Exploring the Complexity of the HIV-1 Fitness Landscape
Исследование сложности ландшафта приспособленности ВИЧ-1
2012-03-08
SCID: 54.1/vdxrfzaf
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HIV-1 fitness landscapeadaptive processesantiretroviral drugsepistasisreplicative fitness
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Abstract (AI)
Although fitness landscapes are central to evolutionary theory, so far no biologically realistic examples for large-scale fitness landscapes have been described. Most currently available biological examples are restricted to very few loci or alleles and therefore do not capture the high dimensionality characteristic of real fitness landscapes. Here we analyze large-scale fitness landscapes that are based on predictive models for in vitro replicative fitness of HIV-1. We find that these landscapes are characterized by large correlation lengths, considerable neutrality, and high ruggedness and that these properties depend only weakly on whether fitness is measured in the absence or presence of different antiretrovirals. Accordingly, adaptive processes on these landscapes depend sensitively on the initial conditions. While the relative extent to which mutations affect fitness on their own (main effects) or in combination with other mutations (epistasis) is a strong determinant of these properties, the fitness landscape of HIV-1 is considerably less rugged, less neutral, and more correlated than expected from the distribution of main effects and epistatic interactions alone. Overall this study confirms theoretical conjectures about the complexity of biological fitness landscapes and the importance of the high dimensionality of the genetic space in which adaptation takes place.
Key Findings
1
Adaptive trajectories depend sensitively on initial conditions because of the landscapes’ complex structure.
2
Predictive HIV-1 replicative-fitness models enable analysis of biologically realistic, large-scale and high-dimensional fitness landscapes.
3
The HIV-1 landscapes exhibit large correlation lengths, substantial neutrality, and high ruggedness, with these properties changing only weakly under different antiretroviral conditions.
4
The balance between mutation main effects and epistatic interactions strongly influences landscape properties, but HIV-1 is less rugged, less neutral, and more correlated than these effects alone predict.
5
The findings support theoretical predictions that biological fitness landscapes are complex and that high-dimensional genetic spaces substantially shape adaptation.
Research Object
large-scale HIV-1 fitness landscapes based on predictive models of in vitro replicative fitness
Research Subject
the complexity and adaptive properties of HIV-1 fitness landscapes, including correlation length, neutrality, ruggedness, dependence on initial conditions, and the roles of main effects and epistasis
Publication Details
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2012-03-08
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