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Asymmetric conformational maturation of HIV-1 reverse transcriptase.

Xunhai Zheng | Lalith Perera | Geoffrey A Mueller | Eugene F DeRose | Robert E London
eLife | 2015

HIV-1 reverse transcriptase utilizes a metamorphic polymerase domain that is able to adopt two alternate structures that fulfill catalytic and structural roles, thereby minimizing its coding requirements. This ambiguity introduces folding challenges that are met by a complex maturation process. We have investigated this conformational maturation using NMR studies of methyl-labeled RT for the slower processes in combination with molecular dynamics simulations for rapid processes. Starting from an inactive conformation, the p66 precursor undergoes a unimolecular isomerization to a structure similar to its active form, exposing a large hydrophobic surface that facilitates initial homodimer formation. The resulting p66/p66' homodimer exists as a conformational heterodimer, after which a series of conformational adjustments on different time scales can be observed. Formation of the inter-subunit RH:thumb' interface occurs at an early stage, while maturation of the connection' and unfolding of the RH' domains are linked and occur on a much slower time scale.

Pubmed ID: 26037594

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Associated grants

  • Agency: Intramural NIH HHS, United States
    Id: Z01 ES050147
  • Agency: PHS HHS, United States
    Id: HHSN273200700046U

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AMBER (tool)

RRID:SCR_016151

Software toolkit for the comparative assessment of genome reconstructions from metagenome benchmark datasets. It provides performance metrics, results rankings, and comparative visualizations for assessing multiple programs or parameter effects.

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