Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets
Background:Cholesterol is an essential component of lipid rafts in cell plasma membrane,which exerts a hepato-protective role against mycotoxin exposure in pigs,and cholesterol metabolism is vulnerable to epigenetic histone acetylation.Therefore,our present study aimed to investigate whether a histo...
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description | Background:Cholesterol is an essential component of lipid rafts in cell plasma membrane,which exerts a hepato-protective role against mycotoxin exposure in pigs,and cholesterol metabolism is vulnerable to epigenetic histone acetylation.Therefore,our present study aimed to investigate whether a histone deacetylase inhibitor(sodium butyrate[NaBu])could protect the porcine liver from deoxynivalenol(DON)exposure by modulating cholesterol metabolism.Herein,we randomly divided 28 pigs into four groups,which were fed an uncontaminated basal diet,contaminated diet(4 mg DON/kg),uncontaminated diet supplemented with 0.2%NaBu or4mg/kg DON contami-nated diet(4 mg DON/kg)supplemented with 0.2%NaBu for 28 d.Results:We found that the serum alanine transaminase(ALT),aspartate transaminase(AST),and alkaline phos-phatase(ALP)were all increased in pigs exposed to DON,indicative of significant liver injury.Furthermore,the choles-terol content in the serum of DON-exposed pigs was significantly reduced,compared to the healthy Vehicle group.Transcriptome analysis of porcine liver tissues revealed that the cholesterol homeostasis pathway was highly enriched due to DON exposure.In which we validated by qRT-PCR and western blotting that the cholesterol program was markedly activated.Importantly,NaBu effectively restored parameters associated with liver injury,along with the cho-lesterol content and the expression of key genes involved in the cholesterol biosynthesis pathway.Mechanistically,we performed a ChIP-seq analysis of H3K27ac and showed that NaBu strongly diminished DON-increased H3K27ac genome-wide enrichment.We further validated that the elevated H3K27ac and H3K9ac occupancies on cholesterol biosynthesis genes were both decreased by NaBu,as determined by ChlP-qPCR analysis.Notably,nuclear receptor RORy,a novel regulator of cholesterol biosynthesis,was found in the hyperacetylated regions.Again,a remarkable increase of RORγ at both mRNA and protein levels in DON-exposed porcine livers was drastically reduced by NaBu.Consistent with RORγ expression,NaBu also hindered RORγ transcriptional binding enrichments on these activated cholesterol biosynthesis genes like HMGCR,SQLE,and DHCR24.Furthermore,we conducted an in vitro luciferase reporter assay to verify that porcine RORγ directly bonds to the promoters of the above target genes.Conclusions:Collectively,our results demonstrate the utility of the natural product NaBu as a potential anti-myco-toxin nutritional strategy for reg |
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fullrecord | <record><control><sourceid>wanfang_jour</sourceid><recordid>TN_cdi_wanfang_journals_xmyswjszz_e202302024</recordid><sourceformat>XML</sourceformat><sourcesystem>PC</sourcesystem><wanfj_id>xmyswjszz_e202302024</wanfj_id><sourcerecordid>xmyswjszz_e202302024</sourcerecordid><originalsourceid>FETCH-wanfang_journals_xmyswjszz_e2023020243</originalsourceid><addsrcrecordid>eNqVTktOwzAQ9QKkVtA7zAGIlCZVU9YIxA6psI9ce5JOZI-r2G7qHqdX6D04E-ZzAWbx5vfem7kR8-W6WRWPzaaaiYX3Q5ljXTX1ZjkXl3enKVrYxZBGGRCkMXikXHnQ6E6J6SgNsjMFsY4KNezxIAMpUHtn0AccnQGLQe6cyVOdfBdZBXIM2Qe2b9vPa2FRf3tmMfngOJ9RGJKRPzSbX-hI_TbEMKFk4h4O1BsM_l7cdtJ4XPzlO_Hw8vzx9FpMkjvJfTu4OHLetCeb_DT487nFqqzqMsOq_if9C3XzaLE</addsrcrecordid><sourcetype>Aggregation Database</sourcetype><iscdi>true</iscdi><recordtype>article</recordtype></control><display><type>article</type><title>Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets</title><source>DOAJ Directory of Open Access Journals</source><source>Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals</source><source>PubMed Central</source><source>Alma/SFX Local Collection</source><source>SpringerLink Journals - AutoHoldings</source><source>PubMed Central Open Access</source><source>Springer Nature OA Free Journals</source><creator>Qiufang Zong ; Huan Qu ; Yahui Zhao ; Haoyu Liu ; Shenglong Wu ; Shuai Wang ; Wenbin Bao ; Demin Cai</creator><creatorcontrib>Qiufang Zong ; Huan Qu ; Yahui Zhao ; Haoyu Liu ; Shenglong Wu ; Shuai Wang ; Wenbin Bao ; Demin Cai</creatorcontrib><description>Background:Cholesterol is an essential component of lipid rafts in cell plasma membrane,which exerts a hepato-protective role against mycotoxin exposure in pigs,and cholesterol metabolism is vulnerable to epigenetic histone acetylation.Therefore,our present study aimed to investigate whether a histone deacetylase inhibitor(sodium butyrate[NaBu])could protect the porcine liver from deoxynivalenol(DON)exposure by modulating cholesterol metabolism.Herein,we randomly divided 28 pigs into four groups,which were fed an uncontaminated basal diet,contaminated diet(4 mg DON/kg),uncontaminated diet supplemented with 0.2%NaBu or4mg/kg DON contami-nated diet(4 mg DON/kg)supplemented with 0.2%NaBu for 28 d.Results:We found that the serum alanine transaminase(ALT),aspartate transaminase(AST),and alkaline phos-phatase(ALP)were all increased in pigs exposed to DON,indicative of significant liver injury.Furthermore,the choles-terol content in the serum of DON-exposed pigs was significantly reduced,compared to the healthy Vehicle group.Transcriptome analysis of porcine liver tissues revealed that the cholesterol homeostasis pathway was highly enriched due to DON exposure.In which we validated by qRT-PCR and western blotting that the cholesterol program was markedly activated.Importantly,NaBu effectively restored parameters associated with liver injury,along with the cho-lesterol content and the expression of key genes involved in the cholesterol biosynthesis pathway.Mechanistically,we performed a ChIP-seq analysis of H3K27ac and showed that NaBu strongly diminished DON-increased H3K27ac genome-wide enrichment.We further validated that the elevated H3K27ac and H3K9ac occupancies on cholesterol biosynthesis genes were both decreased by NaBu,as determined by ChlP-qPCR analysis.Notably,nuclear receptor RORy,a novel regulator of cholesterol biosynthesis,was found in the hyperacetylated regions.Again,a remarkable increase of RORγ at both mRNA and protein levels in DON-exposed porcine livers was drastically reduced by NaBu.Consistent with RORγ expression,NaBu also hindered RORγ transcriptional binding enrichments on these activated cholesterol biosynthesis genes like HMGCR,SQLE,and DHCR24.Furthermore,we conducted an in vitro luciferase reporter assay to verify that porcine RORγ directly bonds to the promoters of the above target genes.Conclusions:Collectively,our results demonstrate the utility of the natural product NaBu as a potential anti-myco-toxin nutritional strategy for regulating cholesterol metabolism via RORγ-mediated histone acetylation modification.</description><identifier>ISSN: 1674-9782</identifier><language>eng</language><publisher>College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China%College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China</publisher><ispartof>畜牧与生物技术杂志(英文版), 2023, Vol.14 (2), p.792-805</ispartof><rights>Copyright © Wanfang Data Co. Ltd. All Rights Reserved.</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Uhttp://www.wanfangdata.com.cn/images/PeriodicalImages/xmyswjszz-e/xmyswjszz-e.jpg</thumbnail><link.rule.ids>314,776,780,4010</link.rule.ids></links><search><creatorcontrib>Qiufang Zong</creatorcontrib><creatorcontrib>Huan Qu</creatorcontrib><creatorcontrib>Yahui Zhao</creatorcontrib><creatorcontrib>Haoyu Liu</creatorcontrib><creatorcontrib>Shenglong Wu</creatorcontrib><creatorcontrib>Shuai Wang</creatorcontrib><creatorcontrib>Wenbin Bao</creatorcontrib><creatorcontrib>Demin Cai</creatorcontrib><title>Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets</title><title>畜牧与生物技术杂志(英文版)</title><description>Background:Cholesterol is an essential component of lipid rafts in cell plasma membrane,which exerts a hepato-protective role against mycotoxin exposure in pigs,and cholesterol metabolism is vulnerable to epigenetic histone acetylation.Therefore,our present study aimed to investigate whether a histone deacetylase inhibitor(sodium butyrate[NaBu])could protect the porcine liver from deoxynivalenol(DON)exposure by modulating cholesterol metabolism.Herein,we randomly divided 28 pigs into four groups,which were fed an uncontaminated basal diet,contaminated diet(4 mg DON/kg),uncontaminated diet supplemented with 0.2%NaBu or4mg/kg DON contami-nated diet(4 mg DON/kg)supplemented with 0.2%NaBu for 28 d.Results:We found that the serum alanine transaminase(ALT),aspartate transaminase(AST),and alkaline phos-phatase(ALP)were all increased in pigs exposed to DON,indicative of significant liver injury.Furthermore,the choles-terol content in the serum of DON-exposed pigs was significantly reduced,compared to the healthy Vehicle group.Transcriptome analysis of porcine liver tissues revealed that the cholesterol homeostasis pathway was highly enriched due to DON exposure.In which we validated by qRT-PCR and western blotting that the cholesterol program was markedly activated.Importantly,NaBu effectively restored parameters associated with liver injury,along with the cho-lesterol content and the expression of key genes involved in the cholesterol biosynthesis pathway.Mechanistically,we performed a ChIP-seq analysis of H3K27ac and showed that NaBu strongly diminished DON-increased H3K27ac genome-wide enrichment.We further validated that the elevated H3K27ac and H3K9ac occupancies on cholesterol biosynthesis genes were both decreased by NaBu,as determined by ChlP-qPCR analysis.Notably,nuclear receptor RORy,a novel regulator of cholesterol biosynthesis,was found in the hyperacetylated regions.Again,a remarkable increase of RORγ at both mRNA and protein levels in DON-exposed porcine livers was drastically reduced by NaBu.Consistent with RORγ expression,NaBu also hindered RORγ transcriptional binding enrichments on these activated cholesterol biosynthesis genes like HMGCR,SQLE,and DHCR24.Furthermore,we conducted an in vitro luciferase reporter assay to verify that porcine RORγ directly bonds to the promoters of the above target genes.Conclusions:Collectively,our results demonstrate the utility of the natural product NaBu as a potential anti-myco-toxin nutritional strategy for regulating cholesterol metabolism via RORγ-mediated histone acetylation modification.</description><issn>1674-9782</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNqVTktOwzAQ9QKkVtA7zAGIlCZVU9YIxA6psI9ce5JOZI-r2G7qHqdX6D04E-ZzAWbx5vfem7kR8-W6WRWPzaaaiYX3Q5ljXTX1ZjkXl3enKVrYxZBGGRCkMXikXHnQ6E6J6SgNsjMFsY4KNezxIAMpUHtn0AccnQGLQe6cyVOdfBdZBXIM2Qe2b9vPa2FRf3tmMfngOJ9RGJKRPzSbX-hI_TbEMKFk4h4O1BsM_l7cdtJ4XPzlO_Hw8vzx9FpMkjvJfTu4OHLetCeb_DT487nFqqzqMsOq_if9C3XzaLE</recordid><startdate>2023</startdate><enddate>2023</enddate><creator>Qiufang Zong</creator><creator>Huan Qu</creator><creator>Yahui Zhao</creator><creator>Haoyu Liu</creator><creator>Shenglong Wu</creator><creator>Shuai Wang</creator><creator>Wenbin Bao</creator><creator>Demin Cai</creator><general>College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China%College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China</general><general>Joint International Research Laboratory of Agriculture&Agri-Product Safety,Yangzhou University,Yangzhou 225009,PR China%Department of Animal Nutrition and Feed Science,College of Animal Science and Technology,Huazhong Agricultural University,Wuhan 430070,PR China</general><scope>2B.</scope><scope>4A8</scope><scope>92I</scope><scope>93N</scope><scope>PSX</scope><scope>TCJ</scope></search><sort><creationdate>2023</creationdate><title>Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets</title><author>Qiufang Zong ; Huan Qu ; Yahui Zhao ; Haoyu Liu ; Shenglong Wu ; Shuai Wang ; Wenbin Bao ; Demin Cai</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-wanfang_journals_xmyswjszz_e2023020243</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2023</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Qiufang Zong</creatorcontrib><creatorcontrib>Huan Qu</creatorcontrib><creatorcontrib>Yahui Zhao</creatorcontrib><creatorcontrib>Haoyu Liu</creatorcontrib><creatorcontrib>Shenglong Wu</creatorcontrib><creatorcontrib>Shuai Wang</creatorcontrib><creatorcontrib>Wenbin Bao</creatorcontrib><creatorcontrib>Demin Cai</creatorcontrib><collection>Wanfang Data Journals - Hong Kong</collection><collection>WANFANG Data Centre</collection><collection>Wanfang Data Journals</collection><collection>万方数据期刊 - 香港版</collection><collection>China Online Journals (COJ)</collection><collection>China Online Journals (COJ)</collection><jtitle>畜牧与生物技术杂志(英文版)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Qiufang Zong</au><au>Huan Qu</au><au>Yahui Zhao</au><au>Haoyu Liu</au><au>Shenglong Wu</au><au>Shuai Wang</au><au>Wenbin Bao</au><au>Demin Cai</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets</atitle><jtitle>畜牧与生物技术杂志(英文版)</jtitle><date>2023</date><risdate>2023</risdate><volume>14</volume><issue>2</issue><spage>792</spage><epage>805</epage><pages>792-805</pages><issn>1674-9782</issn><abstract>Background:Cholesterol is an essential component of lipid rafts in cell plasma membrane,which exerts a hepato-protective role against mycotoxin exposure in pigs,and cholesterol metabolism is vulnerable to epigenetic histone acetylation.Therefore,our present study aimed to investigate whether a histone deacetylase inhibitor(sodium butyrate[NaBu])could protect the porcine liver from deoxynivalenol(DON)exposure by modulating cholesterol metabolism.Herein,we randomly divided 28 pigs into four groups,which were fed an uncontaminated basal diet,contaminated diet(4 mg DON/kg),uncontaminated diet supplemented with 0.2%NaBu or4mg/kg DON contami-nated diet(4 mg DON/kg)supplemented with 0.2%NaBu for 28 d.Results:We found that the serum alanine transaminase(ALT),aspartate transaminase(AST),and alkaline phos-phatase(ALP)were all increased in pigs exposed to DON,indicative of significant liver injury.Furthermore,the choles-terol content in the serum of DON-exposed pigs was significantly reduced,compared to the healthy Vehicle group.Transcriptome analysis of porcine liver tissues revealed that the cholesterol homeostasis pathway was highly enriched due to DON exposure.In which we validated by qRT-PCR and western blotting that the cholesterol program was markedly activated.Importantly,NaBu effectively restored parameters associated with liver injury,along with the cho-lesterol content and the expression of key genes involved in the cholesterol biosynthesis pathway.Mechanistically,we performed a ChIP-seq analysis of H3K27ac and showed that NaBu strongly diminished DON-increased H3K27ac genome-wide enrichment.We further validated that the elevated H3K27ac and H3K9ac occupancies on cholesterol biosynthesis genes were both decreased by NaBu,as determined by ChlP-qPCR analysis.Notably,nuclear receptor RORy,a novel regulator of cholesterol biosynthesis,was found in the hyperacetylated regions.Again,a remarkable increase of RORγ at both mRNA and protein levels in DON-exposed porcine livers was drastically reduced by NaBu.Consistent with RORγ expression,NaBu also hindered RORγ transcriptional binding enrichments on these activated cholesterol biosynthesis genes like HMGCR,SQLE,and DHCR24.Furthermore,we conducted an in vitro luciferase reporter assay to verify that porcine RORγ directly bonds to the promoters of the above target genes.Conclusions:Collectively,our results demonstrate the utility of the natural product NaBu as a potential anti-myco-toxin nutritional strategy for regulating cholesterol metabolism via RORγ-mediated histone acetylation modification.</abstract><pub>College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China%College of AnimalScience and Technology,Yangzhou University,Yangzhou 225009,PR China</pub></addata></record> |
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title | Sodium butyrate alleviates deoxynivalenol-induced hepatic cholesterol metabolic dysfunction via RORγ-mediated histone acetylation modification in weaning piglets |
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