ANDREW RICE to CD4-Positive T-Lymphocytes
This is a "connection" page, showing publications ANDREW RICE has written about CD4-Positive T-Lymphocytes.
Connection Strength
4.807
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HIV-1 replication in CD4+ T cells exploits the down-regulation of antiviral NEAT1 long non-coding RNAs following T cell activation. Virology. 2018 09; 522:193-198.
Score: 0.465
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Proteomic Profiling of a Primary CD4+ T Cell Model of HIV-1 Latency Identifies Proteins Whose Differential Expression Correlates with Reactivation of Latent HIV-1. AIDS Res Hum Retroviruses. 2018 01; 34(1):103-110.
Score: 0.445
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Short Communication: The Broad-Spectrum Histone Deacetylase Inhibitors Vorinostat and Panobinostat Activate Latent HIV in CD4(+) T Cells In Part Through Phosphorylation of the T-Loop of the CDK9 Subunit of P-TEFb. AIDS Res Hum Retroviruses. 2016 Feb; 32(2):169-73.
Score: 0.392
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Short communication: SAHA (vorinostat) induces CDK9 Thr-186 (T-loop) phosphorylation in resting CD4+ T cells: implications for reactivation of latent HIV. AIDS Res Hum Retroviruses. 2015 Jan; 31(1):137-41.
Score: 0.363
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Cyclin T1 and CDK9 T-loop phosphorylation are downregulated during establishment of HIV-1 latency in primary resting memory CD4+ T cells. J Virol. 2013 Jan; 87(2):1211-20.
Score: 0.313
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MicroRNA-mediated restriction of HIV-1 in resting CD4+ T cells and monocytes. Viruses. 2012 09; 4(9):1390-409.
Score: 0.309
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Phosphatase PPM1A negatively regulates P-TEFb function in resting CD4(+) T cells and inhibits HIV-1 gene expression. Retrovirology. 2012 Jun 22; 9:52.
Score: 0.305
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Regulation of cyclin T1 and HIV-1 Replication by microRNAs in resting CD4+ T lymphocytes. J Virol. 2012 Mar; 86(6):3244-52.
Score: 0.295
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Characterization of Cdk9 T-loop phosphorylation in resting and activated CD4(+) T lymphocytes. J Leukoc Biol. 2009 Dec; 86(6):1345-50.
Score: 0.252
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Cyclin T1-dependent genes in activated CD4 T and macrophage cell lines appear enriched in HIV-1 co-factors. PLoS One. 2008 Sep 05; 3(9):e3146.
Score: 0.234
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Effects of prostratin on Cyclin T1/P-TEFb function and the gene expression profile in primary resting CD4+ T cells. Retrovirology. 2006 Oct 02; 3:66.
Score: 0.205
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Identification of LKLF-regulated genes in quiescent CD4+ T lymphocytes. Mol Immunol. 2005 Mar; 42(5):627-41.
Score: 0.184
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Regulation of TAK/P-TEFb in CD4+ T lymphocytes and macrophages. Curr HIV Res. 2003 Oct; 1(4):395-404.
Score: 0.167
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Identification of celastrol as a novel HIV-1 latency reversal agent by an image-based screen. PLoS One. 2021; 16(4):e0244771.
Score: 0.141
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Regulation of cyclin T1 during HIV replication and latency establishment in human memory CD4 T cells. Virol J. 2019 02 20; 16(1):22.
Score: 0.121
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The HIV-1 Tat Protein: Mechanism of Action and Target for HIV-1 Cure Strategies. Curr Pharm Des. 2017; 23(28):4098-4102.
Score: 0.104
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Challenges and strategies for the eradication of the HIV reservoir. Curr Opin Immunol. 2016 10; 42:65-70.
Score: 0.100
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Subversion of Cell Cycle Regulatory Mechanisms by HIV. Cell Host Microbe. 2015 Jun 10; 17(6):736-40.
Score: 0.094
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miR-132 enhances HIV-1 replication. Virology. 2013 Mar 30; 438(1):1-4.
Score: 0.079
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Cdk9 T-loop phosphorylation is regulated by the calcium signaling pathway. J Cell Physiol. 2012 Feb; 227(2):609-17.
Score: 0.074
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T-loop phosphorylated Cdk9 localizes to nuclear speckle domains which may serve as sites of active P-TEFb function and exchange between the Brd4 and 7SK/HEXIM1 regulatory complexes. J Cell Physiol. 2010 Jul; 224(1):84-93.
Score: 0.066
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Latently-infected CD4+ T cells are enriched for HIV-1 Tat variants with impaired transactivation activity. Virology. 2009 Apr 25; 387(1):98-108.
Score: 0.061
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Clearance of HIV-1 or SIV reservoirs by promotion of apoptosis and inhibition of autophagy: Targeting intracellular molecules in cure-directed strategies. J Leukoc Biol. 2022 11; 112(5):1245-1259.
Score: 0.038