MicroRNA-124 reduces the pentose phosphate pathway and proliferation by targeting PRPS1 and RPIA mRNAs in human colorectal cancer cells.
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Summary
expression of miR124 and its targets correlate with survival times and might be used in prognosis, as well as 3 miRNAs that significantly inhibited lactate production in 3 CRC cell lines; miR 124-3p (miR124) had the strongest effect.
- Type
- article
- Published
- 2015-11-01
- Cited by
- 88
- References
- 60
- Access
- Open access
- OpenAlex
- https://openalex.org/W1925588937
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206238661
Keywords
microRNA, Gene knockdown, Cancer research, Cell growth, Cell culture
References
- miR-574-5p negatively regulates Qki6/7 to impact β-catenin/Wnt signalling and the development of colorectal cancer
- MiR-124 targets Slug to regulate epithelial–mesenchymal transition and metastasis of breast cancer
- Cancer treatment and survivorship statistics, 2016
- MicroRNA-218 Inhibits Cell Cycle Progression and Promotes Apoptosis in Colon Cancer by Downregulating BMI1 Polycomb Ring Finger Oncogene
- MicroRNA-130b promotes tumor development and is associated with poor prognosis in colorectal cancer.
- MicroRNA‐30b functions as a tumour suppressor in human colorectal cancer by targeting KRAS, PIK3CD and BCL2
- miR-124, miR-137 and miR-340 regulate colorectal cancer growth via inhibition of the Warburg effect.
- Glucose transporters in cancer metabolism
- Nonoxidative pentose phosphate pathways and their direct role in ribose synthesis in tumors: is cancer a disease of cellular glucose metabolism?
- Lysine acetylation activates 6-phosphogluconate dehydrogenase to promote tumor growth
- Proteomic Analysis of Colorectal Cancer Reveals Alterations in Metabolic Pathways
- MicroRNA-124 Regulates STAT3 Expression and is Downregulated in Colon Tissues of Pediatric Patients with Ulcerative Colitis
- Tumor cell metabolism: cancer's Achilles' heel.
- Combined evaluation of hexokinase 2 and phosphorylated pyruvate dehydrogenase-E1α in invasive front lesions of colorectal tumors predicts cancer metabolism and patient prognosis
- MicroRNA-143 down-regulates Hexokinase 2 in colon cancer cells
- The biology of cancer: metabolic reprogramming fuels cell growth and proliferation.
- Cancer cell metabolism: Warburg and beyond.
- The Pro-Apoptotic Role of the Regulatory Feedback Loop between miR-124 and PKM1/HNF4α in Colorectal Cancer Cells
- Tumor suppressive miR-124 targets androgen receptor and inhibits proliferation of prostate cancer cells
- MiR-124 Suppresses Growth of Human Colorectal Cancer by Inhibiting STAT3
Cited by
- Targeting metabolic reprogramming associated to cancer cells: search of novel targets and combined therapies in cancer treatment
- Ribose 5-phosphate isomerase inhibits LC3 processing and basal autophagy
- Phosphoribosylpyrophosphate Synthetase 1 Knockdown Suppresses Tumor Formation of Glioma CD133+ Cells Through Upregulating Cell Apoptosis
- Oncogenic regulation of tumor metabolic reprogramming
- Additive reductions in zebrafish PRPS1 activity result in a spectrum of deficiencies modeling several human PRPS1-associated diseases
- MiR-608, pre-miR-124-1 and pre-miR26a-1 polymorphisms modify susceptibility and recurrence-free survival in surgically resected CRC individuals
- PRPS1 silencing reverses cisplatin resistance in human breast cancer cells.
- RETRACTED: Downregulation of FBP1 Promotes Tumor Metastasis and Indicates Poor Prognosis in Gastric Cancer via Regulating Epithelial-Mesenchymal Transition
- miR-150 inhibits proliferation and tumorigenicity via retarding G1/S phase transition in nasopharyngeal carcinoma
- Post-Transcriptional and Post-translational Regulation of Central Carbon Metabolic Enzymes in Cancer.
- Pioglitazone-mediated reversal of elevated glucose metabolism in the airway epithelium of mouse lung adenocarcinomas.
- MicroRNA-552 promotes tumor cell proliferation and migration by directly targeting DACH1 via the Wnt/β-catenin signaling pathway in colorectal cancer.
- The role of ribose-5-phosphate isomerase A in the regulation of autophagy
- Identification of Cancer–associated Metabolic Vulnerabilities by Modeling Multi-objective Optimality in Metabolism
- Identification of a noncanonical function for ribose-5-phosphate isomerase A promotes colorectal cancer formation by stabilizing and activating β-catenin via a novel C-terminal domain
- Prognostic value of microRNAs in colorectal cancer: a meta-analysis
- MicroRNA-129-5p Regulates Glycolysis and Cell Proliferation by Targeting the Glucose Transporter SLC2A3 in Gastric Cancer Cells
- A miR-124/ITGA3 axis contributes to colorectal cancer metastasis by regulating anoikis susceptibility.
- Metabolic recoding of epigenetics in cancer
- Steroid Receptor Coactivator-2 Controls the Pentose Phosphate Pathway through RPIA in Human Endometrial Cancer Cells
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