Piezo1 channel activation mimics high glucose as a stimulator of insulin release

Author:

Deivasikamani Vijayalakshmi,Dhayalan Savitha,Abudushalamu Yilizila,Mughal Romana,Visnagri Asjad,Cuthbertson Kevin,Scragg Jason L.,Munsey Tim S.,Viswambharan Hema,Muraki Katsuhiko,Foster Richard,Sivaprasadarao Asipu,Kearney Mark T.,Beech David J.ORCID,Sukumar PiruthiviORCID

Abstract

AbstractGlucose and hypotonicity induced cell swelling stimulate insulin release from pancreatic β-cells but the mechanisms are poorly understood. Recently, Piezo1 was identified as a mechanically-activated nonselective Ca2+ permeable cationic channel in a range of mammalian cells. As cell swelling induced insulin release could be through stimulation of Ca2+ permeable stretch activated channels, we hypothesised a role for Piezo1 in cell swelling induced insulin release. Two rat β-cell lines (INS-1 and BRIN-BD11) and freshly-isolated mouse pancreatic islets were studied. Intracellular Ca2+ measurements were performed using the fura-2 Ca2+ indicator dye and ionic current was recorded by whole cell patch-clamp. Piezo1 agonist Yoda1, a competitive antagonist of Yoda1 (Dooku1) and an inactive analogue of Yoda1 (2e) were used as chemical probes. Piezo1 mRNA and insulin secretion were measured by RT-PCR and ELISA respectively. Piezo1 mRNA was detected in both β-cell lines and mouse islets. Yoda1 evoked Ca2+ entry was inhibited by Yoda1 antagonist Dooku1 as well as other Piezo1 inhibitors gadolinium and ruthenium red, and not mimicked by 2e. Yoda1, but not 2e, stimulated Dooku1-sensitive insulin release from β-cells and pancreatic islets. Hypotonicity and high glucose increased intracellular Ca2+ and enhanced Yoda1 Ca2+ influx responses. Yoda1 and hypotonicity induced insulin release were significantly inhibited by Piezo1 specific siRNA. Pancreatic islets from mice with haploinsufficiency of Piezo1 released less insulin upon exposure to Yoda1. The data show that Piezo1 channel agonist induces insulin release from β-cell lines and mouse pancreatic islets suggesting a role for Piezo1 in cell swelling induced insulin release. Hence Piezo1 agonists have the potential to be used as enhancers of insulin release.

Funder

Daphne Jackson Trust

British Heart Foundation

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 27 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Differential sensitivity to longitudinal and transverse stretch mediates transcriptional responses in mouse neonatal ventricular myocytes;American Journal of Physiology-Heart and Circulatory Physiology;2024-02-01

2. Mechanosensitive Cation Channel Piezo1 Is Involved in Renal Fibrosis Induction;International Journal of Molecular Sciences;2024-01-31

3. Transcriptomic profile of the mechanosensitive ion channelome in human cardiac fibroblasts;Experimental Biology and Medicine;2023-12-30

4. Mechanosensing in Metabolism;Comprehensive Physiology;2023-12-29

5. Mechanosensing Piezo channels in gastrointestinal disorders;Journal of Clinical Investigation;2023-10-02

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