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Cited by
Analysis of the contribution of cellular and viral RNA to the packaging of APOBEC3G into HIV-1 virions
Mohammad A Khan, Ritu Goila-Gaur, Sandrine Opi, Eri Miyagi, Hiroaki Takeuchi, Sandra Kao, Klaus Strebel
Retrovirology.
2007;
4: 48.
Published online 2007 July 16.
doi: 10.1186/1742-4690-4-48
PMCID:
PMC1948019
Abstract
Full Text
PDF–739K
Is Cited by the Following 29 Articles in this Archive:
Signals in APOBEC3F N-terminal and C-terminal Deaminase Domains Each Contribute to Encapsidation in HIV-1 Virions and Are Both Required for HIV-1 Restriction
Chisu Song, Lorraine Sutton, Megan E. Johnson, Richard T. D'Aquila, John P. Donahue
J Biol Chem.
2012 May 11;
287(20): 16965–16974.
Published online 2012 March 26.
doi: 10.1074/jbc.M111.310839
PMCID:
PMC3351310
Free in PMC on 2013/05/11
Role of HIV-1 RNA and protein determinants for the selective packaging of spliced and unspliced viral RNA and host U6 and 7SL RNA in virus particles
L. Didierlaurent, P. J. Racine, L. Houzet, C. Chamontin, B. Berkhout, M. Mougel
Nucleic Acids Res.
2011 November;
39(20): 8915–8927.
Published online 2011 July 26.
doi: 10.1093/nar/gkr577
PMCID:
PMC3203606
Abstract
Full Text
PDF–2.3M
Supplementary Material
Deaminase Activity on Single-stranded DNA (ssDNA) Occurs
in Vitro
when APOBEC3G Cytidine Deaminase Forms Homotetramers and Higher-order Complexes
William M. McDougall, Chinelo Okany, Harold C. Smith
J Biol Chem.
2011 September 2;
286(35): 30655–30661.
Published online 2011 July 7.
doi: 10.1074/jbc.M111.269506
PMCID:
PMC3162426
Free in PMC on 2012/09/02
Intensity of Deoxycytidine Deamination of HIV-1 Proviral DNA by the Retroviral Restriction Factor APOBEC3G Is Mediated by the Noncatalytic Domain
Yuqing Feng, Linda Chelico
J Biol Chem.
2011 April 1;
286(13): 11415–11426.
Published online 2011 February 7.
doi: 10.1074/jbc.M110.199604
PMCID:
PMC3064197
Abstract
Full Text
Supplementary Material
APOBEC3G: a Double Agent in Defense
Harold C. Smith
Trends Biochem Sci.
Author manuscript; available in PMC 2012 May 1.
Published in final edited form as:
Trends Biochem Sci.
2011 May;
36
(5)
: 239–244.
Published online 2011 January 14.
doi: 10.1016/j.tibs.2010.12.003
PMCID:
PMC3086942
Abstract
Full Text
PDF–89K
7SL RNA Is Retained in HIV-1 Minimal Virus-Like Particles as an S-Domain Fragment
Sarra E. Keene, Steven R. King, Alice Telesnitsky
J Virol.
2010 September;
84(18): 9070–9077.
Published online 2010 July 7.
doi: 10.1128/JVI.00714-10
PMCID:
PMC2937644
Abstract
Full Text
PDF–1.3M
HIV-1 Vif Versus the APOBEC3 Cytidine Deaminases: An Intracellular Duel Between Pathogen and Host Restriction Factors
Silke Wissing, Nicole L. K. Galloway, Warner C. Greene
Mol Aspects Med.
Author manuscript; available in PMC 2011 October 1.
Published in final edited form as:
Mol Aspects Med.
2010 October;
31
(5)
: 383–397.
Published online 2010 June 9.
doi: 10.1016/j.mam.2010.06.001
PMCID:
PMC2967609
Abstract
Full Text
PDF–948K
Structural Model for Deoxycytidine Deamination Mechanisms of the HIV-1 Inactivation Enzyme APOBEC3G
Linda Chelico, Courtney Prochnow, Dorothy A. Erie, Xiaojiang S. Chen, Myron F. Goodman
J Biol Chem.
2010 May 21;
285(21): 16195–16205.
Published online 2010 March 8.
doi: 10.1074/jbc.M110.107987
PMCID:
PMC2871487
Abstract
Full Text
Inhibition of LINE-1 and Alu retrotransposition by exosomes encapsidating APOBEC3G and APOBEC3F
Atanu K. Khatua, Harry E. Taylor, James E. K. Hildreth, Waldemar Popik
Virology.
Author manuscript; available in PMC 2011 April 25.
Published in final edited form as:
Virology.
2010 April 25;
400
(1)
: 68–75.
Published online 2010 February 11.
doi: 10.1016/j.virol.2010.01.021
PMCID:
PMC2851184
Abstract
Full Text
PDF–1.0M
Encapsidation of APOBEC3G into HIV-1 virions involves lipid raft association and does not correlate with APOBEC3G oligomerization
Mohammad A Khan, Ritu Goila-Gaur, Sandra Kao, Eri Miyagi, Robert C Walker, Jr, Klaus Strebel
Retrovirology.
2009;
6: 99.
Published online 2009 November 3.
doi: 10.1186/1742-4690-6-99
PMCID:
PMC2776001
Abstract
Full Text
PDF–877K
Packaging of Host mY RNAs by Murine Leukemia Virus May Occur Early in Y RNA Biogenesis
Eric L. Garcia, Adewunmi Onafuwa-Nuga, Soyeong Sim, Steven R. King, Sandra L. Wolin, Alice Telesnitsky
J Virol.
2009 December;
83(23): 12526–12534.
Published online 2009 September 23.
doi: 10.1128/JVI.01219-09
PMCID:
PMC2786734
Abstract
Full Text
PDF–1.4M
Intracellular interactions between APOBEC3G, RNA, and HIV-1 Gag: APOBEC3G multimerization is dependent on its association with RNA
Yeshitila N Friew, Vitaly Boyko, Wei-Shau Hu, Vinay K Pathak
Retrovirology.
2009;
6: 56.
Published online 2009 June 4.
doi: 10.1186/1742-4690-6-56
PMCID:
PMC2700067
Abstract
Full Text
PDF–2.0M
APOBEC3G Inhibits Elongation of HIV-1 Reverse Transcripts
Kate N. Bishop, Mohit Verma, Eun-Young Kim, Steven M. Wolinsky, Michael H. Malim
PLoS Pathog.
2008 December;
4(12): e1000231.
Published online 2008 December 5.
doi: 10.1371/journal.ppat.1000231
PMCID:
PMC2584787
Abstract
Full Text
PDF–397K
Supplementary Material
APOBEC3G Subunits Self-associate via the C-terminal Deaminase Domain
Ryan P. Bennett, Jason D. Salter, Xiang Liu, Joseph E. Wedekind, Harold C. Smith
J Biol Chem.
2008 November 28;
283(48): 33329–33336.
doi: 10.1074/jbc.M803726200
PMCID:
PMC2586250
Abstract
Full Text
Supplementary Material
APOBEC proteins and intrinsic resistance to HIV-1 infection
Michael H. Malim
Philos Trans R Soc Lond B Biol Sci.
2009 March 12;
364(1517): 675–687.
Published online 2008 November 27.
doi: 10.1098/rstb.2008.0185
PMCID:
PMC2660912
Abstract
Full Text
PDF–455K
APOBEC3G: an intracellular centurion
Ya-Lin Chiu, Warner C. Greene
Philos Trans R Soc Lond B Biol Sci.
2009 March 12;
364(1517): 689–703.
Published online 2008 November 13.
doi: 10.1098/rstb.2008.0193
PMCID:
PMC2660915
Abstract
Full Text
PDF–822K
Human Immunodeficiency Virus Type 1 Replication and Regulation of APOBEC3G by Peptidyl Prolyl Isomerase Pin1
Koichi Watashi, Mohammad Khan, Venkat R. K. Yedavalli, Man Lung Yeung, Klaus Strebel, Kuan-Teh Jeang
J Virol.
2008 October;
82(20): 9928–9936.
Published online 2008 August 6.
doi: 10.1128/JVI.01017-08
PMCID:
PMC2566249
Abstract
Full Text
PDF–778K
APOBEC3G-independent reduction in virion infectivity during long-term HIV-1 replication in terminally differentiated macrophages
Eri Miyagi, Franziska Schwartzkopff, Ronald Plishka, Alicia Buckler-White, Kathleen A. Clouse, Klaus Strebel
Virology.
Author manuscript; available in PMC 2009 September 30.
Published in final edited form as:
Virology.
2008 September 30;
379
(2)
: 266–274.
Published online 2008 August 3.
doi: 10.1016/j.virol.2008.06.033
PMCID:
PMC2614695
Abstract
Full Text
PDF–986K
APOBEC3G encapsidation into HIV-1 virions: which RNA is it?
Klaus Strebel, Mohammad A Khan
Retrovirology.
2008;
5: 55.
Published online 2008 July 2.
doi: 10.1186/1742-4690-5-55
PMCID:
PMC2491656
Abstract
Full Text
PDF–238K
Characterization of APOBEC3G binding to 7SL RNA
Daniel Bach, Shyam Peddi, Bastien Mangeat, Asvin Lakkaraju, Katharina Strub, Didier Trono
Retrovirology.
2008;
5: 54.
Published online 2008 July 2.
doi: 10.1186/1742-4690-5-54
PMCID:
PMC2494554
Abstract
Full Text
PDF–2.3M
HIV-1 Vif, APOBEC, and Intrinsic Immunity
Ritu Goila-Gaur, Klaus Strebel
Retrovirology.
2008;
5: 51.
Published online 2008 June 24.
doi: 10.1186/1742-4690-5-51
PMCID:
PMC2443170
Abstract
Full Text
PDF–1.0M
The AID/APOBEC family of nucleic acid mutators
Silvestro G Conticello
Genome Biol.
2008;
9(6): 229.
Published online 2008 June 17.
doi: 10.1186/gb-2008-9-6-229
PMCID:
PMC2481415
Abstract
Full Text
PDF–1.0M
Uracil within DNA: an actor of antiviral immunity
Joséphine Sire, Gilles Quérat, Cécile Esnault, Stéphane Priet
Retrovirology.
2008;
5: 45.
Published online 2008 June 5.
doi: 10.1186/1742-4690-5-45
PMCID:
PMC2427051
Abstract
Full Text
PDF–555K
Comparison of G-to-A Mutation Frequencies Induced by APOBEC3 Proteins in H9 Cells and Peripheral Blood Mononuclear Cells in the Context of Impaired Processivities of Drug-Resistant Human Immunodeficiency Virus Type 1 Reverse Transcriptase Variants
Stefanie Andrea Knoepfel, Nadine Christina Salisch, Peter Michael Huelsmann, Pia Rauch, Hauke Walter, Karin Jutta Metzner
J Virol.
2008 July;
82(13): 6536–6545.
Published online 2008 April 30.
doi: 10.1128/JVI.00554-08
PMCID:
PMC2447050
Abstract
Full Text
PDF–496K
Comparison of Cellular Ribonucleoprotein Complexes Associated with the APOBEC3F and APOBEC3G Antiviral Proteins
Sarah Gallois-Montbrun, Rebecca K. Holmes, Chad M. Swanson, Mireia Fernández-Ocaña, Helen L. Byers, Malcolm A. Ward, Michael H. Malim
J Virol.
2008 June;
82(11): 5636–5642.
Published online 2008 March 26.
doi: 10.1128/JVI.00287-08
PMCID:
PMC2395208
Abstract
Full Text
PDF–460K
Turning up the volume on mutational pressure: Is more of a good thing always better? (A case study of HIV-1 Vif and APOBEC3)
Satish K Pillai, Joseph K Wong, Jason D Barbour
Retrovirology.
2008;
5: 26.
Published online 2008 March 13.
doi: 10.1186/1742-4690-5-26
PMCID:
PMC2323022
Abstract
Full Text
PDF–1.1M
Human APOBEC3G Can Restrict Retroviral Infection in Avian Cells and Acts Independently of both UNG and SMUG1
Marc-André Langlois, Michael S. Neuberger
J Virol.
2008 May;
82(9): 4660–4664.
Published online 2008 February 13.
doi: 10.1128/JVI.02469-07
PMCID:
PMC2293047
Abstract
Full Text
PDF–441K
The dimerization domain of HIV-1 viral infectivity factor Vif is required to block virion incorporation of APOBEC3G
James H Miller, Vlad Presnyak, Harold C Smith
Retrovirology.
2007;
4: 81.
Published online 2007 November 24.
doi: 10.1186/1742-4690-4-81
PMCID:
PMC2222665
Abstract
Full Text
PDF–610K
Production of infectious virus and degradation of APOBEC3G are separable functional properties of human immunodeficiency virus type 1 Vif
Sandra Kao, Ritu Goila-Gaur, Eri Miyagi, Mohammad A. Khan, Sandrine Opi, Hiroaki Takeuchi, Klaus Strebel
Virology.
Author manuscript; available in PMC 2008 December 20.
Published in final edited form as:
Virology.
2007 December 20;
369
(2)
: 329–339.
Published online 2007 September 6.
doi: 10.1016/j.virol.2007.08.005
PMCID:
PMC2129170
Abstract
Full Text
PDF–1.9M
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