Dynamics of the blood plasma proteome during hyperacute HIV-1 infection

The complex dynamics of protein expression in plasma during hyperacute HIV-1 infection and its relation to acute retroviral syndrome, viral control, and disease progression are largely unknown. Here, we quantify 1293 blood plasma proteins from 157 longitudinally linked plasma samples collected befor...

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Main Authors: Nazziwa, J, Freyhult, E, Hong, M, Johansson, E, Årman, F, Hare, J, Gounder, K, Rezeli, M, Mohanty, T, Kjellström, S, Kamali, A, Karita, E, Kilembe, W, Price, MA, Kaleebu, P, Allen, S, Hunter, E, Ndung’u, T, Gilmour, J, Rowland-Jones, SL, Sanders, E, Hassan, AS, Esbjörnsson, J
Format: Journal article
Language:English
Published: Nature Research 2024
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author Nazziwa, J
Freyhult, E
Hong, M
Johansson, E
Årman, F
Hare, J
Gounder, K
Rezeli, M
Mohanty, T
Kjellström, S
Kamali, A
Karita, E
Kilembe, W
Price, MA
Kaleebu, P
Allen, S
Hunter, E
Ndung’u, T
Gilmour, J
Rowland-Jones, SL
Sanders, E
Hassan, AS
Esbjörnsson, J
author_facet Nazziwa, J
Freyhult, E
Hong, M
Johansson, E
Årman, F
Hare, J
Gounder, K
Rezeli, M
Mohanty, T
Kjellström, S
Kamali, A
Karita, E
Kilembe, W
Price, MA
Kaleebu, P
Allen, S
Hunter, E
Ndung’u, T
Gilmour, J
Rowland-Jones, SL
Sanders, E
Hassan, AS
Esbjörnsson, J
author_sort Nazziwa, J
collection OXFORD
description The complex dynamics of protein expression in plasma during hyperacute HIV-1 infection and its relation to acute retroviral syndrome, viral control, and disease progression are largely unknown. Here, we quantify 1293 blood plasma proteins from 157 longitudinally linked plasma samples collected before, during, and after hyperacute HIV-1 infection of 54 participants from four sub-Saharan African countries. Six distinct longitudinal expression profiles are identified, of which four demonstrate a consistent decrease in protein levels following HIV-1 infection. Proteins involved in inflammatory responses, immune regulation, and cell motility are significantly altered during the transition from pre-infection to one month post-infection. Specifically, decreased ZYX and SCGB1A1 levels, and increased LILRA3 levels are associated with increased risk of acute retroviral syndrome; increased NAPA and RAN levels, and decreased ITIH4 levels with viral control; and increased HPN, PRKCB, and ITGB3 levels with increased risk of disease progression. Overall, this study provides insight into early host responses in hyperacute HIV-1 infection, and present potential biomarkers and mechanisms linked to HIV-1 disease progression and viral load.
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spelling oxford-uuid:97ff1b52-b65c-4b18-ba83-6e949d88777c2024-12-05T20:16:19ZDynamics of the blood plasma proteome during hyperacute HIV-1 infectionJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:97ff1b52-b65c-4b18-ba83-6e949d88777cEnglishJisc Publications RouterNature Research2024Nazziwa, JFreyhult, EHong, MJohansson, EÅrman, FHare, JGounder, KRezeli, MMohanty, TKjellström, SKamali, AKarita, EKilembe, WPrice, MAKaleebu, PAllen, SHunter, ENdung’u, TGilmour, JRowland-Jones, SLSanders, EHassan, ASEsbjörnsson, JThe complex dynamics of protein expression in plasma during hyperacute HIV-1 infection and its relation to acute retroviral syndrome, viral control, and disease progression are largely unknown. Here, we quantify 1293 blood plasma proteins from 157 longitudinally linked plasma samples collected before, during, and after hyperacute HIV-1 infection of 54 participants from four sub-Saharan African countries. Six distinct longitudinal expression profiles are identified, of which four demonstrate a consistent decrease in protein levels following HIV-1 infection. Proteins involved in inflammatory responses, immune regulation, and cell motility are significantly altered during the transition from pre-infection to one month post-infection. Specifically, decreased ZYX and SCGB1A1 levels, and increased LILRA3 levels are associated with increased risk of acute retroviral syndrome; increased NAPA and RAN levels, and decreased ITIH4 levels with viral control; and increased HPN, PRKCB, and ITGB3 levels with increased risk of disease progression. Overall, this study provides insight into early host responses in hyperacute HIV-1 infection, and present potential biomarkers and mechanisms linked to HIV-1 disease progression and viral load.
spellingShingle Nazziwa, J
Freyhult, E
Hong, M
Johansson, E
Årman, F
Hare, J
Gounder, K
Rezeli, M
Mohanty, T
Kjellström, S
Kamali, A
Karita, E
Kilembe, W
Price, MA
Kaleebu, P
Allen, S
Hunter, E
Ndung’u, T
Gilmour, J
Rowland-Jones, SL
Sanders, E
Hassan, AS
Esbjörnsson, J
Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title_full Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title_fullStr Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title_full_unstemmed Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title_short Dynamics of the blood plasma proteome during hyperacute HIV-1 infection
title_sort dynamics of the blood plasma proteome during hyperacute hiv 1 infection
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