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Query: UMLS:C0023241 (
Legionella
)
6,990
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
GDP-bound prenylated Rabs, sequestered by
GDI
(GDP dissociation inhibitor) in the cytosol, are delivered to destined sub-cellular compartment and subsequently activated by GEFs (guanine nucleotide exchange factors) catalysing GDP-to-GTP exchange. The dissociation of
GDI
from Rabs is believed to require a GDF (
GDI
displacement factor). Only two RabGDFs, human PRA-1 and
Legionella
pneumophila SidM/DrrA, have been identified so far and the molecular mechanism of GDF is elusive. Here, we present the structure of a SidM/DrrA fragment possessing dual GEF and GDF activity in complex with Rab1. SidM/DrrA reconfigures the Switch regions of the GTPase domain of Rab1, as eukaryotic GEFs do toward cognate Rabs. Structure-based mutational analyses show that the surface of SidM/DrrA, catalysing nucleotide exchange, is involved in GDI1 displacement from prenylated Rab1:GDP. In comparison with an eukaryotic GEF TRAPP I, this bacterial GEF/GDF exhibits high binding affinity for Rab1 with GDP retained at the active site, which appears as the key feature for the GDF activity of the protein.
...
PMID:Structural insights into the dual nucleotide exchange and GDI displacement activity of SidM/DrrA. 1994 50
Prenylated Rab proteins exist in the cytosol as soluble, high-affinity complexes with
GDI
that need to be disrupted for membrane attachment and targeting of Rab proteins. The
Legionella
pneumophila protein DrrA displaces
GDI
from Rab1:
GDI
complexes, incorporating Rab1 into
Legionella
-containing vacuoles and activating Rab1 by exchanging GDP for GTP. Here, we present the crystal structure of a complex between the GEF domain of DrrA and Rab1 and a detailed kinetic analysis of this exchange. DrrA efficiently catalyzes nucleotide exchange and mimics the general nucleotide exchange mechanism of mammalian GEFs for Ras-like GTPases. We show that the GEF activity of DrrA is sufficient to displace prenylated Rab1 from the Rab1:
GDI
complex. Thus, apparent
GDI
displacement by DrrA is linked directly to nucleotide exchange, suggesting a basic model for
GDI
displacement and specificity of Rab localization that does not require discrete
GDI
displacement activity.
...
PMID:RabGDI displacement by DrrA from Legionella is a consequence of its guanine nucleotide exchange activity. 2006 70
Bacterial pathogens deliver effector proteins with diverse biochemical activities into host cells, thereby modulating various host functions.
Legionella
pneumophila hijacks host vesicle trafficking to avoid phagosome-lysosome fusion, a mechanism that is dependent on the
Legionella
Dot/Icm type IV secretion system. SidM/DrrA, a
Legionella
type IV effector, is important for the interactions of
Legionella
-containing vacuoles with host endoplasmic reticulum-derived vesicles. SidM is the only known protein that catalyzes both the exchange of GDP for GTP and
GDI
displacement from small GTPase Rab1. We determined the crystal structures of SidM alone (residues 317-647) and SidM (residues 193-550) in complex with nucleotide-free WT Rab1. The SidM structure contains an N-terminal helical domain with a potential new function, a Rab1-activation domain, and a C-terminal phosphatidylinositol 4-phosphate-binding P4M domain. The Rab1-activation domain has extensive strong interactions mainly with Rab1 switch I and II regions that undergo substantial conformational changes on SidM binding. Mutations of switch-contacting residues in SidM attenuate both the nucleotide exchange and
GDI
displacement activities. Structural comparisons of Rab1 in the SidM complex with Rab1-GDP and Ypt1-GDP in the
GDI
complex identify key conformational changes that disrupt the nucleotide and
GDI
binding of Rab1. Further biochemical and structural analyses reveal a unique mechanism of coupled GDP release and
GDI
displacement likely triggered by the SidM-induced drastic displacement of switch I of Rab1.
...
PMID:Structural mechanism of host Rab1 activation by the bifunctional Legionella type IV effector SidM/DrrA. 2017 51