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dc.creatorŽivanović, Jasmina
dc.creatorKouroussis, Emilia
dc.creatorKohl, Joshua B.
dc.creatorAdhikari, Bikash
dc.creatorBursać, Biljana
dc.creatorSchott-Roux, Sonia
dc.creatorPetrović, Dunja
dc.creatorMiljković, Jan Lj.
dc.creatorThomas-Lopez, Daniel
dc.creatorJung, Youngeun
dc.creatorMiler, Marko
dc.creatorMitchell, Sarah
dc.creatorMilošević, Verica
dc.creatorGomes, Jose Eduardo
dc.creatorBenhar, Moran
dc.creatorGonzales-Zorn, Bruno
dc.creatorIvanović-Burmazović, Ivana
dc.creatorTorregrossa, Roberta
dc.creatorMitchell, James R.
dc.creatorWhiteman, Matthew
dc.creatorSchwarz, Guenter
dc.creatorSnyder, Solomon H.
dc.creatorPaul, Bindu D.
dc.creatorCarroll, Kate S.
dc.creatorFilipović, Miloš R.
dc.date.accessioned2019-11-15T09:08:17Z
dc.date.available2900-01-01
dc.date.issued2019
dc.identifier.issn1550-4131
dc.identifier.urihttps://www.sciencedirect.com/science/article/abs/pii/S1550413119305625
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3518
dc.description.abstractLife on Earth emerged in a hydrogen sulfide (H2S)-rich environment eons ago and with it protein persulfidation mediated by H2S evolved as a signaling mechanism. Protein persulfidation (S-sulfhydration) is a post-translational modification of reactive cysteine residues, which modulate protein structure and/or function. Persulfides are difficult to label and study due to their reactivity and similarity with cysteine. Here, we report a facile strategy for chemoselective persulfide bioconjugation using dimedone-based probes, to achieve highly selective, rapid, and robust persulfide labeling in biological samples with broad utility. Using this method, we show persulfidation is an evolutionarily conserved modification and waves of persulfidation are employed by cells to resolve sulfenylation and prevent irreversible cysteine overoxidation preserving protein function. We report an age-associated decline in persulfidation that is conserved across evolutionary boundaries. Accordingly, dietary or pharmacological interventions to increase persulfidation associate with increased longevity and improved capacity to cope with stress stimuli.en
dc.relationinfo:eu-repo/grantAgreement/MESTD/Basic Research (BR or ON)/173009/RS//
dc.rightsrestrictedAccess
dc.sourceCell Metabolism
dc.subjectHydrogen sulfide
dc.subjectProtein persulfidation
dc.subjectHydrogen peroxide
dc.subjectSulfenylation
dc.subjectSulfinylation
dc.subjectSulfonylation
dc.subjectRedox signaling
dc.subjectAging
dc.subjectCalorie restriction
dc.titleSelective Persulfide Detection Reveals Evolutionarily Conserved Antiaging Effects of S-Sulfhydrationen
dc.typearticleen
dc.rights.licenseARR
dcterms.abstractAдхикари, Бикасх; Бурсаћ, Биљана; Сцхотт-Роуx, Сониа; Филиповић, Милош Р.; Петровић, Дуња; Миљковић, Јан Љ.; Тхомас-Лопез, Даниел; Јунг, Yоунгеун; Митцхелл, Сарах; Гомес, Јосе Едуардо; Бенхар, Моран; Гонзалес-Зорн, Бруно; Торрегросса, Роберта; Митцхелл, Јамес Р.; Wхитеман, Маттхеw; Сцхwарз, Гуентер; Снyдер, Соломон Х.; Паул, Бинду Д.; Царролл, Кате С.; Милер, Марко; Милошевић, Верица; Ивановић-Бурмазовић, Ивана; Живановић, Јасмина; Коуроуссис, Емилиа; Кохл, Јосхуа Б.;
dc.rights.holderCrown Copyright © 2019 Published by Elsevier Inc.
dc.citation.issue6
dc.citation.volume30
dc.identifier.doi10.1016/J.CMET.2019.10.007
dc.identifier.pmid31735592
dc.identifier.scopus2-s2.0-85075485979
dc.identifier.wos000500800300015
dc.citation.apaZivanovic, J., Kouroussis, E., Kohl, J. B., Adhikari, B., Bursac, B., Schott-Roux, S., et al. (2019). Selective Persulfide Detection Reveals Evolutionarily Conserved Antiaging Effects of S-Sulfhydration. Cell Metabolism, 30, 6, 1152-1170.e13
dc.citation.vancouverZivanovic J, Kouroussis E, Kohl JB, Adhikari B, Bursac B, Schott-Roux S, Petrovic D, Miljkovic JL, Thomas-Lopez D, Jung Y, Miler M, Mitchell S, Milosevic V, Gomes JE, Benhar M, Gonzales-Zorn B, Ivanovic-Burmazovic I, Torregrossa R, Mitchell JR, Whiteman M, Schwarz G, Snyder SH, Paul BD, Carroll KS, Filipovic MR. Selective Persulfide Detection Reveals Evolutionarily Conserved Antiaging Effects of S-Sulfhydration. Cell Metab. 2019;30(6):1152-1170.e13.
dc.citation.spage1152
dc.citation.epage1170.e13
dc.type.versionpublishedVersion
dc.citation.rankaM21


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