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    Results: 16

    1.

    Herpes simplex virus 1 microRNAs expressed abundantly during latent infection are not essential for latency in mouse trigeminal ganglia.

    Kramer MF, Jurak I, Pesola JM, Boissel S, Knipe DM, Coen DM.

    Virology. 2011 Sep 1;417(2):239-47. Epub 2011 Jul 23.

    PMID:
    21782205
    [PubMed - indexed for MEDLINE]
    2.

    Identification of interaction domains within the UL37 tegument protein of herpes simplex virus type 1.

    Bucks MA, Murphy MA, O'Regan KJ, Courtney RJ.

    Virology. 2011 Jul 20;416(1-2):42-53. doi: 10.1016/j.virol.2011.04.018. Epub 2011 May 20.

    PMID:
    21601231
    [PubMed - indexed for MEDLINE]
    3.

    PDZD8 is a novel moesin-interacting cytoskeletal regulatory protein that suppresses infection by herpes simplex virus type 1.

    Henning MS, Stiedl P, Barry DS, McMahon R, Morham SG, Walsh D, Naghavi MH.

    Virology. 2011 Jul 5;415(2):114-21. Epub 2011 May 6.

    PMID:
    21549406
    [PubMed - indexed for MEDLINE]
    4.

    Mechanism of HSV infection through soluble adapter-mediated virus bridging to the EGF receptor.

    Nakano K, Kobayashi M, Nakamura K, Nakanishi T, Asano R, Kumagai I, Tahara H, Kuwano M, Cohen JB, Glorioso JC.

    Virology. 2011 Apr 25;413(1):12-8. Epub 2011 Mar 6.

    PMID:
    21382632
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    5.

    Involvement of the UL24 protein in herpes simplex virus 1-induced dispersal of B23 and in nuclear egress.

    Lymberopoulos MH, Bourget A, Ben Abdeljelil N, Pearson A.

    Virology. 2011 Apr 10;412(2):341-8. Epub 2011 Feb 12.

    PMID:
    21316727
    [PubMed - indexed for MEDLINE]
    7.

    Gr-1+ cells, but not neutrophils, limit virus replication and lesion development following flank infection of mice with herpes simplex virus type-1.

    Wojtasiak M, Pickett DL, Tate MD, Bedoui S, Job ER, Whitney PG, Brooks AG, Reading PC.

    Virology. 2010 Nov 10;407(1):143-51.

    PMID:
    20817252
    [PubMed - indexed for MEDLINE]
    8.

    Significance of host cell kinases in herpes simplex virus type 1 egress and lamin-associated protein disassembly from the nuclear lamina.

    Leach NR, Roller RJ.

    Virology. 2010 Oct 10;406(1):127-37. Epub 2010 Aug 1.

    PMID:
    20674954
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    9.

    Herpes simplex virus type 2 glycoprotein E is required for efficient virus spread from epithelial cells to neurons and for targeting viral proteins from the neuron cell body into axons.

    Wang F, Zumbrun EE, Huang J, Si H, Makaroun L, Friedman HM.

    Virology. 2010 Sep 30;405(2):269-79. Epub 2010 Jul 3.

    PMID:
    20598729
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    10.

    Virion incorporation of the herpes simplex virus type 1 tegument protein VP22 is facilitated by trans-Golgi network localization and is independent of interaction with glycoprotein E.

    O'Regan KJ, Brignati MJ, Murphy MA, Bucks MA, Courtney RJ.

    Virology. 2010 Sep 15;405(1):176-92. Epub 2010 Jun 26.

    PMID:
    20580397
    [PubMed - indexed for MEDLINE]
    11.

    Redundancy in the immune system restricts the spread of HSV-1 in the central nervous system (CNS) of C57BL/6 mice.

    Kastrukoff LF, Lau AS, Takei F, Smyth MJ, Jones CM, Clarke SR, Carbone FR.

    Virology. 2010 May 10;400(2):248-58. Epub 2010 Mar 2.

    PMID:
    20199790
    [PubMed - indexed for MEDLINE]
    12.

    Exacerbation of corneal scarring in HSV-1 gK-immunized mice correlates with elevation of CD8+CD25+ T cells in corneas of ocularly infected mice.

    Allen SJ, Mott KR, Ljubimov AV, Ghiasi H.

    Virology. 2010 Mar 30;399(1):11-22. Epub 2010 Jan 18.

    PMID:
    20079918
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    13.

    SR proteins SRp20 and 9G8 contribute to efficient export of herpes simplex virus 1 mRNAs.

    Escudero-Paunetto L, Li L, Hernandez FP, Sandri-Goldin RM.

    Virology. 2010 Jun 5;401(2):155-64. Epub 2010 Mar 12.

    PMID:
    20227104
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    14.

    Human antibodies to herpes simplex virus type 1 glycoprotein C are neutralizing and target the heparan sulfate-binding domain.

    Adamiak B, Trybala E, Mardberg K, Johansson M, Liljeqvist JA, Olofsson S, Grabowska A, Bienkowska-Szewczyk K, Szewczyk B, Bergstrom T.

    Virology. 2010 May 10;400(2):197-206. Epub 2010 Feb 21.

    PMID:
    20176392
    [PubMed - indexed for MEDLINE]
    15.

    Glycoprotein D actively induces rapid internalization of two nectin-1 isoforms during herpes simplex virus entry.

    Stiles KM, Krummenacher C.

    Virology. 2010 Mar 30;399(1):109-19. Epub 2010 Jan 20.

    PMID:
    20089288
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    16.

    Simian TRIM5alpha proteins reduce replication of herpes simplex virus.

    Reszka N, Zhou C, Song B, Sodroski JG, Knipe DM.

    Virology. 2010 Mar 15;398(2):243-50. Epub 2010 Jan 12.

    PMID:
    20060996
    [PubMed - indexed for MEDLINE]
    Free PMC Article

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