Cre-mediated stress affects sirtuin expression levels, Peroxisome biogenesis and metabolism, antioxidant and proinflammatory signaling pathways

dc.contributor.authorXiao, Yu
dc.contributor.authorKarnati, Srikanth
dc.contributor.authorQian, Guofeng
dc.contributor.authorNenicu, Anca
dc.contributor.authorFan, Wei
dc.contributor.authorTchatalbachev, Svetlin
dc.contributor.authorHöland, Anita
dc.contributor.authorHossain, Hamid
dc.contributor.authorGuillou, Florian
dc.contributor.authorLüers, Georg H.
dc.contributor.authorBaumgart-Vogt, Eveline
dc.date.accessioned2022-11-18T09:56:45Z
dc.date.available2012-08-30T09:29:56Z
dc.date.available2022-11-18T09:56:45Z
dc.date.issued2012
dc.description.abstractCre-mediated excision of loxP sites is widely used in mice to manipulate gene function in a tissue-specific manner. To analyze phenotypic alterations related to Cre-expression, we have used AMH-Cre-transgenic mice as a model system. Different Cre expression levels were obtained by investigation of C57BL/6J wild type as well as heterozygous and homozygous AMH-Cre-mice. Our results indicate that Cre-expression itself in Sertoli cells already has led to oxidative stress and lipid peroxidation (4-HNE lysine adducts), inducing PPAR-alpa/gamma, peroxisome proliferation and alterations of peroxisome biogenesis (PEX5, PEX13 and PEX14) as well as metabolic proteins (ABCD1, ABCD3, MFP1, thiolase B, catalase). In addition to the strong catalase increase, a NRF2- and FOXO3-mediated antioxidative response (HMOX1 of the endoplasmic reticulum and mitochondrial SOD2) and a NF-?B activation were noted. TGFß1 and proinflammatory cytokines like IL1, IL6 and TNFa were upregulated and stress-related signaling pathways were induced. Sertoli cell mRNA-microarray analysis revealed an increase of TNFR2-signaling components. 53BP1 recruitment and expression levels for DNA repair genes as well as for p53 were elevated and the ones for related sirtuin deacetylases affected (SIRT 1, 3-7) in Sertoli cells. Under chronic Cre-mediated DNA damage conditions a strong downregulation of Sirt1 was observed, suggesting that the decrease of this important coordinator between DNA repair and metabolic signaling might induce the repression release of major transcription factors regulating metabolic and cytokine-mediated stress pathways. Indeed, caspase-3 was activated and increased germ cell apoptosis was observed, suggesting paracrine effects. In conclusion, the observed wide stress-induced effects and metabolic alterations suggest that it is essential to use the correct control animals (Cre/Wt) with matched Cre expression levels to differentiate between Cre-mediated and specific gene-knock out-mediated effects.en
dc.identifier.urihttp://nbn-resolving.de/urn:nbn:de:hebis:26-opus-89487
dc.identifier.urihttps://jlupub.ub.uni-giessen.de//handle/jlupub/9653
dc.identifier.urihttp://dx.doi.org/10.22029/jlupub-9041
dc.language.isoende_DE
dc.rightsNamensnennung 3.0 International*
dc.rights.urihttps://creativecommons.org/licenses/by/3.0/*
dc.subjectCre-expressionen
dc.subjectAMH-Cre-transgenic miceen
dc.subjectSertoli cellsen
dc.subjectstress-related signaling pathwaysen
dc.subjectDNA damageen
dc.subject.ddcddc:610de_DE
dc.titleCre-mediated stress affects sirtuin expression levels, Peroxisome biogenesis and metabolism, antioxidant and proinflammatory signaling pathwaysen
dc.typearticlede_DE
local.affiliationFB 11 - Medizinde_DE
local.opus.fachgebietMedizinde_DE
local.opus.id8948
local.opus.instituteInstitute for Anatomy and Cell Biology II; Institute for Medical Microbiologyde_DE
local.source.freetextPLoS ONE, 7(7), e41097, 1-21de_DE
local.source.urihttps://doi.org/10.1371/journal.pone.0041097

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