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Published on: September 6, 2019
Paediatric non-progression following grandmother-to-child HIV transmission
M-H Tsai1, M Muenchhoff1, E Adland1
1Department of Paediatrics, University of Oxford, Peter Medawar Building for Pathogen Research, South Parks Road, Oxford, OX1 3SY, UK.
Insights
Human immunodeficiency virus (HIV) non-progressor children may not rely on HLA class I genes for immune control. This study reveals a transmitted viral mutation impacting replication, suggesting a novel mechanism for slow HIV progression in children.
Area of Science:
- Immunology
- Virology
- Genetics
Background:
- Adults with human immunodeficiency virus (HIV) infection show slow disease progression linked to HLA class I genes.
- Mechanisms for slow HIV progression in children are largely unknown and appear independent of HLA class I.
- This study investigates a pediatric HIV non-progressor to understand these mechanisms.
Observation:
- The non-progressor child was infected via grandmother-to-child transmission, unusually.
- Both grandmother and granddaughter shared HLA-B*81:01, but the virus had an L188F mutation in the Gag epitope.
- This L188F mutation abrogated viral replicative capacity in vitro.
Findings:
- The transmitted L188F mutation in the Gag epitope significantly reduced viral fitness.
- The non-progressor child's virus, despite the mutation, replicated efficiently, suggesting compensation.
- This indicates that transmitted viral characteristics, not just host genetics, influence pediatric HIV progression.
Implications:
- Slow HIV progression in children may result from the transmission of low-fitness viral variants.
- Alternatively, HLA-independent host factors may drive slow progression in some pediatric cases.
- Further research is needed to define these HLA-independent mechanisms in pediatric HIV non-progressors.
Background:
In contrast to adult HIV infection, where slow disease progression is strongly linked to immune control of HIV mediated by protective HLA class I molecules such as HLA-B*81:01, the mechanisms by which a minority of HIV-infected children maintain normal-for-age CD4 counts and remain clinically healthy appear to be HLA class I-independent and are largely unknown. To better understand these mechanisms, we here studied a HIV-infected South African female, who remained a non-progressor throughout childhood.
Results:
Phylogenetic analysis of viral sequences in the HIV-infected family members, together with the history of grand-maternal breast-feeding, indicated that, unusually, the non-progressor child had been infected via grandmother-to-child transmission. Although HLA-B*81:01 was expressed by both grandmother and grand-daughter, autologous virus in each subject encoded an escape mutation L188F within the immunodominant HLA-B*81:01-restricted Gag-specific epitope TL9 (TPQDLNTML, Gag 180-188). Since the transmitted virus can influence paediatric and adult HIV disease progression, we investigated the impact of the L188F mutant on replicative capacity. When this variant was introduced into three distinct HIV clones in vitro, viral replicative capacity was abrogated altogether. However, a virus constructed using the gag sequence of the non-progressor child replicated as efficiently as wildtype virus.
Conclusion:
These findings suggest alternative sequences of events: the transmission of the uncompensated low fitness L188F to both children, potentially contributing to slow progression in both, consistent with previous studies indicating that disease progression in children can be influenced by the replicative capacity of the transmitted virus; or the transmission of fully compensated virus, and slow progression here principally the result of HLA-independent host-specific factors, yet to be defined.
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