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Bogeski, Ivan
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Bogeski, Ivan
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Bogeski, Ivan
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Bogeski, I.
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2021Journal Article [["dc.bibliographiccitation.firstpage","e202000987"],["dc.bibliographiccitation.issue","9"],["dc.bibliographiccitation.journal","Life Science Alliance"],["dc.bibliographiccitation.volume","4"],["dc.contributor.author","Sargsyan, Yelena"],["dc.contributor.author","Bickmeyer, Uta"],["dc.contributor.author","Gibhardt, Christine S"],["dc.contributor.author","Streckfuss-Bömeke, Katrin"],["dc.contributor.author","Bogeski, Ivan"],["dc.contributor.author","Thoms, Sven"],["dc.date.accessioned","2021-08-12T07:45:41Z"],["dc.date.available","2021-08-12T07:45:41Z"],["dc.date.issued","2021"],["dc.description.abstract","Peroxisomes communicate with other cellular compartments by transfer of various metabolites. However, whether peroxisomes are sites for calcium handling and exchange has remained contentious. Here we generated sensors for assessment of peroxisomal calcium and applied them for single cell-based calcium imaging in HeLa cells and cardiomyocytes. We found that peroxisomes in HeLa cells take up calcium upon depletion of intracellular calcium stores and upon calcium influx across the plasma membrane. Furthermore, we show that peroxisomes of neonatal rat cardiomyocytes and human induced pluripotent stem cell–derived cardiomyocytes can take up calcium. Our results indicate that peroxisomal and cytosolic calcium signals are tightly interconnected both in HeLa cells and in cardiomyocytes. Cardiac peroxisomes take up calcium on beat-to-beat basis. Hence, peroxisomes may play an important role in shaping cellular calcium dynamics of cardiomyocytes."],["dc.description.abstract","Peroxisomes communicate with other cellular compartments by transfer of various metabolites. However, whether peroxisomes are sites for calcium handling and exchange has remained contentious. Here we generated sensors for assessment of peroxisomal calcium and applied them for single cell-based calcium imaging in HeLa cells and cardiomyocytes. We found that peroxisomes in HeLa cells take up calcium upon depletion of intracellular calcium stores and upon calcium influx across the plasma membrane. Furthermore, we show that peroxisomes of neonatal rat cardiomyocytes and human induced pluripotent stem cell–derived cardiomyocytes can take up calcium. Our results indicate that peroxisomal and cytosolic calcium signals are tightly interconnected both in HeLa cells and in cardiomyocytes. Cardiac peroxisomes take up calcium on beat-to-beat basis. Hence, peroxisomes may play an important role in shaping cellular calcium dynamics of cardiomyocytes."],["dc.identifier.doi","10.26508/lsa.202000987"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/88529"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-448"],["dc.relation.eissn","2575-1077"],["dc.title","Peroxisomes contribute to intracellular calcium dynamics in cardiomyocytes and non-excitable cells"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI2020Journal Article Research Paper [["dc.bibliographiccitation.firstpage","642"],["dc.bibliographiccitation.issue","3"],["dc.bibliographiccitation.journal","Cell Metabolism"],["dc.bibliographiccitation.lastpage","653.e6"],["dc.bibliographiccitation.volume","31"],["dc.contributor.author","Pak, Valeriy V."],["dc.contributor.author","Ezeriņa, Daria"],["dc.contributor.author","Lyublinskaya, Olga G."],["dc.contributor.author","Pedre, Brandán"],["dc.contributor.author","Tyurin-Kuzmin, Pyotr A."],["dc.contributor.author","Mishina, Natalie M."],["dc.contributor.author","Thauvin, Marion"],["dc.contributor.author","Young, David"],["dc.contributor.author","Wahni, Khadija"],["dc.contributor.author","Martínez Gache, Santiago Agustín"],["dc.contributor.author","Demidovich, Alexandra D."],["dc.contributor.author","Ermakova, Yulia G."],["dc.contributor.author","Maslova, Yulia D."],["dc.contributor.author","Shokhina, Arina G."],["dc.contributor.author","Eroglu, Emrah"],["dc.contributor.author","Bilan, Dmitry S."],["dc.contributor.author","Bogeski, Ivan"],["dc.contributor.author","Michel, Thomas"],["dc.contributor.author","Vriz, Sophie"],["dc.contributor.author","Messens, Joris"],["dc.contributor.author","Belousov, Vsevolod V."],["dc.date.accessioned","2020-12-10T14:23:10Z"],["dc.date.available","2020-12-10T14:23:10Z"],["dc.date.issued","2020"],["dc.identifier.doi","10.1016/j.cmet.2020.02.003"],["dc.identifier.pmid","32130885"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/71855"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/109"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P17: Die Rolle mitochondrialer Kontaktstellen im Rahmen tumorrelevanter Calcium- und Redox-Signalwege"],["dc.relation.workinggroup","RG Bogeski"],["dc.title","Ultrasensitive Genetically Encoded Indicator for Hydrogen Peroxide Identifies Roles for the Oxidant in Cell Migration and Mitochondrial Function"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","original_ja"],["dspace.entity.type","Publication"]]Details DOI PMID PMC2017Journal Article [["dc.bibliographiccitation.firstpage","11"],["dc.bibliographiccitation.journal","Free Radical Biology and Medicine"],["dc.bibliographiccitation.volume","112"],["dc.contributor.author","Bogeski, Ivan"],["dc.date.accessioned","2020-12-10T14:24:11Z"],["dc.date.available","2020-12-10T14:24:11Z"],["dc.date.issued","2017"],["dc.identifier.doi","10.1016/j.freeradbiomed.2017.10.362"],["dc.identifier.issn","0891-5849"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/72173"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.title","Redox Regulation Of Ca 2+ Channels: From Orai To MCU"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI2020Journal Article Overview [["dc.bibliographiccitation.firstpage","138"],["dc.bibliographiccitation.journal","Current Opinion in Physiology"],["dc.bibliographiccitation.lastpage","148"],["dc.bibliographiccitation.volume","17"],["dc.contributor.author","Gibhardt, Christine S."],["dc.contributor.author","Ezeriņa, Daria"],["dc.contributor.author","Sung, Hsu-Min"],["dc.contributor.author","Messens, Joris"],["dc.contributor.author","Bogeski, Ivan"],["dc.date.accessioned","2022-07-11T15:36:50Z"],["dc.date.available","2022-07-11T15:36:50Z"],["dc.date.issued","2020"],["dc.identifier.doi","10.1016/j.cophys.2020.07.017"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/112470"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/125"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P17: Die Rolle mitochondrialer Kontaktstellen im Rahmen tumorrelevanter Calcium- und Redox-Signalwege"],["dc.relation.issn","2468-8673"],["dc.relation.workinggroup","RG Bogeski"],["dc.title","Redox regulation of the mitochondrial calcium transport machinery"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dc.type.subtype","overview_ja"],["dspace.entity.type","Publication"]]Details DOI2018Journal Article [["dc.bibliographiccitation.firstpage","501"],["dc.bibliographiccitation.issue","6"],["dc.bibliographiccitation.journal","Antioxidants & Redox Signaling"],["dc.bibliographiccitation.lastpage","517"],["dc.bibliographiccitation.volume","29"],["dc.contributor.author","Bozem, Monika"],["dc.contributor.author","Knapp, Phillip"],["dc.contributor.author","Mirčeski, Valentin"],["dc.contributor.author","Slowik, Ewa J."],["dc.contributor.author","Bogeski, Ivan"],["dc.contributor.author","Kappl, Reinhard"],["dc.contributor.author","Heinemann, Christian"],["dc.contributor.author","Hoth, Markus"],["dc.date.accessioned","2020-12-10T18:16:01Z"],["dc.date.available","2020-12-10T18:16:01Z"],["dc.date.issued","2018"],["dc.identifier.doi","10.1089/ars.2016.6840"],["dc.identifier.eissn","1557-7716"],["dc.identifier.issn","1523-0864"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/75023"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.title","Electrochemical Quantification of Extracellular Local H 2 O 2 Kinetics Originating from Single Cells"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI2022Journal Article [["dc.bibliographiccitation.artnumber","e79125"],["dc.bibliographiccitation.journal","eLife"],["dc.bibliographiccitation.volume","11"],["dc.contributor.author","Shumanska, Magdalena"],["dc.contributor.author","Bogeski, Ivan"],["dc.date.accessioned","2022-06-01T09:40:05Z"],["dc.date.available","2022-06-01T09:40:05Z"],["dc.date.issued","2022"],["dc.description.abstract","The oxidative state of a critical cysteine residue determines the enzymatic activity of a phosphatase involved in T-cell immune responses."],["dc.identifier.doi","10.7554/eLife.79125"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/108632"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-572"],["dc.relation.eissn","2050-084X"],["dc.rights.uri","http://creativecommons.org/licenses/by/4.0/"],["dc.title","Redoxing PTPN22 activity"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI2019Book Chapter [["dc.bibliographiccitation.firstpage","183"],["dc.bibliographiccitation.lastpage","196"],["dc.bibliographiccitation.seriesnr","1925"],["dc.contributor.author","Gibhardt, Christine S."],["dc.contributor.author","Vultur, Adina"],["dc.contributor.author","Bogeski, Ivan"],["dc.contributor.editor","Raffaello, Anna"],["dc.contributor.editor","Vecellio Reane, Denis"],["dc.date.accessioned","2021-06-02T10:44:26Z"],["dc.date.available","2021-06-02T10:44:26Z"],["dc.date.issued","2019"],["dc.identifier.doi","10.1007/978-1-4939-9018-4_17"],["dc.identifier.pmid","30674028"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/87038"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/82"],["dc.notes.intern","DOI-Import GROB-425"],["dc.publisher","Springer New York"],["dc.publisher.place","New York, NY"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P17: Die Rolle mitochondrialer Kontaktstellen im Rahmen tumorrelevanter Calcium- und Redox-Signalwege"],["dc.relation.crisseries","Methods in Molecular Biology"],["dc.relation.eisbn","978-1-4939-9018-4"],["dc.relation.isbn","978-1-4939-9017-7"],["dc.relation.ispartof","Methods in Molecular Biology"],["dc.relation.ispartof","Calcium Signalling : Methods and Protocols"],["dc.relation.ispartofseries","Methods in Molecular Biology; 1925"],["dc.relation.workinggroup","RG Bogeski"],["dc.title","Measuring Calcium and ROS by Genetically Encoded Protein Sensors and Fluorescent Dyes"],["dc.type","book_chapter"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI PMID PMC2022Journal Article [["dc.bibliographiccitation.artnumber","148613"],["dc.bibliographiccitation.journal","Biochimica et Biophysica Acta. Bioenergetics"],["dc.bibliographiccitation.volume","1863"],["dc.contributor.author","Bogeski, Ivan"],["dc.date.accessioned","2022-10-04T10:21:17Z"],["dc.date.available","2022-10-04T10:21:17Z"],["dc.date.issued","2022"],["dc.identifier.doi","10.1016/j.bbabio.2022.148613"],["dc.identifier.pii","S0005272822000834"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/114369"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-600"],["dc.relation.issn","0005-2728"],["dc.rights.uri","https://www.elsevier.com/tdm/userlicense/1.0/"],["dc.title","Exploring the role of mitochondria in melanoma pathobiology"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]Details DOI2017Journal Article Research Paper [["dc.bibliographiccitation.artnumber","eaao0358"],["dc.bibliographiccitation.issue","507"],["dc.bibliographiccitation.journal","Science Signaling"],["dc.bibliographiccitation.volume","10"],["dc.contributor.author","Frischauf, Irene"],["dc.contributor.author","Litviňuková, Monika"],["dc.contributor.author","Schober, Romana"],["dc.contributor.author","Zayats, Vasilina"],["dc.contributor.author","Svobodová, Barbora"],["dc.contributor.author","Bonhenry, Daniel"],["dc.contributor.author","Lunz, Victoria"],["dc.contributor.author","Cappello, Sabrina"],["dc.contributor.author","Tociu, Laura"],["dc.contributor.author","Reha, David"],["dc.contributor.author","Stallinger, Amrutha"],["dc.contributor.author","Hochreiter, Anna"],["dc.contributor.author","Pammer, Teresa"],["dc.contributor.author","Butorac, Carmen"],["dc.contributor.author","Muik, Martin"],["dc.contributor.author","Groschner, Klaus"],["dc.contributor.author","Bogeski, Ivan"],["dc.contributor.author","Ettrich, Rüdiger H."],["dc.contributor.author","Romanin, Christoph"],["dc.contributor.author","Schindl, Rainer"],["dc.date.accessioned","2020-12-10T18:36:46Z"],["dc.date.available","2020-12-10T18:36:46Z"],["dc.date.issued","2017"],["dc.identifier.doi","10.1126/scisignal.aao0358"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/76732"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/18"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P17: Die Rolle mitochondrialer Kontaktstellen im Rahmen tumorrelevanter Calcium- und Redox-Signalwege"],["dc.relation.workinggroup","RG Bogeski"],["dc.title","Transmembrane helix connectivity in Orai1 controls two gates for calcium-dependent transcription"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","original_ja"],["dspace.entity.type","Publication"]]Details DOI2018Journal Article Overview [["dc.bibliographiccitation.firstpage","1149"],["dc.bibliographiccitation.issue","8"],["dc.bibliographiccitation.journal","Pflügers Archiv - European Journal of Physiology"],["dc.bibliographiccitation.lastpage","1163"],["dc.bibliographiccitation.volume","470"],["dc.contributor.author","Vultur, Adina"],["dc.contributor.author","Gibhardt, Christine S."],["dc.contributor.author","Stanisz, Hedwig"],["dc.contributor.author","Bogeski, Ivan"],["dc.date.accessioned","2020-12-10T14:10:35Z"],["dc.date.available","2020-12-10T14:10:35Z"],["dc.date.issued","2018"],["dc.identifier.doi","10.1007/s00424-018-2162-8"],["dc.identifier.pmid","29926229"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/70810"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/32"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P17: Die Rolle mitochondrialer Kontaktstellen im Rahmen tumorrelevanter Calcium- und Redox-Signalwege"],["dc.relation.workinggroup","RG Bogeski"],["dc.title","The role of the mitochondrial calcium uniporter (MCU) complex in cancer"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","overview_ja"],["dspace.entity.type","Publication"]]Details DOI PMID PMC