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Science 8 November 1996: Vol. 274. no. 5289, pp. 1008 - 1011 DOI: 10.1126/science.274.5289.1008
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Technical Comments
HIV-1 Evolution and Disease Progression
M. A. Nowak, R. M. Anderson, M. C. Boerlijst, S. Bonhoeffer, R. M. May, A. J. McMichael;, S. M. Wolinsky, K. J. Kunstman, J. T. Safrit, R. A. Koup, A. U. Neumann, and B. T. M. Korber
References
- ASJO, B, REPLICATIVE CAPACITY OF HUMAN-IMMUNODEFICIENCY-VIRUS FROM PATIENTS WITH VARYING SEVERITY OF HIV-INFECTION, LANCET 2: 660 (1986).
- BONHOEFFER, S, CAUSES OF HIV DIVERSITY, NATURE 376: 125 (1995).
- CONNOR, R.I., INCREASED VIRAL BURDEN AND CYTOPATHICITY CORRELATE TEMPORALLY WITH CD4+ T-LYMPHOCYTE DECLINE AND CLINICAL PROGRESSION IN HUMAN-IMMUNODEFICIENCY-VIRUS TYPE 1-INFECTED INDIVIDUALS, JOURNAL OF VIROLOGY 67: 1772 (1993).
- DEBOER, R.J., DIVERSITY AND VIRULENCE THRESHOLDS IN AIDS, PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 91: 544 (1994).
- DELWART, E.L., HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 EVOLUTION IN-VIVO TRACKED BY DNA HETERODUPLEX MOBILITY ASSAYS, JOURNAL OF VIROLOGY 68: 6672 (1994).
- HAYNES, B.F., Toward an understanding of the correlates of protective immunity to HIV infection, SCIENCE 271: 324 (1996).
- HOLMES, E.C., CONVERGENT AND DIVERGENT SEQUENCE EVOLUTION IN THE SURFACE ENVELOPE GLYCOPROTEIN OF HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 WITHIN A SINGLE INFECTED PATIENT, PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 89: 4835 (1992).
- KOOT, M, PROGNOSTIC VALUE OF HIV-1 SYNCYTIUM-INDUCING PHENOTYPE FOR RATE OF CD4+ CELL DEPLETION AND PROGRESSION TO AIDS, ANNALS OF INTERNAL MEDICINE 118: 681 (1993).
- LUKASHOV, V.V., INTRAHOST HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 EVOLUTION IS RELATED TO LENGTH OF THE IMMUNOCOMPETENT PERIOD, JOURNAL OF VIROLOGY 69: 6911 (1995).
- MCKNIGHT, A, CHANGE IN TROPISM UPON IMMUNE ESCAPE BY HUMAN-IMMUNODEFICIENCY-VIRUS, JOURNAL OF VIROLOGY 69: 3167 (1995).
- MIEDEMA, F, AIDS pathogenesis: A finite immune response to blame?, SCIENCE 272: 505 (1996).
- NOWAK, M.A., THE EVOLUTIONARY DYNAMICS OF HIV-1 QUASISPECIES AND THE DEVELOPMENT OF IMMUNODEFICIENCY DISEASE, AIDS 4: 1095 (1990).
- NOWAK, M, AIDS PATHOGENESIS - MATHEMATICAL-MODELS OF HIV AND SIV INFECTIONS, AIDS 7: S3 (1993).
- NOWAK, M.A., COEXISTENCE AND COMPETITION IN HIV INFECTIONS, JOURNAL OF THEORETICAL BIOLOGY 159: 329 (1992).
- NOWAK, M.A., ANTIGENIC OSCILLATIONS AND SHIFTING IMMUNODOMINANCE IN HIV-1 INFECTIONS, NATURE 375: 606 (1995).
- NOWAK, M.A., HOW HIV DEFEATS THE IMMUNE-SYSTEM, SCIENTIFIC AMERICAN 273: 58 (1995).
- NOWAK, M.A., ANTIGENIC DIVERSITY THRESHOLDS AND THE DEVELOPMENT OF AIDS, SCIENCE 254: 963 (1991).
- NOWAK, M.A., Population dynamics of immune responses to persistent viruses, SCIENCE 272: 74 (1996).
- PHILLIPS, R.E., HUMAN-IMMUNODEFICIENCY-VIRUS GENETIC-VARIATION THAT CAN ESCAPE CYTOTOXIC T-CELL RECOGNITION, NATURE 354: 453 (1991).
- TERSMETTE, M, DIFFERENTIAL SYNCYTIUM-INDUCING CAPACITY OF HUMAN IMMUNODEFICIENCY VIRUS ISOLATES - FREQUENT DETECTION OF SYNCYTIUM-INDUCING ISOLATES IN PATIENTS WITH ACQUIRED IMMUNODEFICIENCY SYNDROME (AIDS) AND AIDS-RELATED COMPLEX, JOURNAL OF VIROLOGY 62: 2026 (1988).
- WOLINSKY, S.M., Adaptive evolution of human immunodeficiency virus-type 1 during the natural course of infection, SCIENCE 272: 537 (1996).
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