Fosforylace (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Fosforylace" in Czech language version.

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biologists.org

jcs.biologists.org

  • Thomason P; KAY R. Eukaryotic signal transduction via histidine-aspartate phosphorelay. J. Cell. Sci.. 2000, s. 3141–50. Dostupné online. PMID 10954413. 

doi.org

  • Cozzone AJ. Protein phosphorylation in prokaryotes. Annu. Rev. Microbiol.. 1988, s. 97–125. doi:10.1146/annurev.mi.42.100188.000525. PMID 2849375. 
  • Chang C; STEWART RC. The Two-Component System . Regulation of Diverse Signaling Pathways in Prokaryotes and Eukaryotes. Plant Physiol.. 1998, s. 723–31. doi:10.1104/PPSOE.117.3.723. PMID 9662515. 
  • Barford D; DAS AK; EGLOFF MP. The structure and mechanism of protein phosphatases: insights into catalysis and regulation. Annu Rev Biophys Biomol Struct. 1998, s. 133–64. doi:10.1146/annurev.biophys.27.1.133. PMID 9646865. 
  • Deutscher J; SAIER. Ser/Thr/Tyr protein phosphorylation in bacteria - for long time neglected, now well established. J Mol Microbiol Biotechnol. 2005, s. 125–31. doi:10.1159/000089641. PMID 16415586. 
  • Bates S; VOUSDEN KH. p53 in signaling checkpoint arrest or apoptosis. Curr. Opin. Genet. Dev.. 1996, s. 12–8. doi:10.1016/S0959-437X(96)90004-0. PMID 8791489. 
  • van Weeren PC; DE BRUYN KM; DE VRIES-SMITS AM; VAN LINT J; BURGERING BM. Essential role for protein kinase B (PKB) in insulin-induced glycogen synthase kinase 3 inactivation. Characterization of dominant-negative mutant of PKB. J. Biol. Chem.. 1998, s. 13150–6. doi:10.1074/jbc.273.21.13150. PMID 9582355. 
  • Cole PA; SHEN K; QIAO Y; WANG D. Protein tyrosine kinases Src and Csk: a tail's tale. Curr Opin Chem Biol. 2003, s. 580–5. doi:10.1016/j.cbpa.2003.08.009. PMID 14580561. 
  • Olsen JV; BLAGOEV B; GNAD F; MACEK B; KUMAR C; MORTENSEN P; MANN M. Global, in vivo, and site-specific phosphorylation dynamics in signaling networks. Cell. 2006, s. 635–48. doi:10.1016/j.cell.2006.09.026. PMID 17081983. 
  • Li-Rong Y; ISSAQ HJ; VEENSTRA TD. Phosphoproteomics for the discovery of kinases as cancer biomarkers and drug targets. Proteomics - Clinical Applications. 2007, s. 1042–1057. doi:10.1002/prca.200700102. PMID 21136756. 
  • Fiedler D; BRABERG H; MEHTA M; CHECHIK G; CAGNEY, Gerard; MUKHERJEE, Paromita; SILVA, Andrea C. Functional Organization of the S. cerevisiae Phosphorylation Network. Cell. 2009, s. 952–963. doi:10.1016/j.cell.2008.12.039. PMID 19269370. 
  • KOVACS KA, Steinmann M, Magistretti PJ, Halfon O, Cardinaux JR. CCAAT/enhancer-binding protein family members recruit the coactivator CREB-binding protein and trigger its phosphorylation. J Biol. Chem.. UNITED STATES: 2003, s. 36959–65. ISSN 0021-9258. doi:10.1074/jbc.M303147200. PMID 12857754. 
  • Munton RP; TWEEDIE-CULLEN R; LIVINGSTONE-ZATCHEJ M; WEINANDY F; WAIDELICH M; LONGO D; GEHRIG P. Qualitative and quantitative analyses of protein phosphorylation in naive and stimulated mouse synaptosomal preparations. Mol. Cell Proteomics. 2007, s. 283–93. doi:10.1074/mcp.M600046-MCP200. PMID 17114649. 
  • Trinidad JC; THALHAMMER A; SPECHT CG; LYNN AJ; BAKER PR; SCHOEPFER R; BURLINGAME AL. Quantitative analysis of synaptic phosphorylation and protein expression. Mol. Cell Proteomics. 2008, s. 684–96. doi:10.1074/mcp.M700170-MCP200. PMID 18056256. 
  • Gerber SA; RUSH J; STEMMAN O; KIRSCHNER MW; GYGI SP. Absolute quantification of proteins and phosphoproteins from cell lysates by tandem MS. Proc. Natl. Acad. Sci. U.S.A.. 2003, s. 6940–5. doi:10.1073/pnas.0832254100. PMID 12771378. 
  • Gygi SP; RIST B; GRIFFIN TJ; ENG J; AEBERSOLD R. Proteome analysis of low-abundance proteins using multidimensional chromatography and isotope-coded affinity tags. J. Proteome Res.. 2002, s. 47–54. doi:10.1021/pr015509n. PMID 12643526. 
  • Olive DM. Quantitative methods for the analysis of protein phosphorylation in drug development. Expert Rev Proteomics. 2004, s. 327–41. doi:10.1586/14789450.1.3.327. PMID 15966829. 
  • Chen H; KOVAR J; SISSONS S; COX K; MATTER W; CHADWELL F; LUAN P. A cell-based immunocytockemical assay for monitoring kinase signaling pathways and drug efficacy. Anal. Biochem.. 2005, s. 136–42. doi:10.1016/j.ab.2004.11.015. PMID 15707944. 

nih.gov

ncbi.nlm.nih.gov

  • Burnett G; KENNEDY EP. The enzymatic phosphorylation of proteins. J. Biol. Chem.. 1954, s. 969–80. Dostupné v archivu pořízeném dne 2020-06-09. PMID 13221602. 
  • Cozzone AJ. Protein phosphorylation in prokaryotes. Annu. Rev. Microbiol.. 1988, s. 97–125. doi:10.1146/annurev.mi.42.100188.000525. PMID 2849375. 
  • Stock JB; NINFA AJ; STOCK AM. Protein phosphorylation and regulation of adaptive responses in bacteria. Microbiol. Rev.. 1989, s. 450–90. PMID 2556636. 
  • Chang C; STEWART RC. The Two-Component System . Regulation of Diverse Signaling Pathways in Prokaryotes and Eukaryotes. Plant Physiol.. 1998, s. 723–31. doi:10.1104/PPSOE.117.3.723. PMID 9662515. 
  • Barford D; DAS AK; EGLOFF MP. The structure and mechanism of protein phosphatases: insights into catalysis and regulation. Annu Rev Biophys Biomol Struct. 1998, s. 133–64. doi:10.1146/annurev.biophys.27.1.133. PMID 9646865. 
  • Ciesla J; FRACZYK T; RODE W. Phosphorylation of basic amino acid residues in proteins: important but easily missed. Acta Biochim Pol. 2011, s. 137–47. PMID 21623415. 
  • Deutscher J; SAIER. Ser/Thr/Tyr protein phosphorylation in bacteria - for long time neglected, now well established. J Mol Microbiol Biotechnol. 2005, s. 125–31. doi:10.1159/000089641. PMID 16415586. 
  • Ashcroft M; KUBBUTAT MH; VOUSDEN KH. Regulation of p53 Function and Stability by Phosphorylation. Mol. Cell. Biol.. 1999, s. 1751–8. PMID 10022862. 
  • Bates S; VOUSDEN KH. p53 in signaling checkpoint arrest or apoptosis. Curr. Opin. Genet. Dev.. 1996, s. 12–8. doi:10.1016/S0959-437X(96)90004-0. PMID 8791489. 
  • van Weeren PC; DE BRUYN KM; DE VRIES-SMITS AM; VAN LINT J; BURGERING BM. Essential role for protein kinase B (PKB) in insulin-induced glycogen synthase kinase 3 inactivation. Characterization of dominant-negative mutant of PKB. J. Biol. Chem.. 1998, s. 13150–6. doi:10.1074/jbc.273.21.13150. PMID 9582355. 
  • Cole PA; SHEN K; QIAO Y; WANG D. Protein tyrosine kinases Src and Csk: a tail's tale. Curr Opin Chem Biol. 2003, s. 580–5. doi:10.1016/j.cbpa.2003.08.009. PMID 14580561. 
  • Babior BM. NADPH oxidase: an update. Blood. 1999, s. 1464–76. PMID 10029572. 
  • Olsen JV; BLAGOEV B; GNAD F; MACEK B; KUMAR C; MORTENSEN P; MANN M. Global, in vivo, and site-specific phosphorylation dynamics in signaling networks. Cell. 2006, s. 635–48. doi:10.1016/j.cell.2006.09.026. PMID 17081983. 
  • Li-Rong Y; ISSAQ HJ; VEENSTRA TD. Phosphoproteomics for the discovery of kinases as cancer biomarkers and drug targets. Proteomics - Clinical Applications. 2007, s. 1042–1057. doi:10.1002/prca.200700102. PMID 21136756. 
  • Fiedler D; BRABERG H; MEHTA M; CHECHIK G; CAGNEY, Gerard; MUKHERJEE, Paromita; SILVA, Andrea C. Functional Organization of the S. cerevisiae Phosphorylation Network. Cell. 2009, s. 952–963. doi:10.1016/j.cell.2008.12.039. PMID 19269370. 
  • Thomason P; KAY R. Eukaryotic signal transduction via histidine-aspartate phosphorelay. J. Cell. Sci.. 2000, s. 3141–50. Dostupné online. PMID 10954413. 
  • KOVACS KA, Steinmann M, Magistretti PJ, Halfon O, Cardinaux JR. CCAAT/enhancer-binding protein family members recruit the coactivator CREB-binding protein and trigger its phosphorylation. J Biol. Chem.. UNITED STATES: 2003, s. 36959–65. ISSN 0021-9258. doi:10.1074/jbc.M303147200. PMID 12857754. 
  • Munton RP; TWEEDIE-CULLEN R; LIVINGSTONE-ZATCHEJ M; WEINANDY F; WAIDELICH M; LONGO D; GEHRIG P. Qualitative and quantitative analyses of protein phosphorylation in naive and stimulated mouse synaptosomal preparations. Mol. Cell Proteomics. 2007, s. 283–93. doi:10.1074/mcp.M600046-MCP200. PMID 17114649. 
  • Trinidad JC; THALHAMMER A; SPECHT CG; LYNN AJ; BAKER PR; SCHOEPFER R; BURLINGAME AL. Quantitative analysis of synaptic phosphorylation and protein expression. Mol. Cell Proteomics. 2008, s. 684–96. doi:10.1074/mcp.M700170-MCP200. PMID 18056256. 
  • Gerber SA; RUSH J; STEMMAN O; KIRSCHNER MW; GYGI SP. Absolute quantification of proteins and phosphoproteins from cell lysates by tandem MS. Proc. Natl. Acad. Sci. U.S.A.. 2003, s. 6940–5. doi:10.1073/pnas.0832254100. PMID 12771378. 
  • Gygi SP; RIST B; GRIFFIN TJ; ENG J; AEBERSOLD R. Proteome analysis of low-abundance proteins using multidimensional chromatography and isotope-coded affinity tags. J. Proteome Res.. 2002, s. 47–54. doi:10.1021/pr015509n. PMID 12643526. 
  • Olive DM. Quantitative methods for the analysis of protein phosphorylation in drug development. Expert Rev Proteomics. 2004, s. 327–41. doi:10.1586/14789450.1.3.327. PMID 15966829. 
  • Chen H; KOVAR J; SISSONS S; COX K; MATTER W; CHADWELL F; LUAN P. A cell-based immunocytockemical assay for monitoring kinase signaling pathways and drug efficacy. Anal. Biochem.. 2005, s. 136–42. doi:10.1016/j.ab.2004.11.015. PMID 15707944. 

web.archive.org

  • Levene PA; ALSBERG CL. The cleavage products of vitellin. J. Biol. Chem.. 1906, s. 127–133. Dostupné v archivu pořízeném dne 2020-06-09. 
  • Lipmann FA; LEVENE PA. Serinephosphoric acid obtained on hydrolysis of vitellinic acid. J. Biol. Chem.. 1932, s. 109–114. Dostupné v archivu pořízeném dne 2020-06-09. 
  • Burnett G; KENNEDY EP. The enzymatic phosphorylation of proteins. J. Biol. Chem.. 1954, s. 969–80. Dostupné v archivu pořízeném dne 2020-06-09. PMID 13221602. 
  • phospho antibody [online]. [cit. 2009-01-22]. Dostupné v archivu pořízeném dne 2009-01-29. 

worldcat.org

  • KOVACS KA, Steinmann M, Magistretti PJ, Halfon O, Cardinaux JR. CCAAT/enhancer-binding protein family members recruit the coactivator CREB-binding protein and trigger its phosphorylation. J Biol. Chem.. UNITED STATES: 2003, s. 36959–65. ISSN 0021-9258. doi:10.1074/jbc.M303147200. PMID 12857754.