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The influence of macromolecular crowding on HIV-1 protease internal dynamics.


ABSTRACT: High macromolecular concentrations, or crowded conditions, have been shown to affect a wide variety of molecular processes, including diffusion, association and dissociation, and protein folding and stability. Here, we model the effect of macromolecular crowding on the internal dynamics of a protein, HIV-1 protease, using Brownian dynamics simulations. HIV-1 protease possesses a pair of flaps which are postulated to open in the early stages of its catalytic mechanism. Compared to low concentrations, close-packed concentrations of repulsive crowding agents are found to significantly reduce the fraction of time that the protease flaps are open. Macromolecular crowding is likely to have a major effect on in vivo enzyme activity, and may play an important regulatory role in the viral life cycle.

SUBMITTER: Minh DD 

PROVIDER: S-EPMC2525809 | biostudies-literature | 2006 May

REPOSITORIES: biostudies-literature

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The influence of macromolecular crowding on HIV-1 protease internal dynamics.

Minh David D L DD   Chang Chia-en CE   Trylska Joanna J   Tozzini Valentina V   McCammon J Andrew JA  

Journal of the American Chemical Society 20060501 18


High macromolecular concentrations, or crowded conditions, have been shown to affect a wide variety of molecular processes, including diffusion, association and dissociation, and protein folding and stability. Here, we model the effect of macromolecular crowding on the internal dynamics of a protein, HIV-1 protease, using Brownian dynamics simulations. HIV-1 protease possesses a pair of flaps which are postulated to open in the early stages of its catalytic mechanism. Compared to low concentrati  ...[more]

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