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Lipogenesis promotes mitochondrial fusion and maintains cancer stemness in human NSCLC
Zhen Liu, Jiaxin Lei, Tong Wu, Weijie Hu, Ming Zheng, Ying Wang, Jingdong Song, Hang Ruan, Lin Xu, Tao Ren, Wei Xu, Zhenke Wen
Zhen Liu, Jiaxin Lei, Tong Wu, Weijie Hu, Ming Zheng, Ying Wang, Jingdong Song, Hang Ruan, Lin Xu, Tao Ren, Wei Xu, Zhenke Wen
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Research Article Oncology

Lipogenesis promotes mitochondrial fusion and maintains cancer stemness in human NSCLC

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Abstract

Cancer stem-like cells (CSCs) are critically involved in cancer metastasis and chemoresistance, acting as one major obstacle in clinical practice. While accumulating studies have implicated the metabolic reprogramming of CSCs, mitochondrial dynamics in such cells remain poorly understood. Here we pinpointed OPA1hi with mitochondrial fusion as a metabolic feature of human lung CSCs, licensing their stem-like properties. Specifically, human lung CSCs exerted enhanced lipogenesis, inducing OPA1 expression via transcription factor SAM Pointed Domain containing ETS transcription Factor (SPDEF). In consequence, OPA1hi promoted mitochondrial fusion and stemness of CSCs. Such lipogenesishi, SPDEFhi, and OPA1hi metabolic adaptions were verified with primary CSCs from lung cancer patients. Accordingly, blocking lipogenesis and mitochondrial fusion efficiently impeded CSC expansion and growth of organoids derived from patients with lung cancer. Together, lipogenesis regulates mitochondrial dynamics via OPA1 for controlling CSCs in human lung cancer.

Authors

Zhen Liu, Jiaxin Lei, Tong Wu, Weijie Hu, Ming Zheng, Ying Wang, Jingdong Song, Hang Ruan, Lin Xu, Tao Ren, Wei Xu, Zhenke Wen

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Figure 11

Lipogenesis-SPDEF-OPA1 signaling in patient-derived CSCs.

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Lipogenesis-SPDEF-OPA1 signaling in patient-derived CSCs.
(A and B) PDOs...
(A and B) PDOs were treated with or without C75 (50 μM) for 12 hours and were monitored for mRNA expressions of OPA1 and SPDEF by qPCR. Mean ± SEM from 12–16 PDOs in each group. (C and D) PDOs with or without C75 (50 μM) treatment were analyzed for CD133 protein and CD133-expressing tumor cells. Representatives from 6 independent experiments. (E and F) PDOs with or without MYLS22 (40 μM) treatment were analyzed for CD133 protein and CD133-expressing tumor cells. Representatives from 6 independent experiments. **P < 0.01 with paired t test.

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