[HTML][HTML] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth, K Rippe - Nature communications, 2014 - nature.com
In living cells, most proteins diffuse over distances of micrometres within seconds. Protein
translocation is constrained due to the cellular organization into subcompartments that …

Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth… - Nature …, 2014 - econpapers.repec.org
In living cells, most proteins diffuse over distances of micrometres within seconds. Protein
translocation is constrained due to the cellular organization into subcompartments that …

[PDF][PDF] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth… - NATURE …, 2014 - malone.bioquant.uni-heidelberg.de
Cellular structures reduce molecular mobility in a time-and length-scale-dependent manner.
Thus, mobility maps acquired on multiple scales contain hidden information on the cellular …

Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth… - Nature …, 2014 - ui.adsabs.harvard.edu
In living cells, most proteins diffuse over distances of micrometres within seconds. Protein
translocation is constrained due to the cellular organization into subcompartments that …

[PDF][PDF] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth… - NATURE …, 2014 - sabinai-neji.com
Cellular structures reduce molecular mobility in a time-and length-scale-dependent manner.
Thus, mobility maps acquired on multiple scales contain hidden information on the cellular …

[PDF][PDF] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth… - NATURE …, 2014 - researchgate.net
Cellular structures reduce molecular mobility in a time-and length-scale-dependent manner.
Thus, mobility maps acquired on multiple scales contain hidden information on the cellular …

Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells.

M Baum, F Erdel, M Wachsmuth, K Rippe - Nature Communications, 2014 - europepmc.org
In living cells, most proteins diffuse over distances of micrometres within seconds. Protein
translocation is constrained due to the cellular organization into subcompartments that …

Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth, K Rippe - Nature Communications, 2014 - ideas.repec.org
In living cells, most proteins diffuse over distances of micrometres within seconds. Protein
translocation is constrained due to the cellular organization into subcompartments that …

[PDF][PDF] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth, K Rippe - NATURE COMMUNICATIONS, 2014 - Citeseer
Cellular structures reduce molecular mobility in a time-and length-scale-dependent manner.
Thus, mobility maps acquired on multiple scales contain hidden information on the cellular …

[PDF][PDF] Retrieving the intracellular topology from multi-scale protein mobility mapping in living cells

M Baum, F Erdel, M Wachsmuth, K Rippe - NATURE COMMUNICATIONS, 2014 - scian.cl
Cellular structures reduce molecular mobility in a time-and length-scale-dependent manner.
Thus, mobility maps acquired on multiple scales contain hidden information on the cellular …