Human immunodeficiency virus type 1 Vpu protein induces rapid degradation of CD4
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[1] Lawrence H. Pinto,et al. Influenza virus M2 protein has ion channel activity , 1992, Cell.
[2] J. Bonifacino,et al. Mutations within the human immunodeficiency virus type 1 gp160 envelope glycoprotein alter its intracellular transport and processing. , 1991, Virology.
[3] Roland L. Dunbrack,et al. Phosphorylation-dependent down-modulation of CD4 requires a specific structure within the cytoplasmic domain of CD4. , 1991, The Journal of biological chemistry.
[4] J. Garcia,et al. Serine phosphorylation-independent downregulation of cell-surface CD4 by nef , 1991, Nature.
[5] G. R. Carson,et al. Depletion of cellular calcium accelerates protein degradation in the endoplasmic reticulum. , 1991, The Journal of biological chemistry.
[6] Roland L. Dunbrack,et al. Signals for retention of transmembrane proteins in the endoplasmic reticulum studied with CD4 truncation mutants. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[7] A. Hay,et al. Structural characteristics of the M2 protein of influenza a viruses: Evidence that it forms a tetrameric channe , 1991, Virology.
[8] Arnold J. Levine,et al. The E6 oncoprotein encoded by human papillomavirus types 16 and 18 promotes the degradation of p53 , 1990, Cell.
[9] M. A. Jabbar,et al. Intracellular interaction of human immunodeficiency virus type 1 (ARV-2) envelope glycoprotein gp160 with CD4 blocks the movement and maturation of CD4 to the plasma membrane , 1990, Journal of virology.
[10] A. Ciechanover,et al. The ubiquitin-mediated proteolytic pathway: enzymology and mechanisms of recognition of the proteolytic substrates. , 1990, Seminars in cell biology.
[11] B. Crise,et al. CD4 is retained in the endoplasmic reticulum by the human immunodeficiency virus type 1 glycoprotein precursor , 1990, Journal of virology.
[12] A. Douglas,et al. Specific structural alteration of the influenza haemagglutinin by amantadine. , 1990, The EMBO journal.
[13] T. Klimkait,et al. The human immunodeficiency virus type 1-specific protein vpu is required for efficient virus maturation and release , 1990, Journal of virology.
[14] T. Klimkait,et al. Molecular and biochemical analyses of human immunodeficiency virus type 1 vpu protein , 1989, Journal of virology.
[15] I. Kawamura,et al. Depletion of the surface CD4 molecule by the envelope protein of human immunodeficiency virus expressed in a human CD4+ monocytoid cell line , 1989, Journal of virology.
[16] J. Sodroski,et al. Functional role of human immunodeficiency virus type 1 vpu. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[17] J. Lippincott-Schwartz,et al. Pre-Golgi degradation of newly synthesized T-cell antigen receptor chains: intrinsic sensitivity and the role of subunit assembly , 1989, The Journal of cell biology.
[18] J. Lippincott-Schwartz,et al. Rapid redistribution of Golgi proteins into the ER in cells treated with brefeldin A: Evidence for membrane cycling from Golgi to ER , 1989, Cell.
[19] L. Montagnier,et al. Characterization of human immunodeficiency virus type 2 envelope glycoproteins: dimerization of the glycoprotein precursor during processing , 1989, Journal of virology.
[20] T. Klimkait,et al. A novel gene of HIV-1, vpu, and its 16-kilodalton product. , 1988, Science.
[21] J. Lippincott-Schwartz,et al. Degradation from the endoplasmic reticulum: Disposing of newly synthesized proteins , 1988, Cell.
[22] M. Marsh,et al. Human immunodeficiency virus infection of CD4‐bearing cells occurs by a pH‐independent mechanism. , 1988, The EMBO journal.
[23] R. Axel,et al. soluble form of CD4 (T4) protein inhibits AIDS virus infection , 1988, Nature.
[24] D. Volsky,et al. Downregulation of cell surface molecules during noncytopathic infection of T cells with human immunodeficiency virus , 1987, Journal of virology.
[25] G. Nakamura,et al. Delineation of a region of the human immunodeficiency virus type 1 gp120 glycoprotein critical for interaction with the CD4 receptor , 1987, Cell.
[26] K. Strebel,et al. The HIV A (sor) gene product is essential for virus infectivity , 1987, Nature.
[27] Edgar G. Engleman,et al. pH-independent HIV entry into CD4-positive T cells via virus envelope fusion to the plasma membrane , 1987, Cell.
[28] J. Hoxie,et al. Alterations in T4 (CD4) protein and mRNA synthesis in cells infected with HIV. , 1986, Science.
[29] Robin A. Weiss,et al. The T4 gene encodes the AIDS virus receptor and is expressed in the immune system and the brain , 1986, Cell.
[30] Y. Misumi,et al. Novel blockade by brefeldin A of intracellular transport of secretory proteins in cultured rat hepatocytes. , 1986, The Journal of biological chemistry.
[31] H. Gendelman,et al. Production of acquired immunodeficiency syndrome-associated retrovirus in human and nonhuman cells transfected with an infectious molecular clone , 1986, Journal of virology.
[32] I. Pastan,et al. The Rous sarcoma virus long terminal repeat is a strong promoter when introduced into a variety of eukaryotic cells by DNA-mediated transfection. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[33] A. van der Eb,et al. A new technique for the assay of infectivity of human adenovirus 5 DNA. , 1973, Virology.
[34] R. Parker,et al. Phosphorylation and degradation of HMG CoA reductase. , 1989, Advances in enzyme regulation.
[35] Luc Montagnier,et al. T-lymphocyte T4 molecule behaves as the receptor for human retrovirus LAV , 1984, Nature.
[36] M. Greaves,et al. The CD4 (T4) antigen is an essential component of the receptor for the AIDS retrovirus , 1984, Nature.