The subject of this thesis is the generation of spatial temporal structures in living cells. Specifically, we studied the Min-system in the bacterium Escherichia coli. It consists of the MinC, the MinD, and the MinE proteins, which play an important role in the correct selection of the cell division site. The Min-proteins oscillate between the two cell poles and thereby prevent division at these locations. In this way, E. coli divides at the center, producing two daughter cells of equal size, providing them with the complete genetic patrimony. Our goal is to perform a quantitative study, both theoretical and experimental, in order to reveal the mechanism underlying the Min-oscillations. Experimentally, we characterize theMin-system, measuri...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
Cells owe their internal organization to self-organized protein patterns, which originate and adapt ...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
What is the Min System? Min proteins are a class of proteins that is widely conserved among bacteria...
Spatio-temporal oscillations of the Min proteins are essential for selecting the cell division site ...
Min proteins are a class of proteins that is widely conserved among bacteria. In the rod-shaped bact...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
The Min protein system in Escherichia coli helps the cell division process by identifying the center...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
<div><p>Oscillations of the Min protein system are involved in the correct midcell placement of the ...
<div><p>The dynamics of the Min-protein system help <i>Escherichia coli</i> regulate the process of ...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
Cells owe their internal organization to self-organized protein patterns, which originate and adapt ...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
The subject of this thesis is the generation of spatial temporal structures in living cells. Specifi...
What is the Min System? Min proteins are a class of proteins that is widely conserved among bacteria...
Spatio-temporal oscillations of the Min proteins are essential for selecting the cell division site ...
Min proteins are a class of proteins that is widely conserved among bacteria. In the rod-shaped bact...
Proper cell division requires an accurate definition of the division plane. In bacteria, this plane ...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
The Min protein system in Escherichia coli helps the cell division process by identifying the center...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
<div><p>Oscillations of the Min protein system are involved in the correct midcell placement of the ...
<div><p>The dynamics of the Min-protein system help <i>Escherichia coli</i> regulate the process of ...
Oscillations of the Min protein system are involved in the correct midcell placement of the divisome...
Min proteins in E. coli bacteria organize into a dynamic pattern oscillating between the two cell po...
Cells owe their internal organization to self-organized protein patterns, which originate and adapt ...