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NDUFS1-Mediated Mitochondrial Complex I Activity Maintains Pancreatic Cancer Stemness by Promoting PAX2 Hypomethylation.

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MedComm 📖 저널 OA 100% 2024: 4/4 OA 2025: 49/49 OA 2026: 35/35 OA 2024~2026 2026 Vol.7(4) p. e70678 OA Cancer, Hypoxia, and Metabolism
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PubMed DOI PMC OpenAlex 마지막 보강 2026-05-01
OpenAlex 토픽 · Cancer, Hypoxia, and Metabolism Cancer Cells and Metastasis Sirtuins and Resveratrol in Medicine

Fan XY, Li W, Shi Y, Xu BQ, Wang H, Tian RF

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Pancreatic cancer is highly refractory and aggressive, with cancer stem cells (CSCs) being primarily responsible for its metastasis and chemoresistance.

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APA Xin‐Yu Fan, Wen Li, et al. (2026). NDUFS1-Mediated Mitochondrial Complex I Activity Maintains Pancreatic Cancer Stemness by Promoting PAX2 Hypomethylation.. MedComm, 7(4), e70678. https://doi.org/10.1002/mco2.70678
MLA Xin‐Yu Fan, et al.. "NDUFS1-Mediated Mitochondrial Complex I Activity Maintains Pancreatic Cancer Stemness by Promoting PAX2 Hypomethylation.." MedComm, vol. 7, no. 4, 2026, pp. e70678.
PMID 41930324 ↗
DOI 10.1002/mco2.70678

Abstract

Pancreatic cancer is highly refractory and aggressive, with cancer stem cells (CSCs) being primarily responsible for its metastasis and chemoresistance. Deregulated cellular bioenergetics is a hallmark of cancer cells. However, the influence of bioenergetics on the maintenance of pancreatic CSC stemness and its underlying mechanisms have not been fully elucidated. In this study, pancreatic CSCs, isolated either by sorting ALDH subpopulation or enriching serially passaged tumorspheres from pancreatic cancer cells and PDX model, exhibited active mitochondrial complex I activity and increased oxidative phosphorylation. Complex I maintains stemness and tumorigenicity through its core subunit, NDUFS1. NDUFS1-mediated pancreatic CSC stemness is reinforced by high expression of CD147, which promotes pSTAT3-mediated transcription. To promote stemness, CD147-NDUFS1 initiates SIRT1-DNMT1 metaboloepigenetic signaling, decreasing promoter hypomethylation and increasing the mRNA expression of the stem cell transcript factor . Moreover, and expressions were highly correlated in pancreatic cancer tissues, and their co-expression was significantly associated with poor patient survival. Taken together, our study provides evidence that mitochondrial complex I functions as a key player in CSC stemness maintenance through NDUFS1-mediated retrograde metaboloepigenetic signaling. Blocking a key regulator of mitonuclear communication by targeting CD147 may be a novel therapy for pancreatic cancer.

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