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22 results for author:"Rice A.P." in Literature citations

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Phosphatase PPM1A negatively regulates P-TEFb function in resting CD4(+) T cells and inhibits HIV-1 gene expression.

Budhiraja S., Ramakrishnan R., Rice A.P.

Retrovirology 9:52-52(2012) · Mapped (4)

Regulation of cyclin T1 and HIV-1 Replication by microRNAs in resting CD4+ T lymphocytes.

Chiang K., Sung T.L., Rice A.P.

J. Virol. 86:3244-3252(2012) · Mapped (4)

The avian influenza virus NS1 ESEV PDZ binding motif associates with Dlg1 and Scribble to disrupt cellular tight junctions.

Golebiewski L., Liu H., Javier R.T., Rice A.P.

J. Virol. 85:10639-10648(2011) · Mapped (3)

Emerging theme: cellular PDZ proteins as common targets of pathogenic viruses.

Javier R.T., Rice A.P.

J. Virol. 85:11544-11556(2011) · UniProtKB (1)

Cdk9 T-loop phosphorylation is regulated by the calcium signaling pathway.

Ramakrishnan R., Rice A.P.

J. Cell. Physiol. 227:609-617(2012) · UniProtKB (1) · Mapped (2)

The ESEV PDZ-binding motif of the avian influenza A virus NS1 protein protects infected cells from apoptosis by directly targeting Scribble.

Liu H., Golebiewski L., Dow E.C., Krug R.M., Javier R.T., Rice A.P.

J. Virol. 84:11164-11174(2010) · Mapped (3)

55K isoform of CDK9 associates with Ku70 and is involved in DNA repair.

Liu H., Herrmann C.H., Chiang K., Sung T.L., Moon S.H., Donehower L.A., Rice A.P.

Biochem. Biophys. Res. Commun. 397:245-250(2010) · UniProtKB (2) · Mapped (7)

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.

Dow E.C., Liu H., Rice A.P.

J. Cell. Physiol. 224:84-93(2010) · Mapped (12)

Characterization of Cdk9 T-loop phosphorylation in resting and activated CD4(+) T lymphocytes.

Ramakrishnan R., Dow E.C., Rice A.P.

J. Leukoc. Biol. 86:1345-1350(2009) · Mapped (3)

Latently-infected CD4+ T cells are enriched for HIV-1 Tat variants with impaired transactivation activity.

Yukl S., Pillai S., Li P., Chang K., Pasutti W., Ahlgren C., Havlir D., Strain M., Gunthard H., Richman D. et al.

Virology 387:98-108(2009) · UniProtKB (198) · Mapped (1)

Phosphatase PPM1A regulates phosphorylation of Thr-186 in the Cdk9 T-loop.

Wang Y., Dow E.C., Liang Y.Y., Ramakrishnan R., Liu H., Sung T.L., Lin X., Rice A.P.

J. Biol. Chem. 283:33578-33584(2008) · UniProtKB (1) · Mapped (10)

Cyclin T1-dependent genes in activated CD4 T and macrophage cell lines appear enriched in HIV-1 co-factors.

Yu W., Ramakrishnan R., Wang Y., Chiang K., Sung T.L., Rice A.P.

PLoS ONE 3:e3146-e3146(2008) · Mapped (4)

Effects of prostratin on Cyclin T1/P-TEFb function and the gene expression profile in primary resting CD4+ T cells.

Sung T.L., Rice A.P.

Retrovirology 3:66-66(2006) · Mapped (4)

Induction of the HIV-1 Tat co-factor cyclin T1 during monocyte differentiation is required for the regulated expression of a large portion of cellular mRNAs.

Yu W., Wang Y., Shaw C.A., Qin X.F., Rice A.P.

Retrovirology 3:32-32(2006) · Mapped (4)

Identification of LKLF-regulated genes in quiescent CD4+ T lymphocytes.

Haaland R.E., Yu W., Rice A.P.

Mol. Immunol. 42:627-641(2005) · Mapped (2)

Regulation of TAK/P-TEFb in CD4+ T lymphocytes and macrophages.

Rice A.P., Herrmann C.H.

Curr. HIV Res. 1:395-404(2003) · Mapped (7)

Transient induction of cyclin T1 during human macrophage differentiation regulates human immunodeficiency virus type 1 Tat transactivation function.

Liou L.Y., Herrmann C.H., Rice A.P.

J. Virol. 76:10579-10587(2002) · Mapped (5)

Genomic organization and characterization of promoter function of the human CDK9 gene.

Liu H., Rice A.P.

Gene 252:51-59(2000) · UniProtKB (1)

Isolation and characterization of the human cyclin T1 promoter.

Liu H., Rice A.P.

Gene 252:39-49(2000) · UniProtKB (1)

The interaction between HIV-1 Tat and human cyclin T1 requires zinc and a critical cysteine residue that is not conserved in the murine CycT1 protein.

Garber M.E., Wei P., KewalRamani V.N., Mayall T.P., Herrmann C.H., Rice A.P., Littman D.R., Jones K.A.

Genes Dev. 12:3512-3527(1998) · UniProtKB (2) · Mapped (1)

Viral transactivators E1A and VP16 interact with a large complex that is associated with CTD kinase activity and contains CDK8.

Gold M.O., Tassan J.P., Nigg E.A., Rice A.P., Herrmann C.H.

Nucleic Acids Res. 24:3771-3777(1996) · Mapped (3)

The human immunodeficiency virus Tat proteins specifically associate with TAK in vivo and require the carboxyl-terminal domain of RNA polymerase II for function.

Yang X., Herrmann C.H., Rice A.P.

J. Virol. 70:4576-4584(1996) · UniProtKB (1)

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