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Distinct phosphorylation events regulate p130- and p107-mediated repression of E2F-4
T Farkas, K Hansen, K Holm, J Lukas, J Bartek
Jazyk angličtina Země Spojené státy americké
NLK
Freely Accessible Science Journals
od 1905 do Před 1 rokem
Open Access Digital Library
od 1905-10-01
Open Access Digital Library
od 1905-10-01
ROAD: Directory of Open Access Scholarly Resources
od 1905
PubMed
12006580
Knihovny.cz E-zdroje
- MeSH
- biologické modely MeSH
- buněčné dělení MeSH
- buněčné linie MeSH
- buněčný cyklus MeSH
- cyklin D1 metabolismus MeSH
- DNA vazebné proteiny * metabolismus MeSH
- fosfoproteiny * metabolismus MeSH
- fosforylace MeSH
- G1 fáze MeSH
- glutathiontransferasa metabolismus MeSH
- imunohistochemie MeSH
- jaderné proteiny * metabolismus MeSH
- lidé MeSH
- mutace MeSH
- peptidové mapování MeSH
- peptidy chemie MeSH
- plazmidy metabolismus MeSH
- protein p107 podobný retinoblastomu MeSH
- protein p130 podobný retinoblastomu MeSH
- proteiny * MeSH
- průtoková cytometrie MeSH
- rekombinantní fúzní proteiny metabolismus MeSH
- terciární struktura proteinů MeSH
- transkripční faktor E2F4 MeSH
- transkripční faktory * metabolismus MeSH
- vazebná místa MeSH
- Check Tag
- lidé MeSH
The "pocket proteins" pRb (retinoblastoma tumor suppressor protein), p107, and p130 regulate cell proliferation via phosphorylation-sensitive interactions with E2F transcription factors and other proteins. We previously identified 22 in vivo phosphorylation sites in human p130, including three sites selectively targeted by cyclin D-Cdk4(6) kinases. Here we assessed the effects of alanine substitution at the individual or combined Cdk4(6)-specific sites in p130, compared with homologous sites in p107 (Thr(369)/Ser(650)/Ser(964)). In U-2-OS cells, the triple p107(DeltaCdk4)* mutant strongly inhibited E2F-4 activity and imposed a G(1) arrest resistant to cyclin D1 coexpression. In contrast, the p130(DeltaCdk4) mutant still responded to cyclin D1, suggesting the existence of additional phosphorylation sites critical for E2F-4 regulation. Extensive mutagenesis, sensitive E2F reporter assays, and cell cycle analyses allowed the identification of six such residues (serines 413, 639, 662, 1044, 1080, and 1112) that, in addition to the Cdk4-specific sites, are necessary and sufficient for the regulation of E2F-4 and the cell cycle by p130. Surprisingly, 12 of the in vivo phosphorylation sites seem dispensable for E2F regulation and probably modulate other functions of p130. These results further elucidate the complex regulation of p130 and provide a molecular mechanism to explain the differential control of p107 and p130 by cyclin-dependent kinases.
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- $a The "pocket proteins" pRb (retinoblastoma tumor suppressor protein), p107, and p130 regulate cell proliferation via phosphorylation-sensitive interactions with E2F transcription factors and other proteins. We previously identified 22 in vivo phosphorylation sites in human p130, including three sites selectively targeted by cyclin D-Cdk4(6) kinases. Here we assessed the effects of alanine substitution at the individual or combined Cdk4(6)-specific sites in p130, compared with homologous sites in p107 (Thr(369)/Ser(650)/Ser(964)). In U-2-OS cells, the triple p107(DeltaCdk4)* mutant strongly inhibited E2F-4 activity and imposed a G(1) arrest resistant to cyclin D1 coexpression. In contrast, the p130(DeltaCdk4) mutant still responded to cyclin D1, suggesting the existence of additional phosphorylation sites critical for E2F-4 regulation. Extensive mutagenesis, sensitive E2F reporter assays, and cell cycle analyses allowed the identification of six such residues (serines 413, 639, 662, 1044, 1080, and 1112) that, in addition to the Cdk4-specific sites, are necessary and sufficient for the regulation of E2F-4 and the cell cycle by p130. Surprisingly, 12 of the in vivo phosphorylation sites seem dispensable for E2F regulation and probably modulate other functions of p130. These results further elucidate the complex regulation of p130 and provide a molecular mechanism to explain the differential control of p107 and p130 by cyclin-dependent kinases.
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