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Erschienen in: Diabetologia 6/2017

09.03.2017 | Article

MicroRNA 21 targets BCL2 mRNA to increase apoptosis in rat and human beta cells

verfasst von: Emily K. Sims, Alexander J. Lakhter, Emily Anderson-Baucum, Tatsuyoshi Kono, Xin Tong, Carmella Evans-Molina

Erschienen in: Diabetologia | Ausgabe 6/2017

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Abstract

Aims/hypothesis

The role of beta cell microRNA (miR)-21 in the pathophysiology of type 1 diabetes has been controversial. Here, we sought to define the context of beta cell miR-21 upregulation in type 1 diabetes and the phenotype of beta cell miR-21 overexpression through target identification.

Methods

Islets were isolated from NOD mice and mice treated with multiple low doses of streptozotocin, as a mouse model of diabetes. INS-1 832/13 beta cells and human islets were treated with IL-1β, IFN-γ and TNF-α to mimic the milieu of early type 1 diabetes. Cells and islets were transfected with miR-21 mimics or inhibitors. Luciferase assays and polyribosomal profiling (PRP) were performed to define miR-21–target interactions.

Results

Beta cell miR-21 was increased in in vivo models of type 1 diabetes and cytokine-treated cells/islets. miR-21 overexpression decreased cell count and viability, and increased cleaved caspase 3 levels, suggesting increased cell death. In silico prediction tools identified the antiapoptotic mRNA BCL2 as a conserved miR-21 target. Consistent with this, miR-21 overexpression decreased BCL2 transcript and B cell lymphoma 2 (BCL2) protein production, while miR-21 inhibition increased BCL2 protein levels and reduced cleaved caspase 3 levels after cytokine treatment. miR-21-mediated cell death was abrogated in 828/33 cells, which constitutively overexpress Bcl2. Luciferase assays suggested a direct interaction between miR-21 and the BCL2 3′ untranslated region. With miR-21 overexpression, PRP revealed a shift of the Bcl2 message towards monosome-associated fractions, indicating inhibition of Bcl2 translation. Finally, overexpression in dispersed human islets confirmed a reduction in BCL2 transcripts and increased cleaved caspase 3 production.

Conclusions/interpretation

In contrast to the pro-survival role reported in other systems, our results demonstrate that miR-21 increases beta cell death via BCL2 transcript degradation and inhibition of BCL2 translation.
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Literatur
1.
Zurück zum Zitat Ameres SL, Zamore PD (2013) Diversifying microRNA sequence and function. Nat Rev Mol Cell Biol 14:475–488CrossRefPubMed Ameres SL, Zamore PD (2013) Diversifying microRNA sequence and function. Nat Rev Mol Cell Biol 14:475–488CrossRefPubMed
2.
Zurück zum Zitat Lynn FC, Skewes-Cox P, Kosaka Y, McManus MT, Harfe BD, German MS (2007) MicroRNA expression is required for pancreatic islet cell genesis in the mouse. Diabetes 56:2938–2945CrossRefPubMed Lynn FC, Skewes-Cox P, Kosaka Y, McManus MT, Harfe BD, German MS (2007) MicroRNA expression is required for pancreatic islet cell genesis in the mouse. Diabetes 56:2938–2945CrossRefPubMed
3.
Zurück zum Zitat Poy MN, Eliasson L, Krutzfeldt J et al (2004) A pancreatic islet-specific microRNA regulates insulin secretion. Nature 432:226–230CrossRefPubMed Poy MN, Eliasson L, Krutzfeldt J et al (2004) A pancreatic islet-specific microRNA regulates insulin secretion. Nature 432:226–230CrossRefPubMed
4.
Zurück zum Zitat Jacovetti C, Abderrahmani A, Parnaud G et al (2012) MicroRNAs contribute to compensatory beta cell expansion during pregnancy and obesity. J Clin Invest 122:3541–3551CrossRefPubMedPubMedCentral Jacovetti C, Abderrahmani A, Parnaud G et al (2012) MicroRNAs contribute to compensatory beta cell expansion during pregnancy and obesity. J Clin Invest 122:3541–3551CrossRefPubMedPubMedCentral
6.
Zurück zum Zitat Osmai M, Osmai Y, Bang-Berthelsen CH et al (2016) MicroRNAs as regulators of beta-cell function and dysfunction. Diabetes Metab Res Rev 32:334–349CrossRefPubMed Osmai M, Osmai Y, Bang-Berthelsen CH et al (2016) MicroRNAs as regulators of beta-cell function and dysfunction. Diabetes Metab Res Rev 32:334–349CrossRefPubMed
7.
Zurück zum Zitat Kim KW, Ho A, Alshabee-Akil A et al (2016) Coxsackievirus B5 infection induces dysregulation of microRNAs predicted to target known type 1 diabetes risk genes in human pancreatic islets. Diabetes 65:996–1003CrossRefPubMed Kim KW, Ho A, Alshabee-Akil A et al (2016) Coxsackievirus B5 infection induces dysregulation of microRNAs predicted to target known type 1 diabetes risk genes in human pancreatic islets. Diabetes 65:996–1003CrossRefPubMed
8.
Zurück zum Zitat Tugay K, Guay C, Marques AC et al (2016) Role of microRNAs in the age-associated decline of pancreatic beta cell function in rat islets. Diabetologia 59:161–169CrossRefPubMed Tugay K, Guay C, Marques AC et al (2016) Role of microRNAs in the age-associated decline of pancreatic beta cell function in rat islets. Diabetologia 59:161–169CrossRefPubMed
10.
Zurück zum Zitat Fernandez-Valverde SL, Taft RJ, Mattick JS (2011) MicroRNAs in beta-cell biology, insulin resistance, diabetes and its complications. Diabetes 60:1825–1831CrossRefPubMedPubMedCentral Fernandez-Valverde SL, Taft RJ, Mattick JS (2011) MicroRNAs in beta-cell biology, insulin resistance, diabetes and its complications. Diabetes 60:1825–1831CrossRefPubMedPubMedCentral
11.
Zurück zum Zitat Grieco FA, Sebastiani G, Juan-Mateu J et al (2017) MicroRNAs miR-23a-3p, miR-23b-3p and miR-149-5p regulate the expression of pro-apoptotic BH3-only proteins DP5 and PUMA in human pancreatic beta cells. Diabetes 66:100–112CrossRefPubMed Grieco FA, Sebastiani G, Juan-Mateu J et al (2017) MicroRNAs miR-23a-3p, miR-23b-3p and miR-149-5p regulate the expression of pro-apoptotic BH3-only proteins DP5 and PUMA in human pancreatic beta cells. Diabetes 66:100–112CrossRefPubMed
12.
Zurück zum Zitat Atkinson MA, Bluestone JA, Eisenbarth GS et al (2011) How does type 1 diabetes develop? The notion of homicide or beta-cell suicide revisited. Diabetes 60:1370–1379CrossRefPubMedPubMedCentral Atkinson MA, Bluestone JA, Eisenbarth GS et al (2011) How does type 1 diabetes develop? The notion of homicide or beta-cell suicide revisited. Diabetes 60:1370–1379CrossRefPubMedPubMedCentral
13.
Zurück zum Zitat Roggli E, Britan A, Gattesco S et al (2010) Involvement of microRNAs in the cytotoxic effects exerted by proinflammatory cytokines on pancreatic beta-cells. Diabetes 59:978–986CrossRefPubMedPubMedCentral Roggli E, Britan A, Gattesco S et al (2010) Involvement of microRNAs in the cytotoxic effects exerted by proinflammatory cytokines on pancreatic beta-cells. Diabetes 59:978–986CrossRefPubMedPubMedCentral
14.
Zurück zum Zitat Backe MB, Novotny GW, Christensen DP, Grunnet LG, Mandrup-Poulsen T (2014) Altering beta-cell number through stable alteration of miR-21 and miR-34a expression. Islets 6:e27754CrossRefPubMedPubMedCentral Backe MB, Novotny GW, Christensen DP, Grunnet LG, Mandrup-Poulsen T (2014) Altering beta-cell number through stable alteration of miR-21 and miR-34a expression. Islets 6:e27754CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Bravo-Egana V, Rosero S, Klein D et al (2012) Inflammation-mediated regulation of microRNA expression in transplanted pancreatic islets. J Transplant 2012:723614CrossRefPubMedPubMedCentral Bravo-Egana V, Rosero S, Klein D et al (2012) Inflammation-mediated regulation of microRNA expression in transplanted pancreatic islets. J Transplant 2012:723614CrossRefPubMedPubMedCentral
16.
Zurück zum Zitat Frampton AE, Castellano L, Colombo T et al (2015) Integrated molecular analysis to investigate the role of microRNAs in pancreatic tumour growth and progression. Lancet 385(Suppl 1):S37CrossRefPubMed Frampton AE, Castellano L, Colombo T et al (2015) Integrated molecular analysis to investigate the role of microRNAs in pancreatic tumour growth and progression. Lancet 385(Suppl 1):S37CrossRefPubMed
17.
Zurück zum Zitat Haghpanah V, Fallah P, Tavakoli R et al (2015) Antisense-miR-21 enhances differentiation/apoptosis and reduces cancer stemness state on anaplastic thyroid cancer. Tumour Biol 37:1299–1308CrossRefPubMed Haghpanah V, Fallah P, Tavakoli R et al (2015) Antisense-miR-21 enhances differentiation/apoptosis and reduces cancer stemness state on anaplastic thyroid cancer. Tumour Biol 37:1299–1308CrossRefPubMed
18.
Zurück zum Zitat Wagenaar TR, Zabludoff S, Ahn SM et al (2015) Anti-miR-21 suppresses hepatocellular carcinoma growth via broad transcriptional network deregulation. Mol Cancer Res 13:1009–1021CrossRefPubMed Wagenaar TR, Zabludoff S, Ahn SM et al (2015) Anti-miR-21 suppresses hepatocellular carcinoma growth via broad transcriptional network deregulation. Mol Cancer Res 13:1009–1021CrossRefPubMed
19.
Zurück zum Zitat Ruan Q, Wang T, Kameswaran V et al (2011) The microRNA-21-PDCD4 axis prevents type 1 diabetes by blocking pancreatic beta cell death. Proc Natl Acad Sci U S A 108:12030–12035CrossRefPubMedPubMedCentral Ruan Q, Wang T, Kameswaran V et al (2011) The microRNA-21-PDCD4 axis prevents type 1 diabetes by blocking pancreatic beta cell death. Proc Natl Acad Sci U S A 108:12030–12035CrossRefPubMedPubMedCentral
20.
Zurück zum Zitat Stull ND, Breite A, McCarthy R, Tersey SA, Mirmira RG (2012) Mouse islet of Langerhans isolation using a combination of purified collagenase and neutral protease. J Vis Exp : JoVE Stull ND, Breite A, McCarthy R, Tersey SA, Mirmira RG (2012) Mouse islet of Langerhans isolation using a combination of purified collagenase and neutral protease. J Vis Exp : JoVE
21.
Zurück zum Zitat Garber JC, Barbee RW, Bielitzki JT et al (2011) Guide for the care and use of laboratory animals, vol 8. The National Academic Press, Washington DC, p 220 Garber JC, Barbee RW, Bielitzki JT et al (2011) Guide for the care and use of laboratory animals, vol 8. The National Academic Press, Washington DC, p 220
22.
Zurück zum Zitat Hohmeier HE, Newgard CB (2004) Cell lines derived from pancreatic islets. Mol Cell Endocrinol 228:121–128CrossRefPubMed Hohmeier HE, Newgard CB (2004) Cell lines derived from pancreatic islets. Mol Cell Endocrinol 228:121–128CrossRefPubMed
23.
Zurück zum Zitat Tran VV, Chen G, Newgard CB, Hohmeier HE (2003) Discrete and complementary mechanisms of protection of beta-cells against cytokine-induced and oxidative damage achieved by bcl-2 overexpression and a cytokine selection strategy. Diabetes 52:1423–1432CrossRefPubMed Tran VV, Chen G, Newgard CB, Hohmeier HE (2003) Discrete and complementary mechanisms of protection of beta-cells against cytokine-induced and oxidative damage achieved by bcl-2 overexpression and a cytokine selection strategy. Diabetes 52:1423–1432CrossRefPubMed
24.
Zurück zum Zitat Kono T, Ahn G, Moss DR et al (2012) PPAR-gamma activation restores pancreatic islet SERCA2 levels and prevents beta-cell dysfunction under conditions of hyperglycemic and cytokine stress. Mol Endocrinol 26:257–271CrossRefPubMedPubMedCentral Kono T, Ahn G, Moss DR et al (2012) PPAR-gamma activation restores pancreatic islet SERCA2 levels and prevents beta-cell dysfunction under conditions of hyperglycemic and cytokine stress. Mol Endocrinol 26:257–271CrossRefPubMedPubMedCentral
25.
Zurück zum Zitat Chakrabarti SK, James JC, Mirmira RG (2002) Quantitative assessment of gene targeting in vitro and in vivo by the pancreatic transcription factor, Pdx1: importance of chromatin structure in directing promoter binding. J Biol Chem 277:13286–13293CrossRefPubMed Chakrabarti SK, James JC, Mirmira RG (2002) Quantitative assessment of gene targeting in vitro and in vivo by the pancreatic transcription factor, Pdx1: importance of chromatin structure in directing promoter binding. J Biol Chem 277:13286–13293CrossRefPubMed
26.
Zurück zum Zitat Johnson JS, Kono T, Tong X et al (2014) Pancreatic and duodenal homeobox protein 1 (Pdx-1) maintains endoplasmic reticulum calcium levels through transcriptional regulation of sarco-endoplasmic reticulum calcium ATPase 2b (SERCA2b) in the islet beta cell. J Biol Chem 289:32798–32810CrossRefPubMedPubMedCentral Johnson JS, Kono T, Tong X et al (2014) Pancreatic and duodenal homeobox protein 1 (Pdx-1) maintains endoplasmic reticulum calcium levels through transcriptional regulation of sarco-endoplasmic reticulum calcium ATPase 2b (SERCA2b) in the islet beta cell. J Biol Chem 289:32798–32810CrossRefPubMedPubMedCentral
27.
Zurück zum Zitat Sims EK, Hatanaka M, Morris DL et al (2013) Divergent compensatory responses to high-fat diet between C57BL6/J and C57BLKS/J inbred mouse strains. Am J Phys Endocrinol Metab 305:E1495–E1511CrossRef Sims EK, Hatanaka M, Morris DL et al (2013) Divergent compensatory responses to high-fat diet between C57BL6/J and C57BLKS/J inbred mouse strains. Am J Phys Endocrinol Metab 305:E1495–E1511CrossRef
28.
Zurück zum Zitat Hatanaka M, Maier B, Sims EK et al (2014) Palmitate induces mRNA translation and increases ER protein load in islet beta-cells via activation of the mammalian target of rapamycin pathway. Diabetes 63:3404–3415CrossRefPubMedPubMedCentral Hatanaka M, Maier B, Sims EK et al (2014) Palmitate induces mRNA translation and increases ER protein load in islet beta-cells via activation of the mammalian target of rapamycin pathway. Diabetes 63:3404–3415CrossRefPubMedPubMedCentral
29.
Zurück zum Zitat Lewis BP, Burge CB, Bartel DP (2005) Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets. Cell 120:15–20CrossRefPubMed Lewis BP, Burge CB, Bartel DP (2005) Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets. Cell 120:15–20CrossRefPubMed
30.
Zurück zum Zitat Betel D, Wilson M, Gabow A, Marks DS, Sander C (2008) The microRNA.org resource: targets and expression. Nucleic Acids Res 36:D149–D153CrossRefPubMed Betel D, Wilson M, Gabow A, Marks DS, Sander C (2008) The microRNA.org resource: targets and expression. Nucleic Acids Res 36:D149–D153CrossRefPubMed
31.
Zurück zum Zitat Agarwal V, Bell GW, Nam J-W, Bartel DP (2015) Predicting effective microRNA target sites in mammalian mRNAs. elife 4:e05005CrossRefPubMedCentral Agarwal V, Bell GW, Nam J-W, Bartel DP (2015) Predicting effective microRNA target sites in mammalian mRNAs. elife 4:e05005CrossRefPubMedCentral
32.
Zurück zum Zitat Dahlen E, Dawe K, Ohlsson L, Hedlund G (1998) Dendritic cells and macrophages are the first and major producers of TNF-alpha in pancreatic islets in the nonobese diabetic mouse. J Immunol 160:3585–3593PubMed Dahlen E, Dawe K, Ohlsson L, Hedlund G (1998) Dendritic cells and macrophages are the first and major producers of TNF-alpha in pancreatic islets in the nonobese diabetic mouse. J Immunol 160:3585–3593PubMed
33.
Zurück zum Zitat Tersey SA, Nishiki Y, Templin AT et al (2012) Islet beta-cell endoplasmic reticulum stress precedes the onset of type 1 diabetes in the nonobese diabetic mouse model. Diabetes 61:818–827CrossRefPubMedPubMedCentral Tersey SA, Nishiki Y, Templin AT et al (2012) Islet beta-cell endoplasmic reticulum stress precedes the onset of type 1 diabetes in the nonobese diabetic mouse model. Diabetes 61:818–827CrossRefPubMedPubMedCentral
35.
Zurück zum Zitat Gurzov EN, Eizirik DL (2011) Bcl-2 proteins in diabetes: mitochondrial pathways of beta-cell death and dysfunction. Trends Cell Biol 21:424–431CrossRefPubMed Gurzov EN, Eizirik DL (2011) Bcl-2 proteins in diabetes: mitochondrial pathways of beta-cell death and dysfunction. Trends Cell Biol 21:424–431CrossRefPubMed
36.
Zurück zum Zitat Iwahashi H, Hanafusa T, Eguchi Y et al (1996) Cytokine-induced apoptotic cell death in a mouse pancreatic beta-cell line: inhibition by Bcl-2. Diabetologia 39:530–536CrossRefPubMed Iwahashi H, Hanafusa T, Eguchi Y et al (1996) Cytokine-induced apoptotic cell death in a mouse pancreatic beta-cell line: inhibition by Bcl-2. Diabetologia 39:530–536CrossRefPubMed
37.
Zurück zum Zitat Rabinovitch A, Suarez-Pinzon W, Strynadka K et al (1999) Transfection of human pancreatic islets with an anti-apoptotic gene (bcl-2) protects beta-cells from cytokine-induced destruction. Diabetes 48:1223–1229CrossRefPubMed Rabinovitch A, Suarez-Pinzon W, Strynadka K et al (1999) Transfection of human pancreatic islets with an anti-apoptotic gene (bcl-2) protects beta-cells from cytokine-induced destruction. Diabetes 48:1223–1229CrossRefPubMed
38.
Zurück zum Zitat Li Y, Yan L, Zhang W et al (2014) miR-21 inhibitor suppresses proliferation and migration of nasopharyngeal carcinoma cells through down-regulation of BCL2 expression. Int J Clin Exp Pathol 7:3478–3487PubMedPubMedCentral Li Y, Yan L, Zhang W et al (2014) miR-21 inhibitor suppresses proliferation and migration of nasopharyngeal carcinoma cells through down-regulation of BCL2 expression. Int J Clin Exp Pathol 7:3478–3487PubMedPubMedCentral
39.
Zurück zum Zitat Dong J, Zhao Y-P, Zhou L, Zhang T-P, Chen G (2011) Bcl-2 upregulation induced by miR-21 via a direct interaction is associated with apoptosis and chemoresistance in MIA PaCa-2 pancreatic cancer cells. Arch Med Res 42:8–14CrossRefPubMed Dong J, Zhao Y-P, Zhou L, Zhang T-P, Chen G (2011) Bcl-2 upregulation induced by miR-21 via a direct interaction is associated with apoptosis and chemoresistance in MIA PaCa-2 pancreatic cancer cells. Arch Med Res 42:8–14CrossRefPubMed
40.
Zurück zum Zitat Si M, Zhu S, Wu H, Lu Z, Wu F, Mo Y (2007) miR-21-mediated tumor growth. Oncogene 26:2799–2803CrossRefPubMed Si M, Zhu S, Wu H, Lu Z, Wu F, Mo Y (2007) miR-21-mediated tumor growth. Oncogene 26:2799–2803CrossRefPubMed
41.
Zurück zum Zitat Wickramasinghe NS, Manavalan TT, Dougherty SM, Riggs KA, Li Y, Klinge CM (2009) Estradiol downregulates miR-21 expression and increases miR-21 target gene expression in MCF-7 breast cancer cells. Nucleic Acids Res 37:2584–2595CrossRefPubMedPubMedCentral Wickramasinghe NS, Manavalan TT, Dougherty SM, Riggs KA, Li Y, Klinge CM (2009) Estradiol downregulates miR-21 expression and increases miR-21 target gene expression in MCF-7 breast cancer cells. Nucleic Acids Res 37:2584–2595CrossRefPubMedPubMedCentral
42.
Zurück zum Zitat Allison J, Thomas H, Beck D et al (2000) Transgenic overexpression of human Bcl-2 in islet beta cells inhibits apoptosis but does not prevent autoimmune destruction. Int Immunol 12:9–17CrossRefPubMed Allison J, Thomas H, Beck D et al (2000) Transgenic overexpression of human Bcl-2 in islet beta cells inhibits apoptosis but does not prevent autoimmune destruction. Int Immunol 12:9–17CrossRefPubMed
43.
Zurück zum Zitat Liu Y, Rabinovitch A, Suarez-Pinzon W et al (1996) Expression of the bcl-2 gene from a defective HSV-1 amplicon vector protects pancreatic beta-cells from apoptosis. Hum Gene Ther 7:1719–1726CrossRefPubMed Liu Y, Rabinovitch A, Suarez-Pinzon W et al (1996) Expression of the bcl-2 gene from a defective HSV-1 amplicon vector protects pancreatic beta-cells from apoptosis. Hum Gene Ther 7:1719–1726CrossRefPubMed
44.
Zurück zum Zitat Luciani DS, White SA, Widenmaier SB et al (2013) Bcl-2 and Bcl-xL suppress glucose signaling in pancreatic beta-cells. Diabetes 62:170–182CrossRefPubMed Luciani DS, White SA, Widenmaier SB et al (2013) Bcl-2 and Bcl-xL suppress glucose signaling in pancreatic beta-cells. Diabetes 62:170–182CrossRefPubMed
45.
Zurück zum Zitat Aharoni-Simon M, Shumiatcher R, Yeung A et al (2016) Bcl-2 regulates reactive oxygen species signaling and a redox-sensitive mitochondrial proton leak in mouse pancreatic β-cells. Endocrinology 157:2270–2281CrossRefPubMed Aharoni-Simon M, Shumiatcher R, Yeung A et al (2016) Bcl-2 regulates reactive oxygen species signaling and a redox-sensitive mitochondrial proton leak in mouse pancreatic β-cells. Endocrinology 157:2270–2281CrossRefPubMed
Metadaten
Titel
MicroRNA 21 targets BCL2 mRNA to increase apoptosis in rat and human beta cells
verfasst von
Emily K. Sims
Alexander J. Lakhter
Emily Anderson-Baucum
Tatsuyoshi Kono
Xin Tong
Carmella Evans-Molina
Publikationsdatum
09.03.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Diabetologia / Ausgabe 6/2017
Print ISSN: 0012-186X
Elektronische ISSN: 1432-0428
DOI
https://doi.org/10.1007/s00125-017-4237-z

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