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<Structure load='3HAN' size='350' frame='true' align='right' caption='Subunit of Bacteriorhodopsin; Polypeptide Polymer' scene='Insert optional scene name here' />
<Structure load='3HAN' size='350' frame='true' align='right' caption='Subunit of Bacteriorhodopsin; Polypeptide Polymer' scene='Insert optional scene name here' />
==Structure==
==Structure==
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Bacteriorhodopsin is an integral membrane protein that functions as a proton pump. It has a primary structure that includes 248 amino acids.<ref>Khorana, H. G.; Gerber, G. E.; Herlihy, W. C.; Gray, C. H.; Anderegg, R. J.; Nihei, K.; Biemann, K. Amino acid sequence of bacteriorhodopsin. ''Proc. Natl. Acad. Sci.'' USA '''1997''', 76 (10), 5046-5050.</ref>The secondary structure is seen in the seven alpha helices and two beta strands that are antiparallel. The tertiary structure includes three domains and an alpha barrel motif. <ref>Edman, K.; Nollert, P.; Royant, A.; Belrhali, H.; Pebay-Peyroula, E.; Hajdu, J.; Neutze, R.; Landau, E. M. High resolution x-ray structure of an early intermediate in the bacteriorhodopsin photocycle. ''RSCB PDB''. '''1999''', 401 (6755), 822-826.</ref> The quaternary structure has C3 symmetry and is a homotrimer with three subunits.<ref>Ovchinnikov, Y. A.; Abdulaev, N. G.; Feigina, M. Y.; Kiselev, A. V.; Lobanov, N. A. The structural basis of the functioning of bacteriorhodopsin: an overview. ''ICHB''. '''1979''', 100 (2), 219-224.</ref>
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Bacteriorhodopsin is an integral membrane protein that functions as a proton pump. It has a primary structure that includes 248 amino acids with a molecular weight of 26,800.58 Da.<ref>Khorana, H. G.; Gerber, G. E.; Herlihy, W. C.; Gray, C. H.; Anderegg, R. J.; Nihei, K.; Biemann, K. Amino acid sequence of bacteriorhodopsin. ''Proc. Natl. Acad. Sci.'' USA '''1997''', 76 (10), 5046-5050.</ref>The secondary structure is seen in the seven alpha helices and two beta strands that are antiparallel. The tertiary structure includes three domains and an alpha barrel motif. <ref>Edman, K.; Nollert, P.; Royant, A.; Belrhali, H.; Pebay-Peyroula, E.; Hajdu, J.; Neutze, R.; Landau, E. M. High resolution x-ray structure of an early intermediate in the bacteriorhodopsin photocycle. ''RSCB PDB''. '''1999''', 401 (6755), 822-826.</ref> The quaternary structure has C3 symmetry and is a homotrimer with three subunits.<ref>Ovchinnikov, Y. A.; Abdulaev, N. G.; Feigina, M. Y.; Kiselev, A. V.; Lobanov, N. A. The structural basis of the functioning of bacteriorhodopsin: an overview. ''ICHB''. '''1979''', 100 (2), 219-224.</ref>

Revision as of 22:47, 6 December 2022

3D structure of Bacteriorhodopsin

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References

  1. Khorana, H. G.; Gerber, G. E.; Herlihy, W. C.; Gray, C. H.; Anderegg, R. J.; Nihei, K.; Biemann, K. Amino acid sequence of bacteriorhodopsin. Proc. Natl. Acad. Sci. USA 1997, 76 (10), 5046-5050.
  2. Edman, K.; Nollert, P.; Royant, A.; Belrhali, H.; Pebay-Peyroula, E.; Hajdu, J.; Neutze, R.; Landau, E. M. High resolution x-ray structure of an early intermediate in the bacteriorhodopsin photocycle. RSCB PDB. 1999, 401 (6755), 822-826.
  3. Ovchinnikov, Y. A.; Abdulaev, N. G.; Feigina, M. Y.; Kiselev, A. V.; Lobanov, N. A. The structural basis of the functioning of bacteriorhodopsin: an overview. ICHB. 1979, 100 (2), 219-224.
  4. Lanyi, J. K.; Varo, G. The photocycles of bacteriorhodopsin. Isr. J. Chem. 1995, 35 (3-4), 365-385.
  5. Ovichinnikov, Y. A.; Rhodopsin and bacteriorhodopsin structure--function relationships. IBCH. USSR 1982, 148 (2), 179-191.
  6. Noort, J. Unraveling bacteriorhodopsin. Biophys. J. 2005, 88 (2), 763-764.
  7. Stoeckenius, W.; Bogomolni, R. A. Bacteriorhodopsin and related pigments of halobacteria. Ann. Rev. Biochem. 1982, 52, 587-616.
  8. Kouyama, T.; Kinosita, K.; Ikegami, A. Structure and Function of Bacteriorhodopsin. Adv. Biophys. 1988, 24, 123–175.
  9. Haupts, U.; Tittor, J.; Oesterhelt, D. Closing in on bacteriorhodopsin: progress in understanding the molecule. Annu. Rev. Biophys. Biomol. Struct. 1999, 28, 367-399.
  10. Mogi, T.; Stern, L. J.; Marti, T.; Chao, B. H.; Khorana, H. G. Aspartic Acid Substitutions Affect Proton Translocation by Bacteriorhodopsin. Proc. Natl. Acad. Sci. USA. 1988, 85 (12), 4148–4152.
  11. Butt, H. J.; Fendler, K.; Bamberg, E.; Tittor, J.; Oesterhelt, D. Aspartic acids 96 and 85 play a central role in the function of bacteriorhodopsin as a proton pump. EMBO. 1989, 8 (6), 1657-1663
  12. Wong, C. W.; Ko, L. N.; Huang, H. J.; Yang, C. S.; Hsu, S. H. Engineered bacteriorhodopsin may induce lung cancer cell cycle arrest and suppress their proliferation and migration. MDPI. 2021, 26 (23).
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