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Dual-specificity phosphatase 5 controls the localized inhibition, propagation, and transforming potential of ERK signaling
Andrew M. Kidger
, Linda K. Rushworth
, Julia Stellzig
, Jane Davidson
, Christopher J. Bryant
, Cassidy Bayley
, Edward Caddye
, Tim Rogers
,
Stephen M. Keyse
(Lead / Corresponding author)
, Christopher J. Caunt (Lead / Corresponding author)
Research output
:
Contribution to journal
›
Article
›
peer-review
67
Citations (Scopus)
273
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Dive into the research topics of 'Dual-specificity phosphatase 5 controls the localized inhibition, propagation, and transforming potential of ERK signaling'. Together they form a unique fingerprint.
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Keyphrases
DUSP5
100%
ERK Pathway
100%
Dual-specificity Phosphatase 5
100%
Cell Proliferation
50%
Feedback Mechanism
50%
Cell Transformation
50%
ERK Activity
50%
BRAF V600E
50%
Oncogene
25%
Cancer Growth
25%
Upstream Kinases
25%
Dual Specificity
25%
Cell Fate
25%
MAP Kinase Phosphatase
25%
Hyperactivity
25%
Cellular Senescence
25%
Feedback Interactions
25%
Rapid Inactivation
25%
Self-limiting
25%
RAF Kinase
25%
Spatiotemporal Interaction
25%
Delayed Induction
25%
ERK Inhibitor
25%
Biochemistry, Genetics and Molecular Biology
Cell Proliferation
100%
Cell Transformation
100%
Dual-Specificity Phosphatase
100%
Carcinogenesis
50%
Phosphotransferase
50%
Kinase
50%
Cell Fate
50%
Oncogene
50%
Drive
50%
MAP Kinase Phosphatase
50%