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dc.contributor.authorFurukawa, Ayakoen
dc.contributor.authorOkamura, Hideyasuen
dc.contributor.authorMorishita, Ryoen
dc.contributor.authorMatsunaga, Satokoen
dc.contributor.authorKobayashi, Naohiroen
dc.contributor.authorIkegami, Takahisaen
dc.contributor.authorKodaki, Tsutomuen
dc.contributor.authorTakaori-Kondo, Akifumien
dc.contributor.authorRyo, Akihideen
dc.contributor.authorNagata, Takashien
dc.contributor.authorKatahira, Masatoen
dc.contributor.alternative永田, 崇ja
dc.date.accessioned2012-10-12T06:38:57Z-
dc.date.available2012-10-12T06:38:57Z-
dc.date.issued2012-08-24-
dc.identifier.issn0006-291X-
dc.identifier.urihttp://hdl.handle.net/2433/159945-
dc.description.abstractXenotropic murine leukemia virus-related virus (XMRV) is a virus created through recombination of two murine leukemia proviruses under artificial conditions during the passage of human prostate cancer cells in athymic nude mice. The homodimeric protease (PR) of XMRV plays a critical role in the production of functional viral proteins and is a prerequisite for viral replication. We synthesized XMRV PR using the wheat germ cell-free expression system and carried out structural analysis of XMRV PR in a complex with an inhibitor, amprenavir (APV), by means of NMR. Five different combinatorially (15)N-labeled samples were prepared and backbone resonance assignments were made by applying Otting's method, with which the amino acid types of the [(1)H, (15)N] HSQC resonances were automatically identified using the five samples (Wu et al., 2006) [14]. A titration experiment involving APV revealed that one APV molecule binds to one XMRV PR dimer. For many residues, two distinct resonances were observed, which is thought to be due to the structural heterogeneity between the two protomers in the APV:XMRV PR=1:2 complex. PR residues at the interface with APV have been identified on the basis of chemical shift perturbation and identification of the intermolecular NOEs by means of filtered NOE experiments. Interestingly, chemical shift heterogeneity between the two protomers of XMRV PR has been observed not only at the interface with APV but also in regions apart from the interface. This indicates that the structural heterogeneity induced by the asymmetry of the binding of APV to the XMRV PR dimer is transmitted to distant regions. This is in contrast to the case of the APV:HIV-1 PR complex, in which the structural heterogeneity is only localized at the interface. Long-range transmission of the structural change identified for the XMRV PR complex might be utilized for the discovery of a new type of drug.en
dc.format.mimetypeapplication/pdf-
dc.language.isoeng-
dc.publisherElsevier Inc.en
dc.rights© 2012 Elsevier Inc.en
dc.rightsThis is not the published version. Please cite only the published version.en
dc.rightsこの論文は出版社版でありません。引用の際には出版社版をご確認ご利用ください。ja
dc.subjectXMRVen
dc.subjectProteaseen
dc.subjectCell-free protein synthesisen
dc.subjectNMRen
dc.titleNMR study of xenotropic murine leukemia virus-related virus protease in a complex with amprenavir.en
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.ncidAA00564395-
dc.identifier.jtitleBiochemical and biophysical research communicationsen
dc.identifier.volume425-
dc.identifier.issue2-
dc.identifier.spage284-
dc.identifier.epage289-
dc.relation.doi10.1016/j.bbrc.2012.07.083-
dc.textversionauthor-
dc.identifier.pmid22842568-
dcterms.accessRightsopen access-
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