Original article | published - printed | peer reviewed
MiR-132 controls pancreatic beta cell proliferation and survival through Pten/Akt/Foxo3 signaling
Molecular Metabolism
2020 ;
31:
150 - 162
Authors
Mziaut H*, Henniger G, Ganss K, Hempel S, Wolk S, McChord J, Chowdhury K, Ravassard P, Knoch K, Krautz C, Weitz J, Grutzmann R, Pilarsky C, Solimena M, Kersting S1
Affiliations
Abstract
OBJECTIVE: MicroRNAs (miRNAs) play an integral role in maintaining beta cell function and identity. Deciphering their targets and precise role, however, remains challenging. In this study, we aimed to identify miRNAs and their downstream targets involved in the regeneration of islet beta cells following partial pancreatectomy in mice. METHODS: RNA from laser capture microdissected (LCM) islets of partially pancreatectomized and sham-operated mice were profiled with microarrays to identify putative miRNAs implicated in beta cell regeneration. Altered expression of the selected miRNAs, including miR-132, was verified by RT-PCR. Potential targets of miR-132 were selected through bioinformatic data mining. Predicted miR-132 targets were validated for their changed RNA, protein expression levels, and signaling upon miR-132 knockdown and/or overexpression in mouse MIN6 and human EndoC-betaH1 insulinoma cells. The ability of miR-132 to foster beta cell proliferation in vivo was further assessed in pancreatectomized miR-132(-/-) and control mice. RESULTS: Partial pancreatectomy significantly increased the number of BrdU(+)/insulin(+) islet cells. Microarray profiling revealed that 14 miRNAs, including miR-132 and -141, were significantly upregulated in the LCM islets of the partially pancreatectomized mice compared to the LCM islets of the control mice. In the same comparison, miR-760 was the only downregulated miRNA. The changed expression of these miRNAs in the islets of the partially pancreatectomized mice was confirmed by RT-PCR only in the case of miR-132 and -141. Based on previous knowledge of its function, we focused our attention on miR-132. Downregulation of miR-132 reduced the proliferation of MIN6 cells while enhancing the levels of pro-apoptotic cleaved caspase-9. The opposite was observed in miR-132 overexpressing MIN6 cells. Microarray profiling, RT-PCR, and immunoblotting of the latter cells demonstrated their downregulated expression of Pten with concomitant increased levels of pro-proliferative factors phospho-Akt and phospho-Creb and inactivation of pro-apoptotic Foxo3a via its phosphorylation. Downregulation of Pten was further confirmed in the LCM islets of pancreatectomized mice compared to the sham-operated mice. Moreover, overexpression of miR-132 correlated with increased proliferation of EndoC-betaH1 cells. The regeneration of beta cells following partial pancreatectomy was lower in the miR-132/212(-/-) mice than the control littermates. CONCLUSIONS: This study provides compelling evidence about the critical role of miR-132 for the regeneration of mouse islet beta cells through the downregulation of its target Pten. Hence, the miR-132/Pten/Akt/Foxo3 signaling pathway may represent a suitable target to enhance beta cell mass.
Further details
Mziaut, Hassan
Henniger, Georg
Ganss, Katharina
Hempel, Sebastian
Wolk, Steffen
McChord, Johanna
Chowdhury, Kamal
Ravassard, Philippe
Knoch, Klaus-Peter
Krautz, Christian
Weitz, Jurgen
Grutzmann, Robert
Pilarsky, Christian
Solimena, Michele
Kersting, Stephan
eng
Research Support, Non-U.S. Gov't
Germany
Mol Metab. 2020 Jan;31:150-162. doi: 10.1016/j.molmet.2019.11.012. Epub 2019 Nov 22.
Published in
Molecular Metabolism
Year | 2020 |
Impact Factor (2020) | 7.422 |
Volume | 31 |
Issue | |
Pages | 150 - 162 |
Open Access | nein |
Peer reviewed | ja |
Article type | Original article |
Article state | published - printed |
DOI | 10.1016/j.molmet.2019.11.012 |
Common journal data
Short name: MOL METAB
ISSN: 2212-8778
eISSN: 2212-8778
Country: NETHERLANDS
Language: English
Categories:
Impact factor trend
ISSN: 2212-8778
eISSN: 2212-8778
Country: NETHERLANDS
Language: English
Categories:
- ENDOCRINOLOGY & METABOLISM
Impact factor trend
Year | Impact Factor |
---|---|
2015 | 5.363 |
2016 | 6.799 |
2017 | 6.291 |
2018 | 6.181 |
2019 | 6.448 |
2020 | 7.422 |
2021 | 8.568 |
2022 | 8.1 |
2023 | 7 |