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Phosphorelays provide tunable signal processing capabilities for the cell
Varun B Kothamachu,
Elisenda Feliu
,
Carsten Wiuf
, Luca Cardelli, Orkun S Soyer
Department of Mathematical Sciences
13
Citations (Scopus)
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Dive into the research topics of 'Phosphorelays provide tunable signal processing capabilities for the cell'. Together they form a unique fingerprint.
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Engineering & Materials Science
Phosphorylation
100%
Signal processing
50%
Signal transduction
46%
Topology
42%
Rate constants
38%
Hydrolysis
37%
Plasticity
29%
Proteins
28%
Dynamic response
26%
Composite materials
17%
Computer simulation
16%
Mathematics
Signal Processing
66%
Relay
46%
Cell
45%
Relationships
32%
Phosphorylation
28%
Reverse
17%
Kinetics
16%
Signal Transduction
14%
Topology
12%
Dynamic Response
11%
Rate Constant
10%
Plasticity
9%
Protein
9%
Composite
7%
Numerical Simulation
6%
Sufficient
6%
Earth & Environmental Sciences
signal processing
69%
cell
38%
topology
17%
physiological response
10%
kinetics
10%
prokaryote
10%
eukaryote
10%
dynamic response
10%
rate
8%
plasticity
8%
hydrolysis
8%
protein
6%
measuring
5%
simulation
3%
Medicine & Life Sciences
Kinetics
45%
Phosphorylation
43%
Eukaryota
32%
Hydrolysis
28%
Signal Transduction
24%
Proteins
11%
Agriculture & Biology
topology
25%
phosphorylation
21%
cells
19%
kinetics
16%
prokaryotic cells
13%
physiological response
12%
plasticity
11%
signal transduction
11%
eukaryotic cells
10%
hydrolysis
9%
proteins
4%