Mice deficient in the phosphatase activity of sEH show decreased levels of the endocannabinoid 2‐AG in the olfactory bulb and depressive‐like behavior

Author:

Oguro Ami1ORCID,Kaga Yurino1,Sato Hideaki1,Fujiyama Taichi1,Fujimoto Shinji1,Nagai Saki1,Matsuyama Makoto2,Miyara Masatsugu1ORCID,Ishihara Yasuhiro3,Yamazaki Takeshi3,Imaoka Susumu4ORCID,Kotake Yaichiro1ORCID

Affiliation:

1. Graduate School of Biomedical and Health Sciences Hiroshima University Japan

2. Division of Molecular Genetics Shigei Medical Research Institute Okayama Japan

3. Graduate School of Integrated Sciences for Life Hiroshima University Japan

4. Department of Biomedical Sciences, School of Biological and Environmental Sciences Kwansei Gakuin University Hyogo Japan

Abstract

Soluble epoxide hydrolase (sEH) is a bifunctional enzyme that has epoxide hydrolase activity and phosphatase activity. Our earlier study revealed that lysophosphatidic acids are a substrate of the phosphatase activity of sEH in vitro, but its physiological function remained unknown. Herein, we used the CRISPR/Cas9 system and i‐GONAD method to generate mice that are deficient in sEH phosphatase activity. In the mouse brain, sEH was highly expressed in the olfactory bulb. Deletion of the sEH phosphatase activity resulted in decreased levels of the endocannabinoid 2‐arachidonoyl glycerol (2‐AG), which is a dephosphorylated form of 2‐arachidonoyl‐lysophosphatidic acid in the olfactory bulb. The sEH‐deficient mice showed depressive‐like behavior. These results indicate that sEH can regulate the production of 2‐AG and brain function in vivo.

Funder

Fusion Oriented REsearch for disruptive Science and Technology

Publisher

Wiley

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