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dc.contributor.authorKosugi, Yusukeen
dc.contributor.authorUriu, Keiyaen
dc.contributor.authorSuzuki, Narumien
dc.contributor.authorYamamoto, Keisukeen
dc.contributor.authorNagaoka, Shumpeien
dc.contributor.authorKimura, Izumien
dc.contributor.authorKonno, Yoriyukien
dc.contributor.authorAso, Hirofumien
dc.contributor.authorWillett, Brian J.en
dc.contributor.authorKobayashi, Tomokoen
dc.contributor.authorKoyanagi, Yoshioen
dc.contributor.authorUeda, Mahoko Takahashien
dc.contributor.authorIto, Jumpeien
dc.contributor.authorSato, Keien
dc.contributor.alternative小杉, 優介ja
dc.contributor.alternative山本, 啓輔ja
dc.contributor.alternative長岡, 峻平ja
dc.contributor.alternative木村, 出海ja
dc.contributor.alternative今野, 順介ja
dc.contributor.alternative麻生, 啓文ja
dc.contributor.alternative小柳, 義夫ja
dc.contributor.alternative伊東, 潤平ja
dc.contributor.alternative佐藤, 佳ja
dc.date.accessioned2022-10-25T08:45:05Z-
dc.date.available2022-10-25T08:45:05Z-
dc.date.issued2021-06-10-
dc.identifier.urihttp://hdl.handle.net/2433/276886-
dc.description.abstractAs the hosts of lentiviruses, almost 40 species of felids (family Felidae) are distributed around the world, and more than 20 feline species test positive for feline immunodeficiency virus (FIV), a lineage of lentiviruses. These observations suggest that FIVs globally infected a variety of feline species through multiple cross-species transmission events during a million-year history. Cellular restriction factors potentially inhibit lentiviral replication and limit cross-species lentiviral transmission, and cellular APOBEC3 deaminases are known as a potent restriction factor. In contrast, lentiviruses have evolutionary-acquired viral infectivity factor (Vif) to neutralize the APOBEC3-mediated antiviral effect. Because the APOBEC3-Vif interaction is strictly specific for viruses and their hosts, a comprehensive investigation focusing on Vif-APOBEC3 interplay can provide clues that will elucidate the roles of this virus-host interplay on cross-species transmission of lentiviruses. Here, we performed a comprehensive investigation with 144 patterns of a round robin test using 18 feline APOBEC3Z3 genes, an antiviral APOBEC3 gene in felid, and 8 FIV Vifs and derived a matrix showing the interplay between feline APOBEC3Z3 and FIV Vif. We particularly focused on the interplay between the APOBEC3Z3 of three felids (domestic cat, ocelot, and Asian golden cat) and an FIV Vif (strain Petaluma), and revealed that residues 65 and 66 of the APOBEC3Z3 protein of multiple felids are responsible for the counteraction triggered by FIV Petaluma Vif. Altogether, our findings can be a clue to elucidate not only the scenarios of the cross-species transmissions of FIVs in felids but also the evolutionary interaction between mammals and lentiviruses.en
dc.language.isoeng-
dc.publisherAmerican Society for Microbiologyen
dc.rights© 2021 Kosugi et al.en
dc.rightsThis is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license.en
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/-
dc.subjectvirus evolutionen
dc.subjectFIVen
dc.subjectVifen
dc.subjectAPOBEC3en
dc.subjectcross-species transmissionen
dc.subjectAPOBEC3en
dc.titleComprehensive Investigation on the Interplay between Feline APOBEC3Z3 Proteins and Feline Immunodeficiency Virus Vif Proteinsen
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleJournal of Virologyen
dc.identifier.volume95-
dc.identifier.issue13-
dc.relation.doi10.1128/JVI.00178-21-
dc.textversionpublisher-
dc.identifier.artnume0017821-
dc.identifier.pmid33762419-
dcterms.accessRightsopen access-
datacite.awardNumber18H02662-
datacite.awardNumber16H06429-
datacite.awardNumber16K21723-
datacite.awardNumber17H05813-
datacite.awardNumber19H04826-
datacite.awardNumber20K15767-
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datacite.awardNumber19J22914-
datacite.awardNumber19J20488-
datacite.awardNumber19J22802-
datacite.awardNumber20J23299-
datacite.awardNumber19J01713-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18H02662/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-ORGANIZER-16H06429/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-INTERNATIONAL-16K21723/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PUBLICLY-17H05813/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PUBLICLY-19H04826/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-20K15767/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18KK0447/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-19J22914/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-19J20488/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-19J22802/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-20J23299/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-19J01713/-
dc.identifier.pissn0022-538X-
dc.identifier.eissn1098-5514-
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.awardTitle包括的マルチオミクス解析によるウイルス感染ダイナミクスの時空間的理解ja
jpcoar.awardTitleネオウイルス学:生命の源流から超個体、そしてエコ・スフィアーへja
jpcoar.awardTitle「ネオウイルス学」の国際活動支援ja
jpcoar.awardTitleシステムウイルス学的手法によるウイルスと宿主の共進化・進化的軍拡競争の原理の解明ja
jpcoar.awardTitleシステムウイルス学的手法によるウイルスと宿主の共進化・進化的軍拡競争の原理の解明ja
jpcoar.awardTitle内在性レトロウイルスが駆動する遺伝子発現制御ネットワークの生理機能の解明ja
jpcoar.awardTitleウイルスを摂動とする病態発現原理のマルチオミクス解析とその包括的理解ja
jpcoar.awardTitleエイズウイルスとヒトの共進化が規定するウイルス流行伝播メカニズムの解明ja
jpcoar.awardTitleHIV-1感染における内因性免疫と獲得免疫の相反原理の解明ja
jpcoar.awardTitle生体内のHIV-1複製を制御するエピジェネティックネットワークの解明ja
jpcoar.awardTitle生体内におけるエイズウイルス感染細胞の異質性と運命決定機構の解明ja
jpcoar.awardTitle内在性レトロウイルスを摂動とする遺伝子発現および腫瘍病態の変容メカニズムの解明ja
出現コレクション:学術雑誌掲載論文等

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