Literature DB >> 33764312

Lower threshold to NFκB activity sensitizes murine β-cells to streptozotocin.

Clyde J Wright1, Sarah McKenna1, Robyn De Dios1, Brit H Boehmer1, Leanna Nguyen1, Sankar Ghosh2, Jeryl Sandoval1, Paul J Rozance1.   

Abstract

The β-cell response to injury may be as critical for the development of diabetes as the specific insult. In the current study, we used streptozotocin (STZ) to injure the β-cell in order to study the response with a focus on NFκB. MIN6 cells were exposed to STZ (0.5-8 mM, 0-24h) ±TNFα (100 ng/mL) and ±IκBβ siRNA to lower the threshold to NFκB activation. Cell viability was determined by trypan blue exclusion. NFκB activation was determined by the expression of the target genes Nos2 and Cxcl10, localization of the NFκB proteins p65 and p50, and expression and localization of the NFκB inhibitors, IκBβ and IκBα. There was no NFκB activation in MIN6 cell exposed to STZ (2 mM) alone. However, knocking down IκBβ expression using siRNA resulted in STZ-induced expression of NFκB target genes and increased cell death, while co-incubation with STZ and TNFα enhanced cell death compared to either exposure alone. Adult male IκBβ-/- and WT mice were exposed to STZ and monitored for diabetes. The IκBβ-/- mice developed hyperglycemia and diabetes more frequently than controls following STZ exposure. Based on these results we conclude that STZ exposure alone does not induce NFκB activity. However, lowering the threshold to NFκB activation by co-incubation with TNFα or lowering IκBβ levels by siRNA sensitizes the NFκB response to STZ and results in a higher likelihood of developing diabetes in vivo. Therefore, increasing the threshold to NFκB activation through stabilizing NFκB inhibitory proteins may prevent β-cell injury and the development of diabetes.

Entities:  

Keywords:  Cxcl10; IκB; NFκB; Nos2; Streptozotocin; diabetes; β-cell

Mesh:

Substances:

Year:  2021        PMID: 33764312      PMCID: PMC8113150          DOI: 10.1530/JOE-21-0047

Source DB:  PubMed          Journal:  J Endocrinol        ISSN: 0022-0795            Impact factor:   4.286


  55 in total

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5.  CpG-ODN-mediated TLR9 innate immune signalling and calcium dyshomeostasis converge on the NFκB inhibitory protein IκBβ to drive IL1α and IL1β expression.

Authors:  Robyn De Dios; Leanna Nguyen; Sankar Ghosh; Sarah McKenna; Clyde J Wright
Journal:  Immunology       Date:  2020-03-18       Impact factor: 7.397

6.  Constitutive NF-kappa B activation, enhanced granulopoiesis, and neonatal lethality in I kappa B alpha-deficient mice.

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7.  CXCL10 impairs beta cell function and viability in diabetes through TLR4 signaling.

Authors:  Fabienne T Schulthess; Federico Paroni; Nadine S Sauter; Luan Shu; Pascale Ribaux; Leena Haataja; Robert M Strieter; Jose Oberholzer; Charles C King; Kathrin Maedler
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Authors:  Melanie Scheibel; Bettina Klein; Heidrun Merkle; Manon Schulz; Ralph Fritsch; Florian R Greten; Melek C Arkan; Günter Schneider; Roland M Schmid
Journal:  J Exp Med       Date:  2010-10-25       Impact factor: 14.307

9.  Streptozotocin-induced cytotoxicity, oxidative stress and mitochondrial dysfunction in human hepatoma HepG2 cells.

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Journal:  Int J Mol Sci       Date:  2012-05-11       Impact factor: 6.208

10.  Mitochondria to nucleus stress signaling: a distinctive mechanism of NFkappaB/Rel activation through calcineurin-mediated inactivation of IkappaBbeta.

Authors:  Gopa Biswas; Hindupur K Anandatheerthavarada; Mone Zaidi; Narayan G Avadhani
Journal:  J Cell Biol       Date:  2003-05-05       Impact factor: 10.539

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