Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.

<h4>Objective</h4>Gremlin 1 (GREM1) is a secreted BMP2/4 inhibitor which regulates commitment and differentiation of human adipose precursor cells and prevents the browning effect of BMP4. GREM1 is an insulin antagonist and serum levels are high in type 2 diabetes (T2D). We here examined...

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Main Authors: Roxana Khatib Shahidi, Jenny M Hoffmann, Shahram Hedjazifar, Laurianne Bonnet, Ritesh K Baboota, Stephanie Heasman, Christopher Church, Ivet Elias, Fatima Bosch, Jeremie Boucher, Ann Hammarstedt, Ulf Smith
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0247300
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spelling doaj-56874d5e62914cb6835372b1a006b4c02021-08-17T04:31:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01162e024730010.1371/journal.pone.0247300Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.Roxana Khatib ShahidiJenny M HoffmannShahram HedjazifarLaurianne BonnetRitesh K BabootaStephanie HeasmanChristopher ChurchIvet EliasFatima BoschJeremie BoucherAnn HammarstedtUlf Smith<h4>Objective</h4>Gremlin 1 (GREM1) is a secreted BMP2/4 inhibitor which regulates commitment and differentiation of human adipose precursor cells and prevents the browning effect of BMP4. GREM1 is an insulin antagonist and serum levels are high in type 2 diabetes (T2D). We here examined in vivo effects of AAV8 (Adeno-Associated Viral vectors of serotype eight) GREM 1 targeting the liver in mature mice to increase its systemic secretion and also, in a separate study, injected recombinant GREM 1 intraperitoneally. The objective was to characterize systemic effects of GREM 1 on insulin sensitivity, glucose tolerance, body weight, adipose cell browning and other local tissue effects.<h4>Methods</h4>Adult mice were injected with AAV8 vectors expressing GREM1 in the liver or receiving regular intra-peritoneal injections of recombinant GREM1 protein. The mice were fed with a low fat or high fat diet (HFD) and followed over time.<h4>Results</h4>Liver-targeted AAV8-GREM1 did not alter body weight, whole-body glucose and insulin tolerance, or adipose tissue gene expression. Although GREM1 protein accumulated in liver cells, GREM1 serum levels were not increased suggesting that it may not have been normally processed for secretion. Hepatic lipid accumulation, inflammation and fibrosis were also not changed. Repeated intraperitoneal rec-GREM1 injections for 5 weeks were also without effects on body weight and insulin sensitivity. UCP1 was slightly but significantly reduced in both white and brown adipose tissue but this was not of sufficient magnitude to alter body weight. We validated that recombinant GREM1 inhibited BMP4-induced pSMAD1/5/9 in murine cells in vitro, but saw no direct inhibitory effect on insulin signalling and pAkt (ser 473 and thr 308) activation.<h4>Conclusion</h4>GREM1 accumulates intracellularly when overexpressed in the liver cells of mature mice and is apparently not normally processed/secreted. However, also repeated intraperitoneal injections were without effects on body weight and insulin sensitivity and adipose tissue UCP1 levels were only marginally reduced. These results suggest that mature mice do not readily respond to GREMLIN 1 but treatment of murine cells with GREMLIN 1 protein in vitro validated its inhibitory effect on BMP4 signalling while insulin signalling was not altered.https://doi.org/10.1371/journal.pone.0247300
collection DOAJ
language English
format Article
sources DOAJ
author Roxana Khatib Shahidi
Jenny M Hoffmann
Shahram Hedjazifar
Laurianne Bonnet
Ritesh K Baboota
Stephanie Heasman
Christopher Church
Ivet Elias
Fatima Bosch
Jeremie Boucher
Ann Hammarstedt
Ulf Smith
spellingShingle Roxana Khatib Shahidi
Jenny M Hoffmann
Shahram Hedjazifar
Laurianne Bonnet
Ritesh K Baboota
Stephanie Heasman
Christopher Church
Ivet Elias
Fatima Bosch
Jeremie Boucher
Ann Hammarstedt
Ulf Smith
Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
PLoS ONE
author_facet Roxana Khatib Shahidi
Jenny M Hoffmann
Shahram Hedjazifar
Laurianne Bonnet
Ritesh K Baboota
Stephanie Heasman
Christopher Church
Ivet Elias
Fatima Bosch
Jeremie Boucher
Ann Hammarstedt
Ulf Smith
author_sort Roxana Khatib Shahidi
title Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
title_short Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
title_full Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
title_fullStr Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
title_full_unstemmed Adult mice are unresponsive to AAV8-Gremlin1 gene therapy targeting the liver.
title_sort adult mice are unresponsive to aav8-gremlin1 gene therapy targeting the liver.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description <h4>Objective</h4>Gremlin 1 (GREM1) is a secreted BMP2/4 inhibitor which regulates commitment and differentiation of human adipose precursor cells and prevents the browning effect of BMP4. GREM1 is an insulin antagonist and serum levels are high in type 2 diabetes (T2D). We here examined in vivo effects of AAV8 (Adeno-Associated Viral vectors of serotype eight) GREM 1 targeting the liver in mature mice to increase its systemic secretion and also, in a separate study, injected recombinant GREM 1 intraperitoneally. The objective was to characterize systemic effects of GREM 1 on insulin sensitivity, glucose tolerance, body weight, adipose cell browning and other local tissue effects.<h4>Methods</h4>Adult mice were injected with AAV8 vectors expressing GREM1 in the liver or receiving regular intra-peritoneal injections of recombinant GREM1 protein. The mice were fed with a low fat or high fat diet (HFD) and followed over time.<h4>Results</h4>Liver-targeted AAV8-GREM1 did not alter body weight, whole-body glucose and insulin tolerance, or adipose tissue gene expression. Although GREM1 protein accumulated in liver cells, GREM1 serum levels were not increased suggesting that it may not have been normally processed for secretion. Hepatic lipid accumulation, inflammation and fibrosis were also not changed. Repeated intraperitoneal rec-GREM1 injections for 5 weeks were also without effects on body weight and insulin sensitivity. UCP1 was slightly but significantly reduced in both white and brown adipose tissue but this was not of sufficient magnitude to alter body weight. We validated that recombinant GREM1 inhibited BMP4-induced pSMAD1/5/9 in murine cells in vitro, but saw no direct inhibitory effect on insulin signalling and pAkt (ser 473 and thr 308) activation.<h4>Conclusion</h4>GREM1 accumulates intracellularly when overexpressed in the liver cells of mature mice and is apparently not normally processed/secreted. However, also repeated intraperitoneal injections were without effects on body weight and insulin sensitivity and adipose tissue UCP1 levels were only marginally reduced. These results suggest that mature mice do not readily respond to GREMLIN 1 but treatment of murine cells with GREMLIN 1 protein in vitro validated its inhibitory effect on BMP4 signalling while insulin signalling was not altered.
url https://doi.org/10.1371/journal.pone.0247300
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