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Probing the druggability of membrane-bound Rab5 by molecular dynamics simulations.


ABSTRACT: Rab5 is a small GTPase and a key regulator in early endosomal trafficking. Rab5 and its effectors are involved in a large number of infectious diseases and certain types of cancer. We performed µs atomistic molecular dynamics simulations of inactive and active full-length Rab5 anchored to a complex model bilayer with composition of the early endosome membrane. Direct interactions between the Rab5 G domain and the bilayer were observed. We found two dominant nucleotide-dependent orientations characterised by a different accessibility of the switch regions. The "buried switch" orientation was mainly associated with inactive Rab5 accompanied with a rather extended structure of the hypervariable C-terminal region. Active Rab5 preferred an orientation in which the switch regions are accessible

SUBMITTER: Edler E 

PROVIDER: S-EPMC6010109 | biostudies-literature | 2017 Dec

REPOSITORIES: biostudies-literature

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