4.7 Article

Glutathione facilitates enterovirus assembly by binding at a druggable pocket

Journal

COMMUNICATIONS BIOLOGY
Volume 3, Issue 1, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s42003-019-0722-x

Keywords

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Funding

  1. Wellcome [ALR00750, 101122/Z/13/Z]
  2. UK Medical Research Council [MR/N00065X/1]
  3. Wellcome Trust [101122/Z/13/Z] Funding Source: Wellcome Trust
  4. MRC [MR/N00065X/1] Funding Source: UKRI

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Helen Duyvesteyn et al. present a high-resolution structural analysis of gluthathione binding to an enterovirus capsid. They show that glutathione binds to a surface cavity, promoting assembly of the viral capsid, and providing a potential therapeutic target. Enteroviruses cause a range of human and animal diseases, some life-threatening, but there remain no licenced anti-enterovirus drugs. However, a benzene-sulfonamide derivative and related compounds have been shown recently to block infection of a range of enteroviruses by binding the capsid at a positively-charged surface depression conserved across many enteroviruses. It has also been established that glutathione is essential for the assembly of many enteroviruses, interacting with the capsid proteins to facilitate the formation of the pentameric assembly intermediate, although the mechanism is unknown. Here we show, by high resolution structure analyses of enterovirus F3, that reduced glutathione binds to the same interprotomer pocket as the benzene-sulfonamide derivative. Bound glutathione makes strong interactions with adjacent protomers, thereby explaining the underlying biological role of this druggable binding pocket and delineating the pharmacophore for potential antivirals.

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