Interaction of Biliverdin Chromophore with Near-Infrared Fluorescent Protein BphP1-FP Engineered from Bacterial Phytochrome

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dc.contributor.author Stepanenko, Olesya V.
dc.contributor.author Stepanenko, Olga V.
dc.contributor.author Kuznetsova, Irina M.
dc.contributor.author Shcherbakova, Daria M.
dc.contributor.author Verkhusha, Vladislav
dc.contributor.author Turoverov, Konstantin K.
dc.date.accessioned 2017-07-24T06:10:02Z
dc.date.available 2017-07-24T06:10:02Z
dc.date.issued 2017-05
dc.identifier.citation Stepanenko , O V , Stepanenko , O V , Kuznetsova , I M , Shcherbakova , D M , Verkhusha , V & Turoverov , K K 2017 , ' Interaction of Biliverdin Chromophore with Near-Infrared Fluorescent Protein BphP1-FP Engineered from Bacterial Phytochrome ' , International Journal of Molecular Sciences , vol. 18 , no. 5 , 1009 . https://doi.org/10.3390/ijms18051009
dc.identifier.other PURE: 87332007
dc.identifier.other PURE UUID: 4307a4ed-39f1-4e62-a0f4-e87312f546cc
dc.identifier.other WOS: 000404113900116
dc.identifier.other Scopus: 85019161365
dc.identifier.uri http://hdl.handle.net/10138/203370
dc.description.abstract Near-infrared (NIR) fluorescent proteins (FPs) designed from PAS (Per-ARNT-Sim repeats) and GAF (cGMP phosphodiesterase/adenylate cyclase/FhlA transcriptional activator) domains of bacterial phytochromes covalently bind biliverdin (BV) chromophore via one or two Cys residues. We studied BV interaction with a series of NIR FP variants derived from the recently reported BphP1-FP protein. The latter was engineered from a bacterial phytochrome RpBphP1, and has two reactive Cys residues (Cys15 in the PAS domain and Cys256 in the GAF domain), whereas its mutants contain single Cys residues either in the PAS domain or in the GAF domain, or no Cys residues. We characterized BphP1-FP and its mutants biochemically and spectroscopically in the absence and in the presence of denaturant. We found that all BphP1-FP variants are monomers. We revealed that spectral properties of the BphP1-FP variants containing either Cys15 or Cys256, or both, are determined by the covalently bound BV chromophore only. Consequently, this suggests an involvement of the inter-monomeric allosteric effects in the BV interaction with monomers in dimeric NIR FPs, such as iRFPs. Likely, insertion of the Cys15 residue, in addition to the Cys256 residue, in dimeric NIR FPs influences BV binding by promoting the BV chromophore covalent cross-linking to both PAS and GAF domains. en
dc.format.extent 15
dc.language.iso eng
dc.relation.ispartof International Journal of Molecular Sciences
dc.rights cc_by
dc.rights.uri info:eu-repo/semantics/openAccess
dc.subject bacterial phytochrome
dc.subject iRFP
dc.subject IFP
dc.subject near-infrared fluorescent protein
dc.subject GAF domain
dc.subject biliverdin
dc.subject competitive inhibition
dc.subject HISTIDINE KINASES
dc.subject BACTERIOPHYTOCHROMES
dc.subject BRIGHT
dc.subject PHOTORECEPTOR
dc.subject SIMILARITY
dc.subject REVEALS
dc.subject DOMAIN
dc.subject AGP1
dc.subject 3111 Biomedicine
dc.subject 1182 Biochemistry, cell and molecular biology
dc.title Interaction of Biliverdin Chromophore with Near-Infrared Fluorescent Protein BphP1-FP Engineered from Bacterial Phytochrome en
dc.type Article
dc.contributor.organization Medicum
dc.contributor.organization Department of Biochemistry and Developmental Biology
dc.description.reviewstatus Peer reviewed
dc.relation.doi https://doi.org/10.3390/ijms18051009
dc.relation.issn 1422-0067
dc.rights.accesslevel openAccess
dc.type.version publishedVersion

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