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Journal of Structural Biology
|
April 8, 2009
Biomimetic membrane systems to study cellular organization
Martin Loose, Petra Schwille
European Journal of Cell Biology
|
January 13, 2024
A dynamic duo: Understanding the roles of FtsZ and FtsA for Escherichia coli cell division through in vitro approaches
Philipp Radler, Martin Loose
Nature Cell Biology
|
December 10, 2013
The bacterial cell division proteins FtsA and FtsZ self-organize into dynamic cytoskeletal patterns
Martin Loose, Timothy J Mitchison
Annual Review of Biophysics
|
May 7, 2011
Protein self-organization: lessons from the min system
Martin Loose, Karsten Kruse, Petra Schwille
Sub-Cellular Biochemistry
|
May 14, 2017
Reconstitution of Protein Dynamics Involved in Bacterial Cell Division
Martin Loose, Katja Zieske, Petra Schwille
Developmental Cell
|
July 7, 2023
The membrane surface as a platform that organizes cellular and biochemical processes
Thomas A Leonard, Martin Loose, Sascha Martens
Methods in Cell Biology
|
May 20, 2020
Computational analysis of filament polymerization dynamics in cytoskeletal networks
Paulo Caldas, Philipp Radler, Christoph Sommer, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 14, 2021
In vitro reconstitution reveals phosphoinositides as cargo-release factors and activators of the ARF6 GAP ADAP1
Christian Duellberg, Albert Auer, Nikola Canigova, et al.
Nature Structural & Molecular Biology
|
April 26, 2011
Min protein patterns emerge from rapid rebinding and membrane interaction of MinE
Martin Loose, Elisabeth Fischer-Friedrich, Christoph Herold, et al.
Science (New York, N.Y.)
|
May 10, 2008
Spatial regulators for bacterial cell division self-organize into surface waves in vitro
Martin Loose, Elisabeth Fischer-Friedrich, Jonas Ries, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 35) with videos related to
Sort By:
Page
of 4
Journal of Structural Biology
|
April 8, 2009
Biomimetic membrane systems to study cellular organization
Martin Loose, Petra Schwille
European Journal of Cell Biology
|
January 13, 2024
A dynamic duo: Understanding the roles of FtsZ and FtsA for Escherichia coli cell division through in vitro approaches
Philipp Radler, Martin Loose
Nature Cell Biology
|
December 10, 2013
The bacterial cell division proteins FtsA and FtsZ self-organize into dynamic cytoskeletal patterns
Martin Loose, Timothy J Mitchison
Annual Review of Biophysics
|
May 7, 2011
Protein self-organization: lessons from the min system
Martin Loose, Karsten Kruse, Petra Schwille
Sub-Cellular Biochemistry
|
May 14, 2017
Reconstitution of Protein Dynamics Involved in Bacterial Cell Division
Martin Loose, Katja Zieske, Petra Schwille
Developmental Cell
|
July 7, 2023
The membrane surface as a platform that organizes cellular and biochemical processes
Thomas A Leonard, Martin Loose, Sascha Martens
Methods in Cell Biology
|
May 20, 2020
Computational analysis of filament polymerization dynamics in cytoskeletal networks
Paulo Caldas, Philipp Radler, Christoph Sommer, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 14, 2021
In vitro reconstitution reveals phosphoinositides as cargo-release factors and activators of the ARF6 GAP ADAP1
Christian Duellberg, Albert Auer, Nikola Canigova, et al.
Nature Structural & Molecular Biology
|
April 26, 2011
Min protein patterns emerge from rapid rebinding and membrane interaction of MinE
Martin Loose, Elisabeth Fischer-Friedrich, Christoph Herold, et al.
Science (New York, N.Y.)
|
May 10, 2008
Spatial regulators for bacterial cell division self-organize into surface waves in vitro
Martin Loose, Elisabeth Fischer-Friedrich, Jonas Ries, et al.
Page
of 4