David D. Sabatini

Affiliations: 
New York University School of Medicine, New York, NY, United States 
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"David Sabatini"
Mean distance: 15.92 (cluster 11)
 
SNBCP
Cross-listing: Cell Biology Tree

Parents

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Eduardo De Robertis research assistant University of Buenos Aires, Faculty of Medicine
George E. Palade grad student 1961-1966 Rockefeller
 (On the attachment of ribosomes to microbial membranes)
Philip Siekevitz grad student 1961-1966 Rockefeller

Children

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Nica Borgese grad student 1971-1972 NYU School of Medicine (Cell Biology Tree)
Mark R. Philips post-doc NYU School of Medicine (Chemistry Tree)
Enrique Rodriguez-Boulan post-doc NYU School of Medicine (Cell Biology Tree)
David R. Colman post-doc 1978-1983 NYU School of Medicine

Collaborators

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Günter Blobel collaborator 1970-1972 Rockefeller (Cell Biology Tree)
BETA: Related publications

Publications

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Wankel B, Ouyang J, Guo X, et al. (2016) Sequential and compartmentalized action of Rabs, SNAREs and MAL in the apical delivery of fusiform vesicles in urothelial umbrella cells. Molecular Biology of the Cell
Lynch SJ, Snitkin H, Gumper I, et al. (2015) The differential palmitoylation states of N-Ras and H-Ras determine their distinct Golgi subcompartment localizations. Journal of Cellular Physiology. 230: 610-9
Sabatini DD. (2014) Subcellular fractionation of rough microsomes. Cold Spring Harbor Protocols. 2014: 932-4
Sabatini DD. (2014) Preparation of crude rough microsomes from tissue culture cells. Cold Spring Harbor Protocols. 2014: 980-7
Sabatini DD. (2014) Preparation of crude rough microsomes from dog pancreas. Cold Spring Harbor Protocols. 2014: 852-5
Sabatini DD. (2014) Preparation of rough microsomes from rat liver. Cold Spring Harbor Protocols. 2014: 845-51
Sabatini DD, Adesnik M. (2013) Christian de Duve: Explorer of the cell who discovered new organelles by using a centrifuge. Proceedings of the National Academy of Sciences of the United States of America. 110: 13234-5
Dobrowolski R, Vick P, Ploper D, et al. (2012) Presenilin deficiency or lysosomal inhibition enhances Wnt signaling through relocalization of GSK3 to the late-endosomal compartment. Cell Reports. 2: 1316-28
Taelman VF, Dobrowolski R, Plouhinec JL, et al. (2010) Wnt signaling requires sequestration of glycogen synthase kinase 3 inside multivesicular endosomes. Cell. 143: 1136-48
Guo X, Tu L, Gumper I, et al. (2009) Involvement of vps33a in the fusion of uroplakin-degrading multivesicular bodies with lysosomes. Traffic (Copenhagen, Denmark). 10: 1350-61
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