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Journal Abstract Search


510 related items for PubMed ID: 29793948

  • 1. Canine Distemper Virus Spread and Transmission to Naive Ferrets: Selective Pressure on Signaling Lymphocyte Activation Molecule-Dependent Entry.
    Sawatsky B, Cattaneo R, von Messling V.
    J Virol; 2018 Aug 01; 92(15):. PubMed ID: 29793948
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  • 2. SLAM- and nectin-4-independent noncytolytic spread of canine distemper virus in astrocytes.
    Alves L, Khosravi M, Avila M, Ader-Ebert N, Bringolf F, Zurbriggen A, Vandevelde M, Plattet P.
    J Virol; 2015 May 01; 89(10):5724-33. PubMed ID: 25787275
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  • 3. Specificity of Morbillivirus Hemagglutinins to Recognize SLAM of Different Species.
    Fukuhara H, Ito Y, Sako M, Kajikawa M, Yoshida K, Seki F, Mwaba MH, Hashiguchi T, Higashibata MA, Ose T, Kuroki K, Takeda M, Maenaka K.
    Viruses; 2019 Aug 19; 11(8):. PubMed ID: 31430904
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  • 4. LRP6 Is a Functional Receptor for Attenuated Canine Distemper Virus.
    Gradauskaite V, Inglebert M, Doench J, Scherer M, Dettwiler M, Wyss M, Shrestha N, Rottenberg S, Plattet P.
    mBio; 2023 Feb 28; 14(1):e0311422. PubMed ID: 36645301
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  • 9. Replication competence of canine distemper virus in cell lines expressing signaling lymphocyte activation molecule (SLAM) of goat, sheep and dog origin.
    Yadav AK, Rajak KK, Kumar A, Bhatt M, Chakravarti S, Muthu S, Dubal ZB, Khulape S, Yousuf RW, Rai V, Kumar B, Muthuchelvan D, Gupta PK, Singh RP, Singh R.
    Microb Pathog; 2021 Jul 28; 156():104940. PubMed ID: 33962006
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  • 11. Use of SLAM and PVRL4 and identification of pro-HB-EGF as cell entry receptors for wild type phocine distemper virus.
    Melia MM, Earle JP, Abdullah H, Reaney K, Tangy F, Cosby SL.
    PLoS One; 2014 Jul 28; 9(8):e106281. PubMed ID: 25171206
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  • 12. Nearby clusters of hemagglutinin residues sustain SLAM-dependent canine distemper virus entry in peripheral blood mononuclear cells.
    von Messling V, Oezguen N, Zheng Q, Vongpunsawad S, Braun W, Cattaneo R.
    J Virol; 2005 May 28; 79(9):5857-62. PubMed ID: 15827201
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  • 13. Infectious Progression of Canine Distemper Virus from Circulating Cerebrospinal Fluid into the Central Nervous System.
    Takenaka A, Sato H, Ikeda F, Yoneda M, Kai C.
    J Virol; 2016 Oct 15; 90(20):9285-92. PubMed ID: 27489268
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  • 16. Antagonistic pleiotropy and fitness trade-offs reveal specialist and generalist traits in strains of canine distemper virus.
    Nikolin VM, Osterrieder K, von Messling V, Hofer H, Anderson D, Dubovi E, Brunner E, East ML.
    PLoS One; 2012 Oct 15; 7(12):e50955. PubMed ID: 23239996
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  • 17. Morbillivirus control of the interferon response: relevance of STAT2 and mda5 but not STAT1 for canine distemper virus virulence in ferrets.
    Svitek N, Gerhauser I, Goncalves C, Grabski E, Döring M, Kalinke U, Anderson DE, Cattaneo R, von Messling V.
    J Virol; 2014 Mar 15; 88(5):2941-50. PubMed ID: 24371065
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  • 18. Selective SLAM/CD150 receptor-detargeting of canine distemper virus.
    Gradauskaite V, Khosravi M, Plattet P.
    Virus Res; 2022 Sep 15; 318():198841. PubMed ID: 35649483
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  • 19. Canine Distemper Virus Fusion Activation: Critical Role of Residue E123 of CD150/SLAM.
    Khosravi M, Bringolf F, Röthlisberger S, Bieringer M, Schneider-Schaulies J, Zurbriggen A, Origgi F, Plattet P.
    J Virol; 2016 Feb 01; 90(3):1622-37. PubMed ID: 26608324
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  • 20. Tropism and molecular pathogenesis of canine distemper virus.
    Rendon-Marin S, da Fontoura Budaszewski R, Canal CW, Ruiz-Saenz J.
    Virol J; 2019 Mar 07; 16(1):30. PubMed ID: 30845967
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