Huang
[1] Ralph E. Kleiner,et al. Reactivity-dependent profiling of RNA 5-methylcytidine dioxygenases , 2022, Nature Communications.
[2] S. Dietmann,et al. Mitochondrial RNA modifications shape metabolic plasticity in metastasis , 2022, Nature.
[3] T. Smani,et al. Orai2 Modulates Store-Operated Ca2+ Entry and Cell Cycle Progression in Breast Cancer Cells , 2021, Cancers.
[4] Yuan Lin,et al. M6A RNA methylation-mediated RMRP stability renders proliferation and progression of non-small cell lung cancer through regulating TGFBR1/SMAD2/SMAD3 pathway , 2021, Cell Death & Differentiation.
[5] Y. Hu,et al. NSUN2 modified by SUMO-2/3 promotes gastric cancer progression and regulates mRNA m5C methylation , 2021, Cell Death & Disease.
[6] M. Yashiro,et al. EMMPRIN in extracellular vesicles from peritoneal mesothelial cells stimulates the invasion activity of diffuse-type gastric cancer cells. , 2021, Cancer letters.
[7] D. Lin,et al. NSUN2-mediated RNA 5-methylcytosine promotes esophageal squamous cell carcinoma progression via LIN28B-dependent GRB2 mRNA stabilization , 2021, Oncogene.
[8] Qiaofeng Zhang,et al. The role of RNA m5C modification in cancer metastasis , 2021, International journal of biological sciences.
[9] Jianjun Chen,et al. YBX1 is required for maintaining myeloid leukemia cell survival by regulating BCL2 stability in an m6A-dependent manner. , 2021, Blood.
[10] Song Liu,et al. Apolipoprotein C‐II induces EMT to promote gastric cancer peritoneal metastasis via PI3K/AKT/mTOR pathway , 2021, Clinical and translational medicine.
[11] A. Jemal,et al. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries , 2021, CA: a cancer journal for clinicians.
[12] S. Blanco,et al. The role of m6A, m5C and Ψ RNA modifications in cancer: Novel therapeutic opportunities , 2021, Molecular Cancer.
[13] K. Lam,et al. ORAI2 Promotes Gastric Cancer Tumorigenicity and Metastasis through PI3K/Akt Signaling and MAPK-Dependent Focal Adhesion Disassembly , 2020, Cancer Research.
[14] W. Park,et al. Tumor-promoting macrophages prevail in malignant ascites of advanced gastric cancer , 2020, Experimental & Molecular Medicine.
[15] Yun-Gui Yang,et al. RNA methylations in human cancers. , 2020, Seminars in cancer biology.
[16] Schraga Schwartz,et al. The epitranscriptome beyond m6A , 2020, Nature Reviews Genetics.
[17] Ashutosh Kumar Singh,et al. Orai-1 and Orai2 regulate oral cancer cell migration and colonisation by suppressing Akt/mTOR/NF-κB signalling. , 2020, Life sciences.
[18] Liu Cao,et al. Hypoxia-autophagy axis induces VEGFA by peritoneal mesothelial cells to promote gastric cancer peritoneal metastasis through an integrin α5-fibronectin pathway , 2020, Journal of Experimental & Clinical Cancer Research.
[19] O. Wolkenhauer,et al. LncRNA-SLC16A1-AS1 induces metabolic reprogramming during Bladder Cancer progression as target and co-activator of E2F1 , 2020, Theranostics.
[20] S. Gray,et al. The RNA Methyltransferase NSUN2 and Its Potential Roles in Cancer , 2020, Cells.
[21] Yun Feng,et al. RNA demethylase ALKBH5 prevents pancreatic cancer progression by posttranscriptional activation of PER1 in an m6A-YTHDF2-dependent manner , 2020, Molecular Cancer.
[22] S. Ju,et al. The potential role of RNA N6-methyladenosine in Cancer progression , 2020, Molecular Cancer.
[23] Xiaoshun He,et al. YTHDF2 promotes the liver cancer stem cell phenotype and cancer metastasis by regulating OCT4 expression via m6A RNA methylation , 2020, Oncogene.
[24] Ming-Hai Wang,et al. RNA methyltransferase NSUN2 promotes gastric cancer cell proliferation by repressing p57Kip2 by an m5C-dependent manner , 2020, Cell Death & Disease.
[25] G. Mills,et al. MCP-1/CCR-2 axis in adipocytes and cancer cell respectively facilitates ovarian cancer peritoneal metastasis , 2019, Oncogene.
[26] Yingwei Xue,et al. Macrophages on the Peritoneum are involved in Gastric Cancer Peritoneal Metastasis , 2019, Journal of Cancer.
[27] Dan Xie,et al. 5-methylcytosine promotes pathogenesis of bladder cancer through stabilizing mRNAs , 2019, Nature Cell Biology.
[28] Abdulrahim A. Sajini,et al. Loss of 5-methylcytosine alters the biogenesis of vault-derived small RNAs to coordinate epidermal differentiation , 2019, Nature Communications.
[29] A. Jemal,et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries , 2018, CA: a cancer journal for clinicians.
[30] Nan Li,et al. Tet2 promotes pathogen infection-induced myelopoiesis through mRNA oxidation , 2018, Nature.
[31] G. Rechavi,et al. 5-methylcytosine mediates nuclear export of mRNA , 2017, Cell Research.
[32] Samir Adhikari,et al. 5-methylcytosine promotes mRNA export — NSUN2 as the methyltransferase and ALYREF as an m5C reader , 2017, Cell Research.
[33] Michaela Frye,et al. Deficient methylation and formylation of mt-tRNAMet wobble cytosine in a patient carrying mutations in NSUN3 , 2016, Nature Communications.
[34] I. Harman-boehm,et al. Elevated autophagy gene expression in adipose tissue of obese humans: A potential non-cell-cycle-dependent function of E2F1 , 2015, Autophagy.
[35] I. Amit,et al. Tissue-Resident Macrophage Enhancer Landscapes Are Shaped by the Local Microenvironment , 2014, Cell.
[36] A. Schwab,et al. TRP channels and STIM/ORAI proteins: sensors and effectors of cancer and stroma cell migration , 2014, British journal of pharmacology.
[37] B. Habermann,et al. NSUN4 Is a Dual Function Mitochondrial Protein Required for Both Methylation of 12S rRNA and Coordination of Mitoribosomal Assembly , 2014, PLoS genetics.
[38] V. Lemmens,et al. Peritoneal carcinomatosis of gastric origin: A population‐based study on incidence, survival and risk factors , 2014, International journal of cancer.
[39] I. Nakano,et al. The AMPK Inhibitor Compound C Is a Potent AMPK-Independent Antiglioma Agent , 2014, Molecular Cancer Therapeutics.
[40] Jernej Ule,et al. NSun2-Mediated Cytosine-5 Methylation of Vault Noncoding RNA Determines Its Processing into Regulatory Small RNAs , 2013, Cell reports.
[41] S. L. Dun,et al. pRb is an obesity suppressor in hypothalamus and high‐fat diet inhibits pRb in this location , 2013, The EMBO journal.
[42] Y. Kodera,et al. Gastric cancer treated in 2002 in Japan: 2009 annual report of the JGCA nationwide registry , 2012, Gastric Cancer.
[43] K. Olden,et al. PI3K/Akt signalling is required for the attachment and spreading, and growth in vivo of metastatic scirrhous gastric carcinoma , 2012, British Journal of Cancer.
[44] G. Mills,et al. Adipocytes promote ovarian cancer metastasis and provide energy for rapid tumor growth , 2011, Nature Medicine.
[45] N. Prevarskaya,et al. Calcium in tumour metastasis: new roles for known actors , 2011, Nature Reviews Cancer.
[46] Y. Yonemura,et al. Surgical treatment for peritoneal carcinomatosis from gastric cancer. , 2010, European journal of surgical oncology : the journal of the European Society of Surgical Oncology and the British Association of Surgical Oncology.
[47] A. Cerezo,et al. Epithelial-to-mesenchymal transition of peritoneal mesothelial cells is regulated by an ERK/NF-κB/Snail1 pathway , 2008, Disease Models & Mechanisms.
[48] Xiaoyu Zhang,et al. Methylation of tRNAAsp by the DNA Methyltransferase Homolog Dnmt2 , 2006, Science.
[49] D. Santi,et al. Exposition of a family of RNA m(5)C methyltransferases from searching genomic and proteomic sequences. , 1999, Nucleic acids research.
[50] W. Epstein,et al. Inhibition of RNA and protein synthesis in granular cells by actinomycin-D and puromycin. , 1971, The Journal of investigative dermatology.
[51] M. Rodbell. METABOLISM OF ISOLATED FAT CELLS. I. EFFECTS OF HORMONES ON GLUCOSE METABOLISM AND LIPOLYSIS. , 1964, The Journal of biological chemistry.
[52] S Paget,et al. THE DISTRIBUTION OF SECONDARY GROWTHS IN CANCER OF THE BREAST. , 1889 .
[53] J. Kinoshita,et al. VegF is a target molecule for peritoneal metastasis and malignant ascites in gastric cancer : prognostic significance of VEGF in ascites and efficacy of anti-VEGF monoclonal antibody sachio , 2013 .
[54] Bent Stamnes. Elevated , 2011, SIGGRAPH '11.