LRRK2 negatively regulates glucose tolerance via regulation of membrane translocation of GLUT4 in adipocytes

Author:

Kawakami Fumitaka123ORCID,Imai Motoki34,Isaka Yuki1,Cookson Mark R.5ORCID,Maruyama Hiroko6,Kubo Makoto37,Farrer Matthew J.8,Kanzaki Makoto9,Kawashima Rei13,Maekawa Tatsunori13,Tamaki Shun13,Kurosaki Yoshifumi1310,Kojima Fumiaki1311,Ohba Kenichi23,Ichikawa Takafumi13

Affiliation:

1. Department of Regulation Biochemistry, Graduate School of Medical Sciences Kitasato University Sagamihara Japan

2. Department of Health Administration, School of Allied Health Sciences Kitasato University Sagamihara Japan

3. Regenerative Medicine and Cell Design Research Facility, School of Allied Health Science Kitasato University Sagamihara Japan

4. Department of Molecular Diagnostics, School of Allied Health Sciences Kitasato University Sagamihara Japan

5. Cell Biology and Gene Expression Section, Laboratory of Neurogenetics, National Institute on Aging National Institutes of Health Bethesda MD USA

6. Department of Cytopathology, Graduate School of Medical Sciences Kitasato University Sagamihara Japan

7. Department of Microbiology, School of Allied Health Science Kitasato University Sagamihara Japan

8. Department of Neurology and Fixel Institute University of Florida Gainesville FL USA

9. Graduate School of Biomedical Engineering Tohoku University Sendai Japan

10. Department of Medical Laboratory Sciences, School of Allied Health Sciences Kitasato University Sagamihara Japan

11. Department of Pharmacology, School of Allied Health Sciences Kitasato University Sagamihara Japan

Abstract

Epidemiological studies have shown that abnormalities of glucose metabolism are involved in leucine‐rich repeat kinase 2 (LRRK2)‐associated Parkinson's disease (PD). However, the physiological significance of this association is unclear. In the present study, we investigated the effect of LRRK2 on high‐fat diet (HFD)‐induced glucose intolerance using Lrrk2‐knockout (KO) mice. We found for the first time that HFD‐fed KO mice display improved glucose tolerance compared with their wild‐type (WT) counterparts. In addition, high serum insulin and leptin, as well as low serum adiponectin resulting from HFD in WT mice were improved in KO mice. Using western blotting, we found that Lrrk2 is highly expressed in adipose tissues compared with other insulin‐related tissues that are thought to be important in glucose tolerance, including skeletal muscle, liver, and pancreas. Lrrk2 expression and phosphorylation of its kinase substrates Rab8a and Rab10 were significantly elevated after HFD treatment in WT mice. In cell culture experiments, treatment with a LRRK2 kinase inhibitor stimulated insulin‐dependent membrane translocation of glucose transporter 4 (Glut4) and glucose uptake in mouse 3T3‐L1 adipocytes. We conclude that increased LRRK2 kinase activity in adipose tissue exacerbates glucose tolerance by suppressing Rab8‐ and Rab10‐mediated GLUT4 membrane translocation.

Funder

Japan Society for the Promotion of Science

School of Allied Health Sciences, Kitasato University

Publisher

Wiley

Subject

General Biochemistry, Genetics and Molecular Biology

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