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Heme Binding Biguanides Target Cytochrome P450-Dependent Cancer Cell Mitochondria

Authors :
Ting Lan Chiu
Young Kyung Bae
Craig M. Flory
Yelena V. Grinkova
Ameeta Kelekar
Stephen G. Sligar
M. Gerard O'Sullivan
Adela Galván
Irina F. Sevrioukova
Kalpna Gupta
Beverly Norris
Ian A. Blair
Elizabeth A. Ambrose
Fernando Luna
Ilia G. Denisov
John D. Lipscomb
Eric A. Hanse
Haitao Chu
Daniel S. Swedien
Robert J. Schumacher
William M. Atkins
Rebecca A. D. Cuellar
Gunda I. Georg
Julia Wulfkuhle
Zhijun Guo
Rosa I. Gallagher
Thomas L. Poulos
Qing Cao
Vanessa Wankhede Langenfeld
Xia Zhang
John R. Falck
Juan Alvarez
Emanuel F. Petricoin
Dafydd G. Thomas
Jorge H. Capdevila
David Potter
Justin D. Stamschror
Source :
Cell Chemical Biology. 24:1259-1275.e6
Publication Year :
2017
Publisher :
Elsevier BV, 2017.

Abstract

The mechanisms by which cancer cell-intrinsic CYP monooxygenases promote tumor progression are largely unknown. CYP3A4 was unexpectedly associated with breast cancer mitochondria and synthesized arachidonic acid (AA)-derived epoxyeicosatrienoic acids (EETs), which promoted the electron transport chain/respiration and inhibited AMPKα. CYP3A4 knockdown activated AMPKα, promoted autophagy, and prevented mammary tumor formation. The diabetes drug metformin inhibited CYP3A4-mediated EET biosynthesis and depleted cancer cell-intrinsic EETs. Metformin bound to the active site heme of CYP3A4 in a co-crystal structure, establishing CYP3A4 as a biguanide target. Structure-based design led to discovery of N1-hexyl-N5-benzyl-biguanide (HBB), which bound to the CYP3A4 heme with higher affinity than metformin. HBB potently and specifically inhibited CYP3A4 AA epoxygenase activity. HBB also inhibited growth of established ER+ mammary tumors and suppressed intratumoral mTOR. CYP3A4 AA epoxygenase inhibition by biguanides thus demonstrates convergence between eicosanoid activity in mitochondria and biguanide action in cancer, opening a new avenue for cancer drug discovery.

Details

ISSN :
24519456
Volume :
24
Database :
OpenAIRE
Journal :
Cell Chemical Biology
Accession number :
edsair.doi.dedup.....609abd584fa3973a5ec9c305d29ee4dd