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Citations to this article

Petasin potently inhibits mitochondrial complex I–based metabolism that supports tumor growth and metastasis
Kazuki Heishima, … , Hiroshi Ueda, Yukihiro Akao
Kazuki Heishima, … , Hiroshi Ueda, Yukihiro Akao
Published September 1, 2021
Citation Information: J Clin Invest. 2021;131(17):e139933. https://doi.org/10.1172/JCI139933.
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Research Article Metabolism Oncology Article has an altmetric score of 59

Petasin potently inhibits mitochondrial complex I–based metabolism that supports tumor growth and metastasis

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Abstract

Mitochondrial electron transport chain complex I (ETCC1) is the essential core of cancer metabolism, yet potent ETCC1 inhibitors capable of safely suppressing tumor growth and metastasis in vivo are limited. From a plant extract screening, we identified petasin (PT) as a highly potent ETCC1 inhibitor with a chemical structure distinct from conventional inhibitors. PT had at least 1700 times higher activity than that of metformin or phenformin and induced cytotoxicity against a broad spectrum of tumor types. PT administration also induced prominent growth inhibition in multiple syngeneic and xenograft mouse models in vivo. Despite its higher potency, it showed no apparent toxicity toward nontumor cells and normal organs. Also, treatment with PT attenuated cellular motility and focal adhesion in vitro as well as lung metastasis in vivo. Metabolome and proteome analyses revealed that PT severely depleted the level of aspartate, disrupted tumor-associated metabolism of nucleotide synthesis and glycosylation, and downregulated major oncoproteins associated with proliferation and metastasis. These findings indicate the promising potential of PT as a potent ETCC1 inhibitor to target the metabolic vulnerability of tumor cells.

Authors

Kazuki Heishima, Nobuhiko Sugito, Tomoyoshi Soga, Masashi Nishikawa, Yuko Ito, Ryo Honda, Yuki Kuranaga, Hiroki Sakai, Ryo Ito, Takayuki Nakagawa, Hiroshi Ueda, Yukihiro Akao

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Year: 2025 2024 2023 2022 Total
Citations: 2 3 8 3 16
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Citations to this article (16)

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Wang Z, Dai Z, Gao Y, Zhao Z, Li Z, Wang L, Gao X, Qiu Q, Qiu X, Liu Z
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Gorodetska I, Samusieva A, Lahuta T, Ponomarova O, Socha O, Kozeretska I
The Breast Journal 2025
Strobilurin X acts as an anticancer drug by inhibiting protein synthesis and suppressing mitochondrial respiratory chain activity
Takahashi K, Tanaka T, Ishihara A, Ohta T
Discover. Oncology 2024
The role of mitochondria in tumor metastasis and advances in mitochondria-targeted cancer therapy.
Chen F, Xue Y, Zhang W, Zhou H, Zhou Z, Chen T, YinWang E, Li H, Ye Z, Gao J, Wang S
Cancer metastasis reviews 2024
Loss of Carbamoyl Phosphate Synthetase 1 Potentiates Hepatocellular Carcinoma Metastasis by Reducing Aspartate Level
Chen S, Tang Q, Hu M, Song S, Wu X, Zhou Y, Yang Z, Liao S, Zhou L, Wang Q, Liu H, Yang M, Chen Z, Zhao W, He S, Zhou Z
Advanced Science 2024
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Cilleros-Holgado P, Gómez-Fernández D, Piñero-Pérez R, Reche-López D, Álvarez-Córdoba M, Munuera-Cabeza M, Talaverón-Rey M, Povea-Cabello S, Suárez-Carrillo A, Romero-González A, Suárez-Rivero JM, Romero-Domínguez JM, Sánchez-Alcázar JA
International journal of molecular sciences 2023
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Winter C, Siepe I, Wise A, Dorali A, Barrett AG, Witschel M
ACS Medicinal Chemistry Letters 2023
Targeting Mitochondrial Metabolic Reprogramming as a Potential Approach for Cancer Therapy.
Zhang L, Wei Y, Yuan S, Sun L
International journal of molecular sciences 2023
Polymeric core-crosslinked particles prepared via a nanoemulsion-mediated process: from particle design and structural characterization to in vivo behavior in chemotherapy
Fujii S
Polymer Journal 2023
Potential value of mitochondrial regulatory pathways in the clinical application of clear cell renal cell carcinoma: a machine learning-based study.
Qi X, Ge Y, Yang A, Liu Y, Wang Q, Wu G
Journal of Cancer Research and Clinical Oncology 2023
9-oxo-ODAs suppresses the proliferation of human cervical cancer cells through the inhibition of CDKs and HPV oncoproteins
Mogi K, Koya Y, Yoshihara M, Sugiyama M, Miki R, Miyamoto E, Fujimoto H, Kitami K, Iyoshi S, Tano S, Uno K, Tamauchi S, Yokoi A, Shimizu Y, Ikeda Y, Yoshikawa N, Niimi K, Yamakita Y, Tomita H, Shibata K, Nawa A, Tomoda Y, Kajiyama H
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Natural product rhynchophylline prevents stress-induced hair graying by preserving melanocyte stem cells via the β2 adrenergic pathway suppression.
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UPRmt and coordinated UPRER in type 2 diabetes
Kang Z, Chen F, Wu W, Liu R, Chen T, Xu F
Frontiers in Cell and Developmental Biology 2022
Chemically modified MIR143-3p exhibited anti-cancer effects by impairing the KRAS network in colorectal cancer cells
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Open Biology 2022

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