Plastocyanin (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Plastocyanin" in German language version.

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  • Y. Xue, M. Okvist, O. Hansson, S. Young: Crystal structure of spinach plastocyanin at 1.7 A resolution. In: Protein science : a publication of the Protein Society. Band 7, Nummer 10, Oktober 1998, S. 2099–2105, doi:10.1002/pro.5560071006, PMID 9792096, PMC 2143848 (freier Volltext).

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ncbi.nlm.nih.gov

  • Y. Xue, M. Okvist, O. Hansson, S. Young: Crystal structure of spinach plastocyanin at 1.7 A resolution. In: Protein science : a publication of the Protein Society. Band 7, Nummer 10, Oktober 1998, S. 2099–2105, doi:10.1002/pro.5560071006, PMID 9792096, PMC 2143848 (freier Volltext).
  • Sato K., Kohzuma T., Dennison C. (2003): Active-site structure and electron-transfer reactivity of plastocyanins. In: JACS vol. 125 (8) pp. 2101-2112; PMID 12590538
  • Jordan P., Fromme P., Witt H.T., Klukas O., Saenger W., Krauß N. (2001): Three-dimensional structure of cyanobacterial photosystem I at 2.5Å resolution. In: Nature 411 (6840) pp. 909-917; PMID 11418848
  • Ben-Shem A., Frolow F., Nelson N. (2003): Crystal structure of plant photosystem I. Nature 426 (6967) pp. 630-635; PMID 14668855
  • Rother C., Jansen T., Tyagi A., Tittgen J., Herrmann R.G. (1986): Plastocyanin is encoded by an uninterrupted nuclear gene in spinach. In: Curr Genet 11 (3) pp. 171-176; PMID 2834087
  • Dijkwel P.P., Kock P., Bezemer R., Weisbeek P.J., Smeekens S.C. (1996): Sucrose Represses the Developmentally Controlled Transient Activation of the Plastocyanin Gene in Arabidopsis thaliana Seedlings. In: Plant Physiol 110 (2) pp. 455-463; PMID 12226197
  • Oswald O., Martin T., Dominy P.J., Graham I.A. (2001): Plastid redox state and sugars: interactive regulators of nuclear-encoded photosynthetic gene expression. In: Proc Natl Acad Sci U S A 98 (4) pp. 2047-2052; PMID 11172073
  • Pfannschmidt T., Schütze K., Brost M., Oelmüller R. (2001): A novel mechanism of nuclear photosynthesis gene regulation by redox signals from the chloroplast during photosystem stoichiometry adjustment. In: J Biol Chem 276 (39) pp. 36125-36130; PMID 11468291
  • Schütze K., Steiner S., Pfannschmidt T. (2008): Photosynthetic redox regulation of the plastocyanin promoter in tobacco. In: Physiol Plant 133 (3) pp. 557-565; PMID 18419738
  • Triantaphylidès C., Havaux M. (2009): Singlet oxygen in plants: production, detoxification and signaling. In: Trends Plant Sci 14 (4) pp. 219-228; PMID 19303348
  • Foyer C.H., Noctor G., Buchanan B.B., Dietz K.J., Pfannschmidt T. (2009): Redox Regulation in Photosynthetic Organisms: Signaling, Acclimation, and Practical Implications. In: Antioxid Redox Signal 11 (4) pp. 861-905; PMID 19239350
  • Hope A.B. (2000): Electron transfers amongst cytochrome f, plastocyanin and photosystem I: kinetics and mechanisms. In: Biochim Biophys Acta 1456 (1) pp. 5-26; PMID 10611452
  • Soriano G.M., Ponamarev M.V., Piskorowski R.A., Cramer W.A. (1998): Identification of the basic residues of cytochrome f responsible for electrostatic docking interactions with plastocyanin in vitro: relevance to the electron transfer reaction in vivo. In: Biochemistry 37 (43) pp. 15120-15128; PMID 9790675
  • Drepper F., Hippler M., Nitschke W., Haehnel W. (1996): Binding dynamics and electron transfer between plastocyanin and photosystem I. In: Biochemistry 35 (4) pp. 1282-1295; PMID 8573585
  • Sommer F., Drepper F., Hippler M. (2002): The Luminal Helix l of PsaB Is Essential for Recognition of Plastocyanin or Cytochrome c6 and Fast Electron Transfer to Photosystem I in Chlamydomonas reinhardtii. In: J Biol Chem 277 (8) pp. 6573-6581; PMID 11744732
  • Sommer F., Drepper F., Haehnel W., Hippler M. (2004): The Hydrophobic Recognition Site Formed by Residues PsaA-Trp651 and PsaB-Trp627 of Photosystem I in Chlamydomonas reinhardtii Confers Distinct Selectivity for Binding of Plastocyanin and Cytochrome c6. In: J Biol Chem 279 (19) pp. 20009-20017; PMID 14996834
  • Fromme P. (2003): Structure and function of photosystem I: interaction with its soluble electron carriers and external antenna systems. In: FEBS Lett 555 (1) pp. 40-44; PMID 14630316

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