Wnt Signaling Regulates Blood Pressure by Downregulating a GSK-3β–Mediated Pathway to Enhance Insulin Signaling in the Central Nervous System

Author:

Cheng Pei-Wen1,Chen Ying-Ying2,Cheng Wen-Han1,Lu Pei-Jung3,Chen Hsin-Hung4,Chen Bo-Rong1,Yeh Tung-Chen5,Sun Gwo-Ching3,Hsiao Michael6,Tseng Ching-Jiunn147

Affiliation:

1. Department of Medical Education and Research, Kaohsiung Veterans General Hospital, Kaohsiung, Republic of China

2. Department of Ophthalmology, Kaohsiung Veterans General Hospital, Kaohsiung, Republic of China

3. Institute of Clinical Medicine, National Cheng Kung University, Tainan, Republic of China

4. Institute of Clinical Medicine, National Yang-Ming University, Taipei, Republic of China

5. Department of Internal Medicine, Division of Cardiology, Kaohsiung Veterans General Hospital, Kaohsiung, Republic of China

6. Genomics Research Center, Academia Sinica, Taipei, Republic of China

7. Department of Medical Research, China Medical University Hospital, China Medical University, Taichung, Republic of China

Abstract

Aberrant Wnt signaling appears to play an important role in the onset of diabetes. Moreover, the insulin signaling pathway is defective in the nucleus tractus solitarii (NTS) of spontaneously hypertensive rats (SHRs) and fructose-fed rats. Nevertheless, the relationships between Wnt signaling and the insulin pathway and the related modulation of blood pressure (BP) in the central nervous system have yet to be established. The aim of this study was to investigate the potential signaling pathways involved in Wnt-mediated BP regulation in the NTS. Pretreatment with the LDL receptor–related protein (LRP) antagonist Dickkopf-1 (DKK1) significantly attenuated the Wnt3a-induced depressor effect and nitric oxide production. Additionally, the inhibition of LRP6 activity using DKK1 significantly abolished Wnt3a-induced glycogen synthase kinase 3β (GSK-3β)S9, extracellular signal–regulated kinases 1/2T202/Y204, ribosomal protein S6 kinaseT359/S363, and AktS473 phosphorylation; and increased insulin receptor substrate 1 (IRS1)S332 phosphorylation. GSK-3β was also found to bind directly to IRS1 and to induce the phosphorylation of IRS1 at serine 332 in the NTS. By contrast, administration of the GSK-3β inhibitor TWS119 into the brain decreased the BP of hypertensive rats by enhancing IRS1 activity. Taken together, these results suggest that the GSK-3β-IRS1 pathway may play a significant role in Wnt-mediated central BP regulation.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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