AbstractThe bacterial cytoskeleton guides the synthesis of cell wall and thus regulates cell shape. Because spatial patterning of the bacterial cytoskeleton is critical to the proper control of cell shape, it is important to ask how the cytoskeleton spatially self-organizes in the first place. In this work, we develop a quantitative model to account for the various spatial patterns adopted by bacterial cytoskeletal proteins, especially the orientation and length of cytoskeletal filaments such as FtsZ and MreB in rod-shaped cells. We show that the combined mechanical energy of membrane bending, membrane pinning, and filament bending of a membrane-attached cytoskeletal filament can be sufficient to prescribe orientation, e.g., circumferential...
To divide, bacteria must constrict their membranes against significant force from turgor pressure. A...
Bacteria have remarkably robust cell shape control mechanisms. For example, cell diameter only varie...
Prokaryotes come in a wide variety of shapes, determined largely by natural selection, physical cons...
AbstractThe bacterial cytoskeleton guides the synthesis of cell wall and thus regulates cell shape. ...
AbstractIn bacteria, cytoskeletal filament bundles such as MreB control the cell morphology and dete...
AbstractA recent theoretical article provided a mechanical explanation for the formation of cytoskel...
AbstractSeveral bacterial proteins have been shown to polymerize into coils or rings on cell membran...
Prokaryotes come in a wide variety of shapes, determined largely by natural selection, physical cons...
Cell shape matters across the kingdoms of life, and cells have the remarkable capacity to define and...
The shape of animal cells is in controlled by a network of filamentous polymers called the cytoskele...
The shape of animal cells is in controlled by a network of filamentous polymers called the cytoskele...
Membranes determine two-dimensional and three-dimensional biochemical reaction spaces in living syst...
Membranes determine two-dimensional and three-dimensional biochemical reaction spaces in living syst...
To divide, bacteria must constrict their membranes against significant force from turgor pressure. A...
AbstractA recent theoretical article provided a mechanical explanation for the formation of cytoskel...
To divide, bacteria must constrict their membranes against significant force from turgor pressure. A...
Bacteria have remarkably robust cell shape control mechanisms. For example, cell diameter only varie...
Prokaryotes come in a wide variety of shapes, determined largely by natural selection, physical cons...
AbstractThe bacterial cytoskeleton guides the synthesis of cell wall and thus regulates cell shape. ...
AbstractIn bacteria, cytoskeletal filament bundles such as MreB control the cell morphology and dete...
AbstractA recent theoretical article provided a mechanical explanation for the formation of cytoskel...
AbstractSeveral bacterial proteins have been shown to polymerize into coils or rings on cell membran...
Prokaryotes come in a wide variety of shapes, determined largely by natural selection, physical cons...
Cell shape matters across the kingdoms of life, and cells have the remarkable capacity to define and...
The shape of animal cells is in controlled by a network of filamentous polymers called the cytoskele...
The shape of animal cells is in controlled by a network of filamentous polymers called the cytoskele...
Membranes determine two-dimensional and three-dimensional biochemical reaction spaces in living syst...
Membranes determine two-dimensional and three-dimensional biochemical reaction spaces in living syst...
To divide, bacteria must constrict their membranes against significant force from turgor pressure. A...
AbstractA recent theoretical article provided a mechanical explanation for the formation of cytoskel...
To divide, bacteria must constrict their membranes against significant force from turgor pressure. A...
Bacteria have remarkably robust cell shape control mechanisms. For example, cell diameter only varie...
Prokaryotes come in a wide variety of shapes, determined largely by natural selection, physical cons...