Rubredoxin

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== Background ==
== Background ==
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<scene name='90/909991/Rubredoxin_1/1'>Rubredoxin</scene> is a nonheme iron protein, which was discovered in the anaerobe Clostridium pasteurianum<i> and isolated from ferredoxin. These proteins are found in
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<scene name='90/909991/Rubredoxin_1/1'>Rubredoxin</scene> is a nonheme iron protein, which was discovered in the anaerobe <i>Clostridium pasteurianum</i> and isolated from ferredoxin. These proteins are found in
membrane-bound enzymes in conjunction with b-type cytochromes in mitochondria and chloroplasts, as well as in soluble bacterial dioxygenases.
membrane-bound enzymes in conjunction with b-type cytochromes in mitochondria and chloroplasts, as well as in soluble bacterial dioxygenases.
Membrane-bound rubredoxins are found exclusively in photosystem II containing organisms and are actually different from the soluble rubredoxins
Membrane-bound rubredoxins are found exclusively in photosystem II containing organisms and are actually different from the soluble rubredoxins

Revision as of 22:35, 29 April 2022

Rubredoxin Structure and Function

Caption for this structure

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References

  1. Hanson, R. M., Prilusky, J., Renjian, Z., Nakane, T. and Sussman, J. L. (2013), JSmol and the Next-Generation Web-Based Representation of 3D Molecular Structure as Applied to Proteopedia. Isr. J. Chem., 53:207-216. doi:http://dx.doi.org/10.1002/ijch.201300024
  2. Herraez A. Biomolecules in the computer: Jmol to the rescue. Biochem Mol Biol Educ. 2006 Jul;34(4):255-61. doi: 10.1002/bmb.2006.494034042644. PMID:21638687 doi:10.1002/bmb.2006.494034042644
  3. Li, Y., Liu, P. pan, & Ni, X. (2019, July 2). Molecular evolution and functional analysis of rubredoxin-like proteins in plants. BioMed Research International. Retrieved April 21, 2022, from https://www.hindawi.com/journals/bmri/2019/2932585/
  4. Calderon, R. H., García-Cerdán, J. G., Malnoë, A., Cook, R., Russell, J. J., Gaw, C., Dent, R. M., de Vitry, C., & Niyogi, K. K. (2013, September 13). A conserved rubredoxin is necessary for photosystem II accumulation in diverse oxygenic photoautotrophs. The Journal of biological chemistry. Retrieved April 21, 2022, from https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3772215/
  5. Gregor Hagelueken, Lutz Wiehlmann, Thorsten M. Adams, Harald Kolmar, Dirk W. Heinz, Burkhard Tümmler, and Wolf-Dieter Schubert. (n.d.). Www.pnas.org. Crystal structure of the electron transfer complex rubredoxin–rubredoxin reductase of Pseudomonas aeruginosa. Retrieved April 21, 2022, from https://www.pnas.org/doi/full/10.1073/pnas.0702919104
  6. Li, Y., Liu, P. pan, & Ni, X. (2019, July 2). Molecular evolution and functional analysis of rubredoxin-like proteins in plants. BioMed Research International. Retrieved April 21, 2022, from https://www.hindawi.com/journals/bmri/2019/2932585/
  7. Libretexts. (2020, August 10). 7.12: Rubredoxin- a single-fe tetrathiolate protein. Chemistry LibreTexts. Retrieved April 21, 2022, from https://chem.libretexts.org/Bookshelves/Inorganic_Chemistry/Book3A_Bioinorganic_Chemistry_(Bertini_et_al.)/07%3A_Ferrodoxins_Hydrogenases_and_Nitrogenases_-_Metal-Sulfide_Proteins/7.12%3A_Rubredoxin-_A_Single-Fe_Tetrathiolate_Protein
  8. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2374124/
  9. Almeida AV;Jacinto JP;Guerra JPL;Vieira BJC;Waerenborgh JC;Jones NC;Hoffmann SV;Pereira AS;Tavares P; (n.d.). Structural features and stability of apo- and holo-forms of a simple iron-sulfur protein. European biophysics journal : EBJ. Retrieved April 21, 2022, from https://pubmed.ncbi.nlm.nih.gov/34009405/
  10. Rubredoxin. Rubredoxin - an overview | ScienceDirect Topics. (n.d.). Retrieved April 21, 2022, from https://www.sciencedirect.com/topics/biochemistry-genetics-and-molecular-biology/rubredoxin
  11. Bank, R. C. S. B. P. D. (n.d.). 1IRO: RUBREDOXIN (oxidized, fe(iii)) at 1.1 angstroms resolution. RCSB PDB. Retrieved April 21, 2022, from https://www.rcsb.org/structure/1IRO

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