The Role of Recombination for the Coevolutionary Dynamics of HIV and the Immune Response


Loading...

Date

2011-02-18

Publication Type

Journal Article

ETH Bibliography

yes

Citations

Altmetric

Data

Abstract

The evolutionary implications of recombination in HIV remain not fully understood. A plausible effect could be an enhancement of immune escape from cytotoxic T lymphocytes (CTLs). In order to test this hypothesis, we constructed a population dynamic model of immune escape in HIV and examined the viral-immune dynamics with and without recombination. Our model shows that recombination (i) increases the genetic diversity of the viral population, (ii) accelerates the emergence of escape mutations with and without compensatory mutations, and (iii) accelerates the acquisition of immune escape mutations in the early stage of viral infection. We see a particularly strong impact of recombination in systems with broad, non-immunodominant CTL responses. Overall, our study argues for the importance of recombination in HIV in allowing the virus to adapt to changing selective pressures as imposed by the immune system and shows that the effect of recombination depends on the immunodominance pattern of effector T cell responses.

Publication status

published

Editor

Book title

Journal / series

Volume

6 (2)

Pages / Article No.

Publisher

PLOS

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Organisational unit

03584 - Bonhoeffer, Sebastian / Bonhoeffer, Sebastian check_circle

Notes

Funding

Related publications and datasets