Browsing by Author Diefenbach, Russell

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Issue DateTitleAuthor(s)Citation
2013A36-dependent Actin Filament Nucleation Promotes Release of Vaccinia VirusBraet, Filip; Cheng, Delfine; Diefenbach, Russell; Horsington, Jacquelyn; Lynn, Helena; Newsome, Timothy; Karupiah, Gunasegaran; Turnbull, Lynne; Whitchurch, Cynthia B; School of Medical Sciences: School of Medical Sciences; School of Medical Sciences: Bosch Institute; Western Clinical School: Westmead Millennium Institute; Infectious Diseases; Molecular Bioscience; Molecular BioscienceA36-dependent Actin Filament Nucleation Promotes Release of Vaccinia Virus, PLoS Pathogens, vol.9, 3, 2013,pp 1-15
2016Abalone Hemocyanin Blocks the Entry of HSV-1 into Cells: a Potential New Antiviral StrategyCunningham, Anthony (Tony); Dehghani, Fariba; Diefenbach, Eve; Diefenbach, Russell; Gomes, Vincent; Miranda Saksena, Monica; Sairi, Fareed; Talaei Zanjani, Negar; Valtchev, Peter; Hueston, Linda; Western Clinical School: Westmead Institute for Medical Res; Chemical & Biomolecular Engineering; Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Chemical & Biomolecular Engineering; Western Clinical School: Westmead Institute for Medical Res; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringAbalone Hemocyanin Blocks the Entry of HSV-1 into Cells: a Potential New Antiviral Strategy, Antimicrobial Agents and Chemotherapy, vol.60, 2, 2016,pp 1003-1012
2015The basic domain of HSV-1 pUS9 recruits kinesin-1 to facilitate egress from neuronsCunningham, Anthony (Tony); Davis, April; Diefenbach, Russell; Fernandez, Marian; Jones, Cheryl; Kelly, Barbara; Lai, Joey; Miranda Saksena, Monica; Xue, Jing; LaVail, Jennifer; Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Childrens Hospital Westmead: Paediatrics & Child Health; Childrens Hospital Westmead: Paediatrics & Child Health; Western Clinical School: Medicine (Westmead); Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Childrens Medical Research Institute (CMRI)The basic domain of HSV-1 pUS9 recruits kinesin-1 to facilitate egress from neurons, Journal of Virology, vol.90, 4, 2015,pp 2102-2111
2016Comparison of Haliotis rubra hemocyanin isoforms 1 and 2Cunningham, Anthony (Tony); Dehghani, Fariba; Diefenbach, Russell; Wu, Jiadai; Western Clinical School: Westmead Institute for Medical Res; Chemical & Biomolecular Engineering; Western Clinical School: Westmead Institute for Medical Res; Chemical & Biomolecular EngineeringComparison of Haliotis rubra hemocyanin isoforms 1 and 2, Gene Reports, vol.4, N/A, 2016,pp 123-130
2015Conserved tegument protein complexes: essential components in the assembly of herpesvirusesDiefenbach, Russell; Western Clinical School: Westmead Institute for Medical ResConserved tegument protein complexes: essential components in the assembly of herpesviruses, Virus Research, vol.210, N/A, 2015,pp 308-317
2006The cycle of human herpes simplex virus infection: virus transport and immune control.Bosnjak, Lidija; Cunningham, Anthony (Tony); Diefenbach, Russell; Douglas, Mark; Jones, Cheryl; Kim, Min; Miranda Saksena, Monica; Western Clinical School (Westmead): Office; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Children's Hospital Westmead: Paediatrics & Child Health; Western Clinical School: Medicine (Westmead); Western Clinical School: Westmead Millennium InstituteThe cycle of human herpes simplex virus infection: virus transport and immune control., Journal of infectious diseases, vol.194,(Supplement 1),2006,pp S11-S18
2005Determination of interactions between tegument proteins of herpes simplex virus type 1.Cunningham, Anthony (Tony); Diefenbach, Russell; Douglas, Mark; Vittone, V; Diefenbach, Eve; Triffett, Damian; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead)Determination of interactions between tegument proteins of herpes simplex virus type 1., Journal of Virology, vol.79,(15),2005,pp 9566-71
2016Dual role of Herpes Simplex Virus 1 pUS9 in virus anterograde axonal transport and final assembly in growth cones in distal axonsBoadle, Ross; Cunningham, Anthony (Tony); Diefenbach, Russell; Miranda Saksena, Monica; Western Clinical School: Medicine (Westmead); Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical ResDual role of Herpes Simplex Virus 1 pUS9 in virus anterograde axonal transport and final assembly in growth cones in distal axons, Journal of Virology, vol.90, 5, 2016,pp 2653-2663
2016Fast track, dynein-dependent nuclear targeting of human immunodeficiency virus Vpr protein; impaired trafficking in a clinical isolateCunningham, Anthony (Tony); Diefenbach, Russell; Kassouf, Vicki; Caly, Leon; Jans, David A.; Moseley, Gregory W; Western Clinical School: Westmead Institute for Medical Res; Western Clinical School: Westmead Institute for Medical Res; Medicine Faculty OfficeFast track, dynein-dependent nuclear targeting of human immunodeficiency virus Vpr protein; impaired trafficking in a clinical isolate, Biochemical and Biophysical Research Communications, vol.470, 3, 2016,pp 735-740
2002The Heavy Chain of Conventional Kinesin Interacts with the SNARE Proteins SNAP25 and SNAP23Cunningham, Anthony (Tony); Diefenbach, Russell; Douglas, Mark; Diefenbach, Eve; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium InstituteThe Heavy Chain of Conventional Kinesin Interacts with the SNARE Proteins SNAP25 and SNAP23, Biochemistry, vol.41,(50),2002,pp 14906-14915
2002Herpes Simplex Virus Tegument Protein US11 Interacts with Conventional Kinesin Heavy ChainArmati, Patricia; Cunningham, Anthony (Tony); Diefenbach, Russell; Miranda Saksena, Monica; Boadle, Ross A.; Diefenbach, Eve; Holland, David J.; Central Clinical School: Brain & Mind Research Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium InstituteHerpes Simplex Virus Tegument Protein US11 Interacts with Conventional Kinesin Heavy Chain, Journal of Virology, vol.76,(7),2002,pp 3282-3291
2004Herpes Simplex Virus Type 1 Capsid Protein Vp26 Interacts With Dynein Light Chains Rp3 And Tctex1 And Plays A Role In Retrograde Cellular Transport.Cunningham, Anthony (Tony); Diefenbach, Russell; Douglas, Mark; Vittone, V; Byth, Karen; Homa, Fred L.; Miranda-Saksena, Monica; Rixon, Frazer J; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead)Herpes Simplex Virus Type 1 Capsid Protein Vp26 Interacts With Dynein Light Chains Rp3 And Tctex1 And Plays A Role In Retrograde Cellular Transport., Journal of Biological Chemistry, vol.279,(27),2004,pp 28522-28530
2009Herpes simplex virus utilizes the large secretory vesicle pathway for anterograde transport of tegument and envelope proteins and for viral exocytosis from growth cones of human fetal axonsAggarwal, Anupriya; Boadle, Ross; Cunningham, Anthony (Tony); Diefenbach, Russell; Miranda Saksena, Monica; Tijono, Bibing; Rixon, Frazer; Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead)Herpes simplex virus utilizes the large secretory vesicle pathway for anterograde transport of tegument and envelope proteins and for viral exocytosis from growth cones of human fetal axons, Journal of Virology, vol.83, 7, 2009,pp 3187-3199
2011Herpes simplex virus: Microtubule-dependent transport and egress from neuronsCunningham, Anthony (Tony); Diefenbach, Russell; Miranda Saksena, Monica; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium InstituteHerpes simplex virus: Microtubule-dependent transport and egress from neurons in Viral Transport, Assembly and Egress, Research Signpost, 2011, pp. 49-78
2015HIV blocks interferon induction in human dendritic cells and macrophages by dysregulation of TBK1Cunningham, Anthony (Tony); Diefenbach, Russell; Harman, Andrew; Kim, Min; Nasr, Najla; Alshehri,, Abdullateef A; Botting, Rachel A; Diefenbach, Eve; Feetham, Alexandra; Galoyan, Ani; Hiener, Bonnie; Mansell, Ashley; Rambukwelle, Dharshini; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead); Western Clinical School (Westmead): OfficeHIV blocks interferon induction in human dendritic cells and macrophages by dysregulation of TBK1, Journal of Virology, vol.89, 13, 2015,pp 6575-6584
2012Identification of a single amino acid residue which is critical for the interaction between HSV-1 inner tegument proteins pUL36 and pUL37Cunningham, Anthony (Tony); Diefenbach, Russell; Kelly, Barbara; Mijatov, Branka; Fraefel, Cornel; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead); Western Clinical School: Westmead Millennium InstituteIdentification of a single amino acid residue which is critical for the interaction between HSV-1 inner tegument proteins pUL36 and pUL37, Virology, vol.422, 2, 2012,pp 308-316
2010Identification of binding domains in the herpes simplex virus type 1 small capsid protein pUL35 (VP26)Apcarian, Arin; Cunningham, Anthony (Tony); Diefenbach, Russell; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium InstituteIdentification of binding domains in the herpes simplex virus type 1 small capsid protein pUL35 (VP26), Journal of General Virology, vol.91, 11,pp 2659-2663
2012Identification of host cell proteins which interact with herpes simplex virus type 1 tegument protein pUL37Diefenbach, E; Diefenbach, Russell; Kelly, Barbara; Fraefel, Cornel; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead)Identification of host cell proteins which interact with herpes simplex virus type 1 tegument protein pUL37, Biochemical and Biophysical Research Communications, vol.417, 3, 2012,pp 961-965
2008Identification of structural protein–protein interactions of herpes simplex virus type 1Cunningham, Anthony (Tony); Diefenbach, Eve; Diefenbach, Russell; Lee, Jin; Vittone, V; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Westmead Millennium Institute; School of Medical Sciences: Pharmacology; Western Clinical School: Medicine (Westmead)Identification of structural protein–protein interactions of herpes simplex virus type 1, Virology, vol.378, N/A, 2008,pp 347-354
2014The interaction of the HSV-1 tegument proteins pUL36 and pUL37 is essential for secondary envelopment during viral egressDiefenbach, Russell; Kelly, Barbara; Bauerfeind, Rudolf; Binz, Anne; Fraefel, Cornel; Laimbacher, Andrea S; Sodeik, Beate; Western Clinical School: Westmead Millennium Institute; Western Clinical School: Medicine (Westmead)The interaction of the HSV-1 tegument proteins pUL36 and pUL37 is essential for secondary envelopment during viral egress, Virology, vol.454, 455, 2014,pp 67-77