Volume 22, Issue 8
Research Communication

Incensole acetate, an incense component, elicits psychoactivity by activating TRPV3 channels in the brain

Arieh Moussaieff

Corresponding Author

E-mail address: arieh@weizmann.ac.il

Department of Medicinal Chemistry and Natural Products, Medical Faculty, Hebrew University of Jerusalem, Jerusalem, Israel

Department of Pharmacology, Pharmacy School, Hebrew University of Jerusalem, Jerusalem, Israel

Correspondence: Department of Medicinal Chemistry and Natural Products, Medical Faculty, Hebrew University of Jerusalem, 91120, Jerusalem, Israel. E‐mail:

arieh@weizmann.ac.il

; or R.M.,

mechou@cc.huji.ac.il

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Neta Rimmerman

Gill Center for Biomolecular Science and Department of Psychological and Brain Sciences, Indiana University Bloomington, Bloomington, Indiana, USA

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Tatiana Bregman

Departments of Behavioral Sciences and of Molecular Biology, Ariel University Center of Samaria, Ariel, Israel

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Alex Straiker

Gill Center for Biomolecular Science and Department of Psychological and Brain Sciences, Indiana University Bloomington, Bloomington, Indiana, USA

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Christian C. Felder

Eli Lilly and Co., Neuroscience Division, Indianapolis, Indiana, USA

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Shai Shoham

Research Department, Herzog Memorial Hospital, Jerusalem, Israel

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Yoel Kashman

School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel-Aviv University, Ramat Aviv, Israel

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Susan M. Huang

Department of Biological Chemistry, Johns Hopkins School of Medicine, Baltimore, Maryland, USA

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Hyosang Lee

Department of Biological Chemistry, Johns Hopkins School of Medicine, Baltimore, Maryland, USA

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Esther Shohami

Department of Pharmacology, Pharmacy School, Hebrew University of Jerusalem, Jerusalem, Israel

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Ken Mackie

Gill Center for Biomolecular Science and Department of Psychological and Brain Sciences, Indiana University Bloomington, Bloomington, Indiana, USA

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Michael J. Caterina

Department of Biological Chemistry, Johns Hopkins School of Medicine, Baltimore, Maryland, USA

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J. Michael Walker

Gill Center for Biomolecular Science and Department of Psychological and Brain Sciences, Indiana University Bloomington, Bloomington, Indiana, USA

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Ester Fride

Departments of Behavioral Sciences and of Molecular Biology, Ariel University Center of Samaria, Ariel, Israel

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Raphael Mechoulam

Corresponding Author

E-mail address: mechou@cc.huji.ac.il

Department of Medicinal Chemistry and Natural Products, Medical Faculty, Hebrew University of Jerusalem, Jerusalem, Israel

Correspondence: Department of Medicinal Chemistry and Natural Products, Medical Faculty, Hebrew University of Jerusalem, 91120, Jerusalem, Israel. E‐mail:

arieh@weizmann.ac.il

; or R.M.,

mechou@cc.huji.ac.il

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First published: 20 May 2008

ABSTRACT

Burning of Boswellia resin as incense has been part of religious and cultural ceremonies for millennia and is believed to contribute to the spiritual exaltation associated with such events. Transient receptor potential vanilloid (TRPV) 3 is an ion channel implicated in the perception of warmth in the skin. TRPV3 mRNA has also been found in neurons throughout the brain; however, the role of TRPV3 channels there remains unknown. Here we show that incensole acetate (IA), a Boswellia resin constituent, is a potent TRPV3 agonist that causes anxiolytic‐like and antide‐pressive‐like behavioral effects in wild‐type (WT) mice with concomitant changes in c‐Fos activation in the brain. These behavioral effects were not noted in TRPV3−/− mice, suggesting that they are mediated via TRPV3 channels. IA activated TRPV3 channels stably expressed in HEK293 cells and in keratinocytes from TRPV3+/+ mice. It had no effect on keratinocytes from TRPV3−/− mice and showed modest or no effect on TRPV1, TRPV2, and TRPV4, as well as on 24 other receptors, ion channels, and transport proteins. Our results imply that TRPV3 channels in the brain may play a role in emotional regulation. Furthermore, the biochemical and pharmacological effects of IA may provide a biological basis for deeply rooted cultural and religious traditions.—Moussaieff, A., Rimmerman, N., Bregman, T., Straiker, A., Felder, C. C., Shoham, S., Kashman, Y., Huang, S. M., Lee, H., Shohami, E., Mackie, K., Caterina, M. J., Walker, J. M., Fride, E., Mechoulam, R. Incensole acetate, an incense component, elicits psychoactivity by activating TRPV3 channels in the brain. FASEB J. 22, 3024–3034 (2008)

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