The influence of N-linked glycans on the molecular dynamics of the HIV-1 gp120 V3 loop
The influence of N-linked glycans on the molecular dynamics of the HIV-1 gp120 V3 loop
N-linked glycans attached to specific amino acids of the gp120 envelope trimer of a HIV virion can modulate the binding affinity of gp120 to CD4, influence coreceptor tropism, and play an important role in neutralising antibody responses. Because of the challenges associated with crystallising fully glycosylated proteins, most structural investigations have focused on describing the features of a non-glycosylated HIV-1 gp120 protein. Here, we use a computational approach to determine the influence of N-linked glycans on the dynamics of the HIV-1 gp120 protein and, in particular, the V3 loop. We compare the conformational dynamics of a non-glycosylated gp120 structure to that of two glycosylated gp120 structures, one with a single, and a second with five, covalently linked high-mannose glycans. Our findings provide a clear illustration of the significant effect that N-linked glycosylation has on the temporal and spatial properties of the underlying protein structure. We find that glycans surrounding the V3 loop modulate its dynamics, conferring to the loop a marked propensity towards a more narrow conformation relative to its non-glycosylated counterpart. The conformational effect on the V3 loop provides further support for the suggestion that N-linked glycosylation plays a role in determining HIV-1 coreceptor tropism.
Wood, Natasha T.
84355fab-b3ca-4dd5-bd13-3ff635852381
Fadda, Elisa
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Davis, Robert
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Grant, Oliver C.
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Martin, Joanne C.
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Woods, Robert J.
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Travers, Simon A.
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26 November 2013
Wood, Natasha T.
84355fab-b3ca-4dd5-bd13-3ff635852381
Fadda, Elisa
11ba1755-9585-44aa-a38e-a8bcfd766abb
Davis, Robert
bf639448-5caa-49f2-9297-47709f741f89
Grant, Oliver C.
fa8de877-5a52-4160-8352-3e0ac6f74d57
Martin, Joanne C.
a3f81d9c-8b5a-4278-a378-a024278905bb
Woods, Robert J.
e3e3113b-203f-41ee-8aeb-92db4882c3ca
Travers, Simon A.
f42c1448-f477-4968-acc1-3eb0f095c2b0
Wood, Natasha T., Fadda, Elisa, Davis, Robert, Grant, Oliver C., Martin, Joanne C., Woods, Robert J. and Travers, Simon A.
(2013)
The influence of N-linked glycans on the molecular dynamics of the HIV-1 gp120 V3 loop.
PLoS ONE, 8 (11), [e80301].
(doi:10.1371/journal.pone.0080301).
Abstract
N-linked glycans attached to specific amino acids of the gp120 envelope trimer of a HIV virion can modulate the binding affinity of gp120 to CD4, influence coreceptor tropism, and play an important role in neutralising antibody responses. Because of the challenges associated with crystallising fully glycosylated proteins, most structural investigations have focused on describing the features of a non-glycosylated HIV-1 gp120 protein. Here, we use a computational approach to determine the influence of N-linked glycans on the dynamics of the HIV-1 gp120 protein and, in particular, the V3 loop. We compare the conformational dynamics of a non-glycosylated gp120 structure to that of two glycosylated gp120 structures, one with a single, and a second with five, covalently linked high-mannose glycans. Our findings provide a clear illustration of the significant effect that N-linked glycosylation has on the temporal and spatial properties of the underlying protein structure. We find that glycans surrounding the V3 loop modulate its dynamics, conferring to the loop a marked propensity towards a more narrow conformation relative to its non-glycosylated counterpart. The conformational effect on the V3 loop provides further support for the suggestion that N-linked glycosylation plays a role in determining HIV-1 coreceptor tropism.
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Published date: 26 November 2013
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Local EPrints ID: 499774
URI: http://eprints.soton.ac.uk/id/eprint/499774
ISSN: 1932-6203
PURE UUID: d65e7ae1-6bec-4b57-9cf3-0dd79026937e
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Date deposited: 03 Apr 2025 16:47
Last modified: 04 Apr 2025 02:10
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Contributors
Author:
Natasha T. Wood
Author:
Elisa Fadda
Author:
Robert Davis
Author:
Oliver C. Grant
Author:
Joanne C. Martin
Author:
Robert J. Woods
Author:
Simon A. Travers
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