P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression

ग्रंथसूची विवरण
मुख्य लेखकों: Wright, J, Brockman, M, Brumme, Z, Walker, B, Goulder, P, Ndung'u, T
स्वरूप: Journal article
भाषा:English
प्रकाशित: 2009
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author Wright, J
Brockman, M
Brumme, Z
Walker, B
Goulder, P
Ndung'u, T
author_facet Wright, J
Brockman, M
Brumme, Z
Walker, B
Goulder, P
Ndung'u, T
author_sort Wright, J
collection OXFORD
description
first_indexed 2024-03-06T18:15:05Z
format Journal article
id oxford-uuid:04573d05-5f6f-4d5d-8e2b-c0a713776116
institution University of Oxford
language English
last_indexed 2024-03-06T18:15:05Z
publishDate 2009
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spelling oxford-uuid:04573d05-5f6f-4d5d-8e2b-c0a7137761162022-03-26T08:51:16ZP09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progressionJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:04573d05-5f6f-4d5d-8e2b-c0a713776116EnglishSymplectic Elements at Oxford2009Wright, JBrockman, MBrumme, ZWalker, BGoulder, PNdung'u, T
spellingShingle Wright, J
Brockman, M
Brumme, Z
Walker, B
Goulder, P
Ndung'u, T
P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title_full P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title_fullStr P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title_full_unstemmed P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title_short P09-09. Impact of immune-driven sequence variation in HIV-1 subtype C Gag-Protease on viral fitness and disease progression
title_sort p09 09 impact of immune driven sequence variation in hiv 1 subtype c gag protease on viral fitness and disease progression
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