ArticleMolecular cancer2024
Exosomal circSIPA1L3-mediated intercellular communication contributes to glucose metabolic reprogramming and progression of triple negative breast cancer.
Article in Molecular cancer, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 36 papers, 1 of them a synthesis that pooled it.
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Who cites it
36 citing papers in PubMed, 1 synthesis or guideline pooled it.
- Exosomes and Triple-Negative Breast Cancer: Current Knowledge and Clinical Significance.International journal of molecular sciences · 2026Pooled it
- Metabolites and cancer metastasis.Oncogene · 2026Review
- Circ_0006174 Drives Triple Negative Breast Cancer Progression and Immune Escape Through Regulating miR-3139/PD-L1 Axis.The Kaohsiung journal of medical sciences · 2026Article
- Exosome-functionalized photocrosslinked GelMA/HAMA hydrogel promotes facial nerve recovery via inflammatory microenvironment regulation.Bioactive materials · 2026Article
- Exosomes from tumor-associated macrophages promote glycolysis and malignant NSCLC progression by delivery of hsa_circ_0000896.Biology direct · 2026Article
- IGF2BP3 Promoted the Overproliferation of AML Cells via Stability ofTurkish journal of haematology : official journal of Turkish Society of Haematology · 2026Article
- The moonlighting functions of glycolytic enzymes in tumorigenesis.Cellular oncology (Dordrecht, Netherlands) · 2026Review
- Review
- CircKIAA1617 promotes stemness via USP14/PGRMC1-mediated autophagy and lipid metabolism reprogramming in ER-positive breast cancer.Molecular cancer · 2026Article
- Identification of lactylation-related biomarkers for diagnosis, prognosis, and treatment responsiveness in triple-negative breast cancer.World journal of surgical oncology · 2026Article
- Article
- Crosstalk between ferroptosis and extracellular vesicles in cancer: from interaction to clinical application.Experimental hematology & oncology · 2026Review
- CircRNA circuits orchestrate lactate metabolism in gastrointestinal cancer progression.Open life sciences · 2026Article
- Functions and mechanisms of circular RNAs in cancer stem cells and therapy resistance.Frontiers in cell and developmental biology · 2026Review
- Circulating exosomal miR-550a-5p/miR-665 identify coronary microvascular dysfunction and drive endothelial-myocyte crosstalk in type 2 diabetes.Frontiers in cell and developmental biology · 2026Article
- Glucose metabolic reprogramming: a novel strategy to enhance radiotherapy response to triple-negative breast cancer.Frontiers in public health · 2026Review
- Systematic Exploration of Molecular Mechanisms and Natural Herbal Therapeutic Strategies for Cancer Cachexia.Cancers · 2025Review
- Circ-0069561 as a novel diagnostic biomarker for progression of diabetic kidney disease.Renal failure · 2025Article
- Hsa_circ_0062522 affects the progression and tamoxifen resistance of estrogen receptor-positive breast cancer by targeting miR-3163.Discover oncology · 2025Article
- Construction of a prognostic model for nasopharyngeal carcinoma based on serum exosomal circular RNAs and analysis of immune microenvironment.Clinical and experimental medicine · 2025Article
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Authors and funding
13 authors.
Funding
Abstract
backgroundBreast cancer is the most common malignant tumor, and metastasis remains the major cause of poor prognosis. Glucose metabolic reprogramming is one of the prominent hallmarks in cancer, providing nutrients and energy to support dramatically elevated tumor growth and metastasis. Nevertheless, the potential mechanistic links between glycolysis and breast cancer progression have not been thoroughly elucidated.
methodsRNA-seq analysis was used to identify glucose metabolism-related circRNAs. The expression of circSIPA1L3 in breast cancer tissues and serum was examined by qRT-PCR, and further assessed its diagnostic value. We also evaluated the prognostic potential of circSIPA1L3 by analyzing a cohort of 238 breast cancer patients. Gain- and loss-of-function experiments, transcriptomic analysis, and molecular biology experiments were conducted to explore the biological function and regulatory mechanism of circSIPA1L3.
resultsUsing RNA-seq analysis, circSIPA1L3 was identified as the critical mediator responsible for metabolic adaption upon energy stress. Gain- and loss-of-function experiments revealed that circSIPA1L3 exerted a stimulative effect on breast cancer progression and glycolysis, which could also be transported by exosomes and facilitated malignant behaviors among breast cancer cells. Significantly, the elevated lactate secretion caused by circSIPA1L3-mediated glycolysis enhancement promoted the recruitment of tumor associated macrophage and their tumor-promoting roles. Mechanistically, EIF4A3 induced the cyclization and cytoplasmic export of circSIPA1L3, which inhibited ubiquitin-mediated IGF2BP3 degradation through enhancing the UPS7-IGF2BP3 interaction. Furthermore, circSIPA1L3 increased mRNA stability of the lactate export carrier SLC16A1 and the glucose intake enhancer RAB11A through either strengthening their interaction with IGF2BP3 or sponging miR-665, leading to enhanced glycolytic metabolism. Clinically, elevated circSIPA1L3 expression indicated unfavorable prognosis base on the cohort of 238 breast cancer patients. Moreover, circSIPA1L3 was highly expressed in the serum of breast cancer patients and exhibited high diagnostic value for breast cancer patients.
conclusionsOur study highlights the oncogenic role of circSIPA1L3 through mediating glucose metabolism, which might serve as a promising diagnostic and prognostic biomarker and potential therapeutic target for breast cancer.
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