Related Content
Search Google Scholar for:
More Information
Related Jobs from ScienceCareers
|
Originally published in Science Express on 18 October 2007
Science 9 November 2007: Vol. 318. no. 5852, pp. 974 - 977
DOI: 10.1126/science.1149121
|
|
Reports
A Bifunctional Bacterial Protein Links GDI Displacement to Rab1 Activation
Matthias P. Machner1 and
Ralph R. Isberg1,2*
Rab guanosine triphosphatases (GTPases) regulate vesicle trafficking in eukaryotic cells by reversibly associating with lipid membranes. Inactive Rab GTPases are maintained in the cytosol by binding to GDP-dissociation inhibitor (GDI). It is believed that specialized proteins are required to displace GDI from Rab GTPases before Rab activation by guanosine diphosphate–guanosine 5'-triphosphate (GDP-GTP) exchange factors (GEFs). Here, we found that SidM from Legionella pneumophila could act as both GEF and GDI-displacement factor (GDF) for Rab1. Rab1 released from GDI was inserted into liposomal membranes and was used as a substrate for SidM-mediated nucleotide exchange. During host cell infection, recruitment of Rab1 to Legionella-containing vacuoles depended on the GDF activity of SidM. Thus, GDF and GEF activity can be promoted by a single protein, and GDF activity can coordinate Rab1 recruitment from the GDI-bound pool.
1 Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, MA 02111, USA.
2 Howard Hughes Medical Institute, Tufts University School of Medicine, Boston, MA 02111, USA.
* To whom correspondence should be addressed. E-mail: ralph.isberg{at}tufts.edu
Read the Full Text
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
- Actin Dynamics and Rho GTPases Regulate the Size and Formation of Parasitophorous Vacuoles Containing Coxiella burnetii.
- M. Aguilera, R. Salinas, E. Rosales, S. Carminati, M. I. Colombo, and W. Beron (2009)
Infect. Immun.
77, 4609-4620
| Abstract »
| Full Text »
| PDF »
- New Insights into How the Rho Guanine Nucleotide Dissociation Inhibitor Regulates the Interaction of Cdc42 with Membranes.
- J. L. Johnson, J. W. Erickson, and R. A. Cerione (2009)
J. Biol. Chem.
284, 23860-23871
| Abstract »
| Full Text »
| PDF »
- {sigma}S Controls Multiple Pathways Associated with Intracellular Multiplication of Legionella pneumophila.
- G. Hovel-Miner, S. Pampou, S. P. Faucher, M. Clarke, I. Morozova, P. Morozov, J. J. Russo, H. A. Shuman, and S. Kalachikov (2009)
J. Bacteriol.
191, 2461-2473
| Abstract »
| Full Text »
| PDF »
- Rab1 Guanine Nucleotide Exchange Factor SidM Is a Major Phosphatidylinositol 4-Phosphate-binding Effector Protein of Legionella pneumophila.
- E. Brombacher, S. Urwyler, C. Ragaz, S. S. Weber, K. Kami, M. Overduin, and H. Hilbi (2009)
J. Biol. Chem.
284, 4846-4856
| Abstract »
| Full Text »
| PDF »
- Identification of a Hypervariable Region Containing New Legionella pneumophila Icm/Dot Translocated Substrates by Using the Conserved icmQ Regulatory Signature.
- T. Zusman, E. Degtyar, and G. Segal (2008)
Infect. Immun.
76, 4581-4591
| Abstract »
| Full Text »
| PDF »
- Significant Role for ladC in Initiation of Legionella pneumophila Infection.
- H. J. Newton, F. M. Sansom, J. Dao, C. Cazalet, H. Bruggemann, C. Albert-Weissenberger, C. Buchrieser, N. P. Cianciotto, and E. L. Hartland (2008)
Infect. Immun.
76, 3075-3085
| Abstract »
| Full Text »
| PDF »
- Enzymatic Properties of an Ecto-nucleoside Triphosphate Diphosphohydrolase from Legionella pneumophila: SUBSTRATE SPECIFICITY AND REQUIREMENT FOR VIRULENCE.
- F. M. Sansom, P. Riedmaier, H. J. Newton, M. A. Dunstone, C. E. Muller, H. Stephan, E. Byres, T. Beddoe, J. Rossjohn, P. J. Cowan, et al. (2008)
J. Biol. Chem.
283, 12909-12918
| Abstract »
| Full Text »
| PDF »
|
|