Preview
Sign-in for full Details 
Sign-in free and Explore the Exciting World of BiomedExperts:
- Over 1.500.000 Profiles
- More than 1.800 Organizations worldwide
- State of the Art Network Visualizations
- Manage your own Profile
- Locate Experts in your Country/Region
- Locate Experts in your 1. and 2. Level Network
- Connect to Experts Worldwide
NetworkView
Suzanne Pfeffer
This is a preview profile on BiomedExperts - the first literature-based scientific social network. It brings the right researchers
together and allows them to collaborate online. Collexis and Dell provide the BiomedExperts network of +1.5 Million pre-calculated profiles
free of charge to researchers worldwide.
Research Profile (preview)
Chemicals & Drugs
Anatomy
Physiology
Living Beings
Phenomena
Sign-in to see full Profile
Network (preview)
11
Soldati, Thierry
6
Ganley, Ian
5
Burguete, Alondra Schweizer
4
Aivazian, Dikran
4
Krise, Jeffrey
4
Schimmöller, F
4
Sivars, Ulf
3
Diaz, Elva
3
Sincock, Paul
3
Itin, C
3
Ulitzur, N
3
Barbero, Pierre
2
Geissler, H
2
Harbury, Pehr
1
Velculescu, Victor
Sign-in to see all Coauthors
Publications
Sign-in to see all Publications
Sign in free and see...
Visualized networks:
See your personal network in
sophisticated graphical views
GeoTargeted Searches:
Locate experts around the world
and connect with global collaborators
Research Profiles:
See the visualized research activity
of experts around the globe
Sign-in to see more
Geonetwork of Suzanne Pfeffer (preview)
Cities where this author has publications
Cities where co-authors of this author have publications
Sign-in to see more
All Publications
-
2009: Nottingham Ryan M; Pfeffer Suzanne R
Defining the boundaries: Rab GEFs and GAPs.
Proceedings of the National Academy of Sciences of the United States of America 2009;106(34):14185-6.
-
2009: Lee Peter L; Kohler Jennifer J; Pfeffer Suzanne R
Association of beta-1,3-N-acetylglucosaminyltransferase 1 and beta-1,4-galactosyltransferase 1, trans-Golgi enzymes involved in coupled poly-N-acetyllactosamine synthesis.
Glycobiology 2009;19(6):655-64.
-
2009: Espinosa Eric J; Calero Monica; Sridevi Khambhampaty; Pfeffer Suzanne R
RhoBTB3: a Rho GTPase-family ATPase required for endosome to Golgi transport.
Cell 2009;137(5):938-48.
-
2009: Hayes Garret L; Brown Frank C; Haas Alexander K; Nottingham Ryan M; Barr Francis A; Pfeffer Suzanne R
Multiple Rab GTPase binding sites in GCC185 suggest a model for vesicle tethering at the trans-Golgi.
Molecular biology of the cell 2009;20(1):209-17.
-
2008: Hayes Garret L; Pfeffer Suzanne R
WHAMMing into the Golgi.
Developmental cell 2008;15(2):171-2.
-
2008: Nottingham Ryan M; Pfeffer Suzanne R
Team effort by TRAPP forces a nucleotide fumble.
Cell 2008;133(7):1141-3.
-
2008: Burguete Alondra Schweizer; Fenn Timothy D; Brunger Axel T; Pfeffer Suzanne R
Rab and Arl GTPase family members cooperate in the localization of the golgin GCC185.
Cell 2008;132(2):286-98.
-
2008: Ganley Ian G; Espinosa Eric; Pfeffer Suzanne R
A syntaxin 10-SNARE complex distinguishes two distinct transport routes from endosomes to the trans-Golgi in human cells.
The Journal of cell biology 2008;180(1):159-72.
-
2007: Sklan Ella H; Serrano Ramon L; Einav Shirit; Pfeffer Suzanne R; Lambright David G; Glenn Jeffrey S
TBC1D20 is a Rab1 GTPase-activating protein that mediates hepatitis C virus replication.
The Journal of biological chemistry 2007;282(50):36354-61.
-
2007: Pfeffer Suzanne R
Unsolved mysteries in membrane traffic.
Annual review of biochemistry 2007;76():629-45.
-
2006: Reddy Jonathan V; Burguete Alondra Schweizer; Sridevi Khambhampaty; Ganley Ian G; Nottingham Ryan M; Pfeffer Suzanne R
A functional role for the GCC185 golgin in mannose 6-phosphate receptor recycling.
Molecular biology of the cell 2006;17(10):4353-63.
-
2006: Aivazian Dikran; Serrano Ramon L; Pfeffer Suzanne
TIP47 is a key effector for Rab9 localization.
The Journal of cell biology 2006;173(6):917-26.
-
2006: Ganley Ian G; Pfeffer Suzanne R
Cholesterol accumulation sequesters Rab9 and disrupts late endosome function in NPC1-deficient cells.
The Journal of biological chemistry 2006;281(26):17890-9.
-
2006: Reddy Jonathan V; Ganley Ian G; Pfeffer Suzanne R
Clues to neuro-degeneration in Niemann-Pick Type C disease from global gene expression profiling.
PloS one 2006;1():e19.
-
2005: Burguete Alondra Schweizer; Harbury Pehr B; Pfeffer Suzanne R
Misincorporation proton-alkyl exchange (MPAX): engineering cysteine probes into proteins.
Current protocols in protein science / editorial board, John E. Coligan ... [et al.] 2005;Chapter 26():Unit26.1.
-
2005: Pfeffer S
A model for Rab GTPase localization.
Biochemical Society transactions 2005;33(Pt 4):627-30.
-
2005: Pfeffer Suzanne R
Structural clues to Rab GTPase functional diversity.
The Journal of biological chemistry 2005;280(16):15485-8.
-
2005: Burguete Alondra Schweizer; Sivars Ulf; Pfeffer Suzanne
Purification and analysis of TIP47 function in Rab9-dependent mannose 6-phosphate receptor trafficking.
Methods in enzymology 2005;403():357-66.
-
2005: Sivars Ulf; Aivazian Dikran; Pfeffer Suzanne
Purification and properties of Yip3/PRA1 as a Rab GDI displacement factor.
Methods in enzymology 2005;403():348-56.
-
2004: Ganley Ian G; Carroll Kate; Bittova Lenka; Pfeffer Suzanne
Rab9 GTPase regulates late endosome size and requires effector interaction for its stability.
Molecular biology of the cell 2004;15(12):5420-30.
-
2004: Pfeffer Suzanne; Aivazian Dikran
Targeting Rab GTPases to distinct membrane compartments.
Nature reviews. Molecular cell biology 2004;5(11):886-96.
-
2004: Burguete Alondra Schweizer; Harbury Pehr B; Pfeffer Suzanne R
In vitro selection and prediction of TIP47 protein-interaction interfaces.
Nature methods 2004;1(1):55-60.
-
2003: Sivars Ulf; Aivazian Dikran; Pfeffer Suzanne R
Yip3 catalyses the dissociation of endosomal Rab-GDI complexes.
Nature 2003;425(6960):856-9.
-
2003: Pfeffer Suzanne
Membrane domains in the secretory and endocytic pathways.
Cell 2003;112(4):507-17.
-
2003: Sincock Paul M; Ganley Ian G; Krise Jeffrey P; Diederichs Sven; Sivars Ulf; O'Connor Brian; Ding Li; Pfeffer Suzanne R
Self-assembly is important for TIP47 function in mannose 6-phosphate receptor transport.
Traffic (Copenhagen, Denmark) 2003;4(1):18-25.
-
2002: Hanna John; Carroll Kate; Pfeffer Suzanne R
Identification of residues in TIP47 essential for Rab9 binding.
Proceedings of the National Academy of Sciences of the United States of America 2002;99(11):7450-4.
-
2002: Barbero Pierre; Bittova Lenka; Pfeffer Suzanne R
Visualization of Rab9-mediated vesicle transport from endosomes to the trans-Golgi in living cells.
The Journal of cell biology 2002;156(3):511-8.
-
2001: Pfeffer S R
Constructing a Golgi complex.
The Journal of cell biology 2001;155(6):873-5.
-
2001: Pfeffer S R
Rab GTPases: specifying and deciphering organelle identity and function.
Trends in cell biology 2001;11(12):487-91.
-
2001: Pfeffer S
Vesicle tethering factors united.
Molecular cell 2001;8(4):729-30.
-
2001: Barbero P; Buell E; Zulley S; Pfeffer S R
TIP47 is not a component of lipid droplets.
The Journal of biological chemistry 2001;276(26):24348-51.
-
2001: Carroll K S; Hanna J; Simon I; Krise J; Barbero P; Pfeffer S R
Role of Rab9 GTPase in facilitating receptor recruitment by TIP47.
Science (New York, N.Y.) 2001;292(5520):1373-6.
-
2001: Pfeffer S R
Membrane transport: retromer to the rescue.
Current biology : CB 2001;11(3):R109-11.
-
2000: Orsel J G; Sincock P M; Krise J P; Pfeffer S R
Recognition of the 300-kDa mannose 6-phosphate receptor cytoplasmic domain by 47-kDa tail-interacting protein.
Proceedings of the National Academy of Sciences of the United States of America 2000;97(16):9047-51.
-
2000: Krise J P; Sincock P M; Orsel J G; Pfeffer S R
Quantitative analysis of TIP47-receptor cytoplasmic domain interactions: implications for endosome-to-trans Golgi network trafficking.
The Journal of biological chemistry 2000;275(33):25188-93.
-
1999: Itin C; Ulitzur N; Mühlbauer B; Pfeffer S R
Mapmodulin, cytoplasmic dynein, and microtubules enhance the transport of mannose 6-phosphate receptors from endosomes to the trans-golgi network.
Molecular biology of the cell 1999;10(7):2191-7.
-
1999: Pfeffer S R
Transport-vesicle targeting: tethers before SNAREs.
Nature cell biology 1999;1(1):E17-22.
-
1998: Schimmöller F; Díaz E; Mühlbauer B; Pfeffer S R
Characterization of a 76 kDa endosomal, multispanning membrane protein that is highly conserved throughout evolution.
Gene 1998;216(2):311-8.
-
1998: Schimmöller F; Simon I; Pfeffer S R
Rab GTPases, directors of vesicle docking.
The Journal of biological chemistry 1998;273(35):22161-4.
-
1998: Díaz E; Pfeffer S R
TIP47: a cargo selection device for mannose 6-phosphate receptor trafficking.
Cell 1998;93(3):433-43.
-
1997: Ulitzur N; Rancaño C; Pfeffer S R
Biochemical characterization of mapmodulin, a protein that binds microtubule-associated proteins.
The Journal of biological chemistry 1997;272(48):30577-82.
-
1997: Itin C; Rancaño C; Nakajima Y; Pfeffer S R
A novel assay reveals a role for soluble N-ethylmaleimide-sensitive fusion attachment protein in mannose 6-phosphate receptor transport from endosomes to the trans Golgi network.
The Journal of biological chemistry 1997;272(44):27737-44.
-
1997: Díaz E; Schimmöller F; Pfeffer S R
A novel Rab9 effector required for endosome-to-TGN transport.
The Journal of cell biology 1997;138(2):283-90.
-
1997: Ulitzur N; Humbert M; Pfeffer S R
Mapmodulin: a possible modulator of the interaction of microtubule-associated proteins with microtubules.
Proceedings of the National Academy of Sciences of the United States of America 1997;94(10):5084-9.
-
1997: Nakajima Y; Pfeffer S R
Phosphatidylinositol 3-kinase is not required for recycling of mannose 6-phosphate receptors from late endosomes to the trans-Golgi network.
Molecular biology of the cell 1997;8(4):577-82.
-
1997: Schimmöller F; Itin C; Pfeffer S
Vesicle traffic: get your coat!
Current biology : CB 1997;7(4):R235-7.
-
1997: Dirac-Svejstrup A B; Sumizawa T; Pfeffer S R
Identification of a GDI displacement factor that releases endosomal Rab GTPases from Rab-GDI.
The EMBO journal 1997;16(3):465-72.
-
1996: Pfeffer S R
Transport vesicle docking: SNAREs and associates.
Annual review of cell and developmental biology 1996;12():441-61.
-
1995: Soldati T; Rancaño C; Geissler H; Pfeffer S R
Rab7 and Rab9 are recruited onto late endosomes by biochemically distinguishable processes.
The Journal of biological chemistry 1995;270(43):25541-8.
-
1995: Pfeffer S R; Dirac-Svejstrup A B; Soldati T
Rab GDP dissociation inhibitor: putting rab GTPases in the right place.
The Journal of biological chemistry 1995;270(29):17057-9.
-
1995: Shapiro A D; Pfeffer S R
Quantitative analysis of the interactions between prenyl Rab9, GDP dissociation inhibitor-alpha, and guanine nucleotides.
The Journal of biological chemistry 1995;270(19):11085-90.
-
1995: Pfeffer S R; Soldati T; Geissler H; Rancaño C; Dirac-Svejstrup B
Selective membrane recruitment of Rab GTPases.
Cold Spring Harbor symposia on quantitative biology 1995;60():221-7.
-
1995: Soldati T; Shapiro A D; Pfeffer S R
Reconstitution of Rab9 endosomal targeting and nucleotide exchange using purified Rab9-GDP dissociation inhibitor complexes and endosome-enriched membranes.
Methods in enzymology 1995;257():253-9.
-
1995: Riederer M A; Soldati T; Dirac-Svejstrup A B; Pfeffer S R
Expression of Rab9 protein in Escherichia coli: purification and isoprenylation in vitro.
Methods in enzymology 1995;257():15-21.
-
1994: Pfeffer S R
Rab GTPases: master regulators of membrane trafficking.
Current opinion in cell biology 1994;6(4):522-6.
-
1994: Dirac-Svejstrup A B; Soldati T; Shapiro A D; Pfeffer S R
Rab-GDI presents functional Rab9 to the intracellular transport machinery and contributes selectivity to Rab9 membrane recruitment.
The Journal of biological chemistry 1994;269(22):15427-30.
-
1994: Soldati T; Shapiro A D; Svejstrup A B; Pfeffer S R
Membrane targeting of the small GTPase Rab9 is accompanied by nucleotide exchange.
Nature 1994;369(6475):76-8.
-
1994: Riederer M A; Soldati T; Shapiro A D; Lin J; Pfeffer S R
Lysosome biogenesis requires Rab9 function and receptor recycling from endosomes to the trans-Golgi network.
The Journal of cell biology 1994;125(3):573-82.
-
1994: Dintzis S M; Velculescu V E; Pfeffer S R
Receptor extracellular domains may contain trafficking information. Studies of the 300-kDa mannose 6-phosphate receptor.
The Journal of biological chemistry 1994;269(16):12159-66.
-
1994: Pfeffer S R
Clues to brain function from bakers' yeast.
Proceedings of the National Academy of Sciences of the United States of America 1994;91(6):1987-8.
-
1993: Shapiro A D; Riederer M A; Pfeffer S R
Biochemical analysis of rab9, a ras-like GTPase involved in protein transport from late endosomes to the trans Golgi network.
The Journal of biological chemistry 1993;268(10):6925-31.
-
1993: Soldati T; Riederer M A; Pfeffer S R
Rab GDI: a solubilizing and recycling factor for rab9 protein.
Molecular biology of the cell 1993;4(4):425-34.
-
1993: Lombardi D; Soldati T; Riederer M A; Goda Y; Zerial M; Pfeffer S R
Rab9 functions in transport between late endosomes and the trans Golgi network.
The EMBO journal 1993;12(2):677-82.
-
1992: Corthésy-Theulaz I; Pauloin A; Pfeffer S R
Cytoplasmic dynein participates in the centrosomal localization of the Golgi complex.
The Journal of cell biology 1992;118(6):1333-45.
-
1992: Corthésy-Theulaz I; Pfeffer S R
Microtubule-mediated Golgi capture by semiintact Chinese hamster ovary cells.
Methods in enzymology 1992;219():159-65.
-
1992: Goda Y; Soldati T; Pfeffer S R
Transport from late endosomes to trans-Golgi network in semiintact cell extracts.
Methods in enzymology 1992;219():153-9.
-
1991: Pfeffer S R
Mannose-6-phosphate receptors and their role in protein sorting along the pathway to lysosomes.
Cell biophysics 1991;19(1-3):131-40.
-
1991: Goda Y; Pfeffer S R
Identification of a novel, N-ethylmaleimide-sensitive cytosolic factor required for vesicular transport from endosomes to the trans-Golgi network in vitro.
The Journal of cell biology 1991;112(5):823-31.
-
1991: Pfeffer S R
Targeting of proteins to the lysosome.
Current topics in microbiology and immunology 1991;170():43-65.
-
1990: Chege N W; Pfeffer S R
Compartmentation of the Golgi complex: brefeldin-A distinguishes trans-Golgi cisternae from the trans-Golgi network.
The Journal of cell biology 1990;111(3):893-9.
-
1990: Draper R K; Goda Y; Brodsky F M; Pfeffer S R
Antibodies to clathrin inhibit endocytosis but not recycling to the trans Golgi network in vitro.
Science (New York, N.Y.) 1990;248(4962):1539-41.
-
1990: Pfeffer S R
A budding and fusing journey through the secretory pathway. Genetic and In Vitro Analysis of Cell Compartmentalization: A UCLA symposium, Taos, NM, USA, February 3-9, 1990.
The New biologist 1990;2(5):430-4.
-
1990: Dintzis S M; Pfeffer S R
The mannose 6-phosphate receptor cytoplasmic domain is not sufficient to alter the cellular distribution of a chimeric EGF receptor.
The EMBO journal 1990;9(1):77-84.
-
1989: Goda Y; Pfeffer S R
Cell-free systems to study vesicular transport along the secretory and endocytic pathways.
The FASEB journal : official publication of the Federation of American Societies for Experimental Biology 1989;3(13):2488-95.
-
1988: Goda Y; Pfeffer S R
Selective recycling of the mannose 6-phosphate/IGF-II receptor to the trans Golgi network in vitro.
Cell 1988;55(2):309-20.
-
1988: Pfeffer S R
Mannose 6-phosphate receptors and their role in targeting proteins to lysosomes.
The Journal of membrane biology 1988;103(1):7-16.
-
1988: Pfeffer S R; Goda Y; Chege N W
Intracellular transport of the mannose-6-phosphate receptor.
Progress in clinical and biological research 1988;270():365-75.
Sign-in to see more