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The EMBO Journal
|
November 1, 1995
The GTPase Ypt7p of Saccharomyces cerevisiae is required on both partner vacuoles for the homotypic fusion step of vacuole inheritance
A Haas, D Scheglmann, T Lazar, et al.
Cell
|
September 23, 1988
ProOmpA is stabilized for membrane translocation by either purified E. coli trigger factor or canine signal recognition particle
E Crooke, B Guthrie, S Lecker, et al.
The EMBO Journal
|
December 16, 2000
Sequential action of two GTPases to promote vacuole docking and fusion
G Eitzen, E Will, D Gallwitz, et al.
The Journal of Cell Biology
|
February 14, 1998
A vacuolar v-t-SNARE complex, the predominant form in vivo and on isolated vacuoles, is disassembled and activated for docking and fusion
C Ungermann, B J Nichols, H R Pelham, et al.
Cell
|
December 11, 1997
Biogenesis of the gram-negative bacterial envelope
F Duong, J Eichler, A Price, et al.
Methods in Cell Biology
|
January 1, 1991
Preprotein translocase of Escherichia coli: solubilization, purification, and reconstitution of the integral membrane subunits SecY/E
A J Driessen, L Brundage, J P Hendrick, et al.
Cell
|
December 29, 1995
SecA membrane cycling at SecYEG is driven by distinct ATP binding and hydrolysis events and is regulated by SecD and SecF
A Economou, J A Pogliano, J Beckwith, et al.
Journal of Bacteriology
|
October 1, 1989
Use of phoA fusions to study the topology of the Escherichia coli inner membrane protein leader peptidase
J L San Millan, D Boyd, R Dalbey, et al.
Molecular Biology of the Cell
|
March 11, 2000
Phosphatidylinositol 4,5-bisphosphate regulates two steps of homotypic vacuole fusion
A Mayer, D Scheglmann, S Dove, et al.
Cell
|
October 19, 1990
The binding cascade of SecB to SecA to SecY/E mediates preprotein targeting to the E. coli plasma membrane
F U Hartl, S Lecker, E Schiebel, et al.
Page
of 14
Search research articles
Search
Showing results (121-130 of 138) with videos related to
Sort By:
Page
of 14
The EMBO Journal
|
November 1, 1995
The GTPase Ypt7p of Saccharomyces cerevisiae is required on both partner vacuoles for the homotypic fusion step of vacuole inheritance
A Haas, D Scheglmann, T Lazar, et al.
Cell
|
September 23, 1988
ProOmpA is stabilized for membrane translocation by either purified E. coli trigger factor or canine signal recognition particle
E Crooke, B Guthrie, S Lecker, et al.
The EMBO Journal
|
December 16, 2000
Sequential action of two GTPases to promote vacuole docking and fusion
G Eitzen, E Will, D Gallwitz, et al.
The Journal of Cell Biology
|
February 14, 1998
A vacuolar v-t-SNARE complex, the predominant form in vivo and on isolated vacuoles, is disassembled and activated for docking and fusion
C Ungermann, B J Nichols, H R Pelham, et al.
Cell
|
December 11, 1997
Biogenesis of the gram-negative bacterial envelope
F Duong, J Eichler, A Price, et al.
Methods in Cell Biology
|
January 1, 1991
Preprotein translocase of Escherichia coli: solubilization, purification, and reconstitution of the integral membrane subunits SecY/E
A J Driessen, L Brundage, J P Hendrick, et al.
Cell
|
December 29, 1995
SecA membrane cycling at SecYEG is driven by distinct ATP binding and hydrolysis events and is regulated by SecD and SecF
A Economou, J A Pogliano, J Beckwith, et al.
Journal of Bacteriology
|
October 1, 1989
Use of phoA fusions to study the topology of the Escherichia coli inner membrane protein leader peptidase
J L San Millan, D Boyd, R Dalbey, et al.
Molecular Biology of the Cell
|
March 11, 2000
Phosphatidylinositol 4,5-bisphosphate regulates two steps of homotypic vacuole fusion
A Mayer, D Scheglmann, S Dove, et al.
Cell
|
October 19, 1990
The binding cascade of SecB to SecA to SecY/E mediates preprotein targeting to the E. coli plasma membrane
F U Hartl, S Lecker, E Schiebel, et al.
Page
of 14