Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells
Abstract Pancreatic islets adapt to insulin resistance of pregnancy by up regulating β-cell mass and increasing insulin secretion. Previously, using a transgenic mouse with global, heterozygous deletion of prolactin receptor (Prlr+/−), we found Prlr signaling is important for this adaptation. Howeve...
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doaj-0f78478bc028430e997b787afda132c92021-05-16T11:26:34ZengNature Publishing GroupScientific Reports2045-23222021-05-0111111410.1038/s41598-021-89745-9Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cellsVipul Shrivastava0Megan Lee1Daniel Lee2Marle Pretorius3Bethany Radford4Guneet Makkar5Carol Huang6Department of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryDepartment of Biochemistry and Molecular Biology, Cumming School of Medicine, University of CalgaryAbstract Pancreatic islets adapt to insulin resistance of pregnancy by up regulating β-cell mass and increasing insulin secretion. Previously, using a transgenic mouse with global, heterozygous deletion of prolactin receptor (Prlr+/−), we found Prlr signaling is important for this adaptation. However, since Prlr is expressed in tissues outside of islets as well as within islets and prolactin signaling affects β-cell development, to understand β-cell-specific effect of prolactin signaling in pregnancy, we generated a transgenic mouse with an inducible conditional deletion of Prlr from β-cells. Here, we found that β-cell-specific Prlr reduction in adult mice led to elevated blood glucose, lowed β-cell mass and blunted in vivo glucose-stimulated insulin secretion during pregnancy. When we compared gene expression profile of islets from transgenic mice with global (Prlr+/−) versus β-cell-specific Prlr reduction (βPrlR+/−), we found 95 differentially expressed gene, most of them down regulated in the Prlr+/− mice in comparison to the βPrlR+/− mice, and many of these genes regulate apoptosis, synaptic vesicle function and neuronal development. Importantly, we found that islets from pregnant Prlr+/− mice are more vulnerable to glucolipotoxicity-induced apoptosis than islets from pregnant βPrlR+/− mice. These observations suggest that down regulation of prolactin action during pregnancy in non-β-cells secondarily and negatively affect β-cell gene expression, and increased β-cell susceptibility to external insults.https://doi.org/10.1038/s41598-021-89745-9 |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vipul Shrivastava Megan Lee Daniel Lee Marle Pretorius Bethany Radford Guneet Makkar Carol Huang |
spellingShingle |
Vipul Shrivastava Megan Lee Daniel Lee Marle Pretorius Bethany Radford Guneet Makkar Carol Huang Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells Scientific Reports |
author_facet |
Vipul Shrivastava Megan Lee Daniel Lee Marle Pretorius Bethany Radford Guneet Makkar Carol Huang |
author_sort |
Vipul Shrivastava |
title |
Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
title_short |
Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
title_full |
Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
title_fullStr |
Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
title_full_unstemmed |
Beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
title_sort |
beta cell adaptation to pregnancy requires prolactin action on both beta and non-beta cells |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-05-01 |
description |
Abstract Pancreatic islets adapt to insulin resistance of pregnancy by up regulating β-cell mass and increasing insulin secretion. Previously, using a transgenic mouse with global, heterozygous deletion of prolactin receptor (Prlr+/−), we found Prlr signaling is important for this adaptation. However, since Prlr is expressed in tissues outside of islets as well as within islets and prolactin signaling affects β-cell development, to understand β-cell-specific effect of prolactin signaling in pregnancy, we generated a transgenic mouse with an inducible conditional deletion of Prlr from β-cells. Here, we found that β-cell-specific Prlr reduction in adult mice led to elevated blood glucose, lowed β-cell mass and blunted in vivo glucose-stimulated insulin secretion during pregnancy. When we compared gene expression profile of islets from transgenic mice with global (Prlr+/−) versus β-cell-specific Prlr reduction (βPrlR+/−), we found 95 differentially expressed gene, most of them down regulated in the Prlr+/− mice in comparison to the βPrlR+/− mice, and many of these genes regulate apoptosis, synaptic vesicle function and neuronal development. Importantly, we found that islets from pregnant Prlr+/− mice are more vulnerable to glucolipotoxicity-induced apoptosis than islets from pregnant βPrlR+/− mice. These observations suggest that down regulation of prolactin action during pregnancy in non-β-cells secondarily and negatively affect β-cell gene expression, and increased β-cell susceptibility to external insults. |
url |
https://doi.org/10.1038/s41598-021-89745-9 |
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