AI Article Synopsis

  • Rab GTPases play a crucial role in controlling intracellular vesicle movement and are often targeted by bacteria for modification.
  • During infection, the bacteria secrete a protease called GtgE that specifically cleaves the Rab32 GTPase, altering its structural flexibility.
  • This cleavage not only allows cleaved Rab32 to still bind to its GDP dissociation inhibitor (GDI) but also disrupts its interaction with an effector protein, VARP, indicating that the effects of Rab32 cleavage are complex rather than simply destructive.

Article Abstract

Rab GTPases are central regulators of intracellular vesicular trafficking. They are frequently targeted by bacterial pathogens through post-translational modifications. secretes the cysteine protease GtgE during infection, leading to a regioselective proteolytic cleavage of the regulatory switch I loop in the small GTPases of the Rab32 subfamily. Here, using a combination of biochemical methods, molecular dynamics simulations, NMR spectroscopy, and single-pair Förster resonance energy transfer, we demonstrate that the cleavage of Rab32 causes a local increase of conformational flexibility in both switch regions. Cleaved Rab32 maintains its ability to interact with the GDP dissociation inhibitor (GDI). Interestingly, the Rab32 cleavage enables GDI binding also with an active GTP-bound Rab32 . Furthermore, the Rab32 proteolysis provokes disturbance in the interaction with its downstream effector VARP. Thus, the proteolysis of Rab32 is not a globally degradative mechanism but affects various biochemical and structural properties of the GTPase in a diverse manner.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7779776PMC
http://dx.doi.org/10.1016/j.isci.2020.101940DOI Listing

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