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The antifungal drug itraconazole targets VDAC1 to modulate the AMPK/mTOR signaling axis in endothelial cells
Sarah A. Head1; Wei Shi1,2; Liang Zhao3; Kirill Gorshkov1; Kalyan Pasunooti1,4; Yue Chen5; Zhiyou Deng5; Ruo-jing Li1; Joong Sup Shim1,6; Wenzhi Tan7; Thomas Hartung3; Jin Zhang1; Yingming Zhao5; Marco Colombini7; Jun O. Liu1,8
2015
Source PublicationPROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN0027-8424
Volume112Issue:52Pages:E7276-E7285
Abstract

Itraconazole, a clinically used antifungal drug, was found to possess potent antiangiogenic and anticancer activity that is unique among the azole antifungals. Previous mechanistic studies have shown that itraconazole inhibits the mechanistic target of rapamycin (mTOR) signaling pathway, which is known to be a critical regulator of endothelial cell function and angiogenesis. However, the molecular target of itraconazole that mediates this activity has remained unknown. Here we identify the major target of itraconazole in endothelial cells as the mitochondrial protein voltage-dependent anion channel 1 (VDAC1), which regulates mitochondrial metabolism by controlling the passage of ions and small metabolites through the outer mitochondrial membrane. VDAC1 knockdown profoundly inhibits mTOR activity and cell proliferation in human umbilical vein cells (HUVEC), uncovering a previously unknown connection between VDAC1 and mTOR. Inhibition of VDAC1 by itraconazole disrupts mitochondrial metabolism, leading to an increase in the cellular AMP:ATP ratio and activation of the AMP-activated protein kinase (AMPK), an upstream regulator of mTOR. VDAC1-knockout cells are resistant to AMPK activation and mTOR inhibition by itraconazole, demonstrating that VDAC1 is the mediator of this activity. In addition, another known VDAC-targeting compound, erastin, also activates AMPK and inhibits mTOR and proliferation in HUVEC. VDAC1 thus represents a novel upstream regulator of mTOR signaling in endothelial cells and a promising target for the development of angiogenesis inhibitors.

KeywordAngiogenesis Mitochondria Metabolism Itraconazole Vdac1
DOI10.1073/pnas.1512867112
Indexed BySCIE
Language英語English
WOS Research AreaScience & Technology - Other Topics
WOS SubjectMultidisciplinary Sciences
WOS IDWOS:000367234700019
Scopus ID2-s2.0-84952682713
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Document TypeJournal article
CollectionFaculty of Health Sciences
Corresponding AuthorJun O. Liu
Affiliation1.Department of Pharmacology and Molecular Sciences, Johns Hopkins School of Medicine, Baltimore, MD, 21205
2.Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR, 72701
3.Department of Environmental Health Sciences, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD, 21205
4.Division of Structural Biology and Biochemistry, School of Biological Sciences, Nanyang Technological University, Singapore, 637551
5.Ben May Department of Cancer Research, The University of Chicago, Chicago, IL, 60637
6.Faculty of Health Sciences, University of Macau, Taipa, Macau Special Administrative Region, China
7.Department of Biology, University of Maryland, College Park, MD, 20742
8.Department of Oncology, Johns Hopkins School of Medicine, Baltimore, MD, 21205
Recommended Citation
GB/T 7714
Sarah A. Head,Wei Shi,Liang Zhao,et al. The antifungal drug itraconazole targets VDAC1 to modulate the AMPK/mTOR signaling axis in endothelial cells[J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112(52), E7276-E7285.
APA Sarah A. Head., Wei Shi., Liang Zhao., Kirill Gorshkov., Kalyan Pasunooti., Yue Chen., Zhiyou Deng., Ruo-jing Li., Joong Sup Shim., Wenzhi Tan., Thomas Hartung., Jin Zhang., Yingming Zhao., Marco Colombini., & Jun O. Liu (2015). The antifungal drug itraconazole targets VDAC1 to modulate the AMPK/mTOR signaling axis in endothelial cells. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 112(52), E7276-E7285.
MLA Sarah A. Head,et al."The antifungal drug itraconazole targets VDAC1 to modulate the AMPK/mTOR signaling axis in endothelial cells".PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 112.52(2015):E7276-E7285.
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