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A mechanism for cell-cycle regulation of MAP kinase signaling in a yeast differentiation pathway
scientific article
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instance of
scholarly article
1 reference
stated in
PubMed
PubMed ID
17289571
retrieved
1 December 2016
title
A mechanism for cell-cycle regulation of MAP kinase signaling in a yeast differentiation pathway
(English)
1 reference
stated in
PubMed
PubMed ID
17289571
retrieved
1 December 2016
main subject
Cyclin-dependent serine/threonine-protein kinase CDC28 YBR160W
1 reference
stated in
GOA release 2020-03-11
Ste5p YDR103W
1 reference
stated in
GOA release 2020-03-11
G protein subunit beta YOR212W
1 reference
stated in
GOA release 2020-03-11
Cyclin CLN2 YPL256C
1 reference
stated in
GOA release 2020-03-11
author name string
Shelly C Strickfaden
series ordinal
1
0 references
Matthew J Winters
series ordinal
2
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Giora Ben-Ari
series ordinal
3
0 references
Rachel E Lamson
series ordinal
4
0 references
Mike Tyers
series ordinal
5
0 references
Peter M Pryciak
series ordinal
6
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language of work or name
English
0 references
publication date
9 February 2007
0 references
published in
Cell
1 reference
stated in
PubMed
PubMed ID
17289571
retrieved
1 December 2016
volume
128
0 references
page(s)
519-31
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issue
3
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cites work
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MAP kinase dynamics in response to pheromones in budding yeast
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Fus3p and Kss1p control G1 arrest in Saccharomyces cerevisiae through a balance of distinct arrest and proliferative functions that operate in parallel with Far1p
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Membrane recruitment of the kinase cascade scaffold protein Ste5 by the Gbetagamma complex underlies activation of the yeast pheromone response pathway
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Interaction of a G-protein beta-subunit with a conserved sequence in Ste20/PAK family protein kinases.
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Direct inhibition of the yeast cyclin-dependent kinase Cdc28-Cln by Far1.
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Identification of a gene necessary for cell cycle arrest by a negative growth factor of yeast: FAR1 is an inhibitor of a G1 cyclin, CLN2.
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Multisite phosphorylation of a CDK inhibitor sets a threshold for the onset of DNA replication
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Genetic control of the cell division cycle in yeast
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Dual role for membrane localization in yeast MAP kinase cascade activation and its contribution to signaling fidelity.
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Regulation of G protein-initiated signal transduction in yeast: paradigms and principles
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Cycling through development in Drosophila and other metazoa
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Pheromone-dependent G1 cell cycle arrest requires Far1 phosphorylation, but may not involve inhibition of Cdc28-Cln2 kinase, in vivo.
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Cln3-associated kinase activity in Saccharomyces cerevisiae is regulated by the mating factor pathway
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Phosphorylation- and ubiquitin-dependent degradation of the cyclin-dependent kinase inhibitor Far1p in budding yeast
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29 September 2017
The cyclin-dependent kinase inhibitor p40SIC1 imposes the requirement for Cln G1 cyclin function at Start
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PubMed Central
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29 September 2017
FAR1 is required for posttranscriptional regulation of CLN2 gene expression in response to mating pheromone
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PubMed Central
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29 September 2017
G1 cyclins CLN1 and CLN2 repress the mating factor response pathway at Start in the yeast cell cycle
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PubMed Central
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29 September 2017
FAR1 and the G1 phase specificity of cell cycle arrest by mating factor in Saccharomyces cerevisiae
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Overexpression of the STE4 gene leads to mating response in haploid Saccharomyces cerevisiae
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Overexpression of the G1-cyclin gene CLN2 represses the mating pathway in Saccharomyces cerevisiae at the level of the MEKK Ste11.
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2 June 2018
A Membrane Binding Domain in the Ste5 Scaffold Synergizes with Gβγ Binding to Control Localization and Signaling in Pheromone Response
1 reference
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PubMed Central
reference URL
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27 November 2018
Localized feedback phosphorylation of Ste5p scaffold by associated MAPK cascade
1 reference
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PubMed Central
reference URL
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27 November 2018
Cyclin-dependent kinases regulate the antiproliferative function of Smads.
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PubMed Central
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27 November 2018
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PubMed Central
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27 November 2018
MAPK specificity in the yeast pheromone response independent of transcriptional activation.
1 reference
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PubMed Central
reference URL
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27 November 2018
Cyclin-specific START events and the G1-phase specificity of arrest by mating factor in budding yeast.
1 reference
stated in
PubMed Central
reference URL
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27 November 2018
Negative regulation of FAR1 at the Start of the yeast cell cycle.
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=1847584
retrieved
27 November 2018
The MAP kinase Fus3 associates with and phosphorylates the upstream signaling component Ste5
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Potential regulation of Ste20 function by the Cln1-Cdc28 and Cln2-Cdc28 cyclin-dependent protein kinases
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Cell Cycle- and Cln2p-Cdc28p-dependent Phosphorylation of the Yeast Ste20p Protein Kinase
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Nuclear shuttling of yeast scaffold Ste5 is required for its recruitment to the plasma membrane and activation of the mating MAPK cascade
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
MAP kinase pathways
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Phosphorylation of the MEKK Ste11p by the PAK-like kinase Ste20p is required for MAP kinase signaling in vivo
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/17289571
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Identifiers
DOI
10.1016/J.CELL.2006.12.032
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
4570287
OpenCitations bibliographic resource ID
4570287
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
4570287
PMCID
1847584
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
4570287
PubMed ID
17289571
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
4570287
ResearchGate publication ID
6514605
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