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GPR142 prompts glucagon-like Peptide-1 release from islets to improve ? cell function.


ABSTRACT:

Objective

GPR142 agonists are being pursued as novel diabetes therapies by virtue of their insulin secretagogue effects. But it is undetermined whether GPR142's functions in pancreatic islets are limited to regulating insulin secretion. The current study expands research on its action.

Methods and results

We demonstrated by in situ hybridization and immunostaining that GPR142 is expressed not only in ? cells but also in a subset of ? cells. Stimulation of GPR142 by a selective agonist increased glucagon secretion in both human and mouse islets. More importantly, the GPR142 agonist also potentiated glucagon-like peptide-1 (GLP-1) production and its release from islets through a mechanism that involves upregulation of prohormone convertase 1/3 expression. Strikingly, stimulation of insulin secretion and increase in insulin content via GPR142 engagement requires intact GLP-1 receptor signaling. Furthermore, GPR142 agonist increased ? cell proliferation and protected both mouse and human islets against stress-induced apoptosis.

Conclusions

Collectively, we provide here evidence that local GLP-1 release from ? cells defines GPR142's beneficial effects on improving ? cell function and mass, and we propose that GPR142 agonism may have translatable and durable efficacy for the treatment of type 2 diabetes.

SUBMITTER: Lin HV 

PROVIDER: S-EPMC6001353 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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Publications

GPR142 prompts glucagon-like Peptide-1 release from islets to improve β cell function.

Lin Hua V HV   Wang Jingru J   Wang Jie J   Li Weiji W   Wang Xuesong X   Alston James T JT   Thomas Melissa K MK   Briere Daniel A DA   Syed Samreen K SK   Efanov Alexander M AM  

Molecular metabolism 20180223


<h4>Objective</h4>GPR142 agonists are being pursued as novel diabetes therapies by virtue of their insulin secretagogue effects. But it is undetermined whether GPR142's functions in pancreatic islets are limited to regulating insulin secretion. The current study expands research on its action.<h4>Methods and results</h4>We demonstrated by in situ hybridization and immunostaining that GPR142 is expressed not only in β cells but also in a subset of α cells. Stimulation of GPR142 by a selective ago  ...[more]

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