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Jorge Ramos
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TEXT (t) REFERENCES FOR STUDENTS


t1.Zuber, H., Sidler, W., Fuglistaller, P., Brunisholz, R.,and Theiler, R., Molecular Biology of the Photosynthetic Apparatus, pp 183-195. Structural Studies on the Light-Harvesting Polypeptides from Cianobacteria and Bacteria. Cold Spring Harbor Laboratory, New York, 1985.
t2.Voet, D., Voet, J., Lehrbuch der Biochemie, pp 529-561. Wiley-VCH 2002
t3.Loach, P.,Parkes, P., Miller, J., Hinchigeri, S., and Callahan, P., Molecular Biology of the Photosynthetic Apparatus, pp 197-209. Structure-Function Relationships of the Bacteriochlorophyll-Protein Light-Harvesting Complex of Rhodospirillum rubrum. Cold Spring Harbor Laboratory, New York, 1985.
t4.Danks, S., Evans, E., and Whittaker, P., Photosynthetic Systems, Structure, Function and Assembly pp 36-77. Photosynthetic Phosphorilation. Wiley, New York, 1983.
t5.Danks, S., Evans, E., and Whittaker, P., Biology, The World of life pp 189-202. Advances in Genetics. Scott Foresman and Company, Illinois, 1990.
t6.Cotton, F., Wilkinson, and G., Gaus, P., Basic Inorganic Chemistry. Aspects of Simmetry and Point Groups, pp 785-810. Wiley, 1976.
t7.Gerloch, M., Orbitals, Terms, and States. Wiley, New York, 1986.
t8.Peter W. Atkins, Kurzlehrbuch Physikalische Chemie pp 654-659. Wiley-VCH, 1999.
t9.Apel, K. (1979). Phytochrome-induced appearance of mRNA activity for the apoprotein of the light harvesting clorophyll a/b protein of barley(Hordeum vulgare). Eur. J. Biochem. 97:183-188.
t10.Hoober, J. (1984). Biosynthetic Pathways and regulation. Chloroplasts, pp 223-234. Plenum Press, New York.
t11.Govindjee, Amesz, J., Fork, D. (1986). Fuorescence of Pigments in Vitro. Light emmission by Plants and Bacteria, pp 104-105. Academic Press, Florida.
t12.Prigogine, I. (1976). Termodinámica de la vida. Biología Molecular, pp 199-204. H. Blume Ediciones, Madrid, España.


INTERNET (i) REFERENCES FOR SLACKERS


i1.Fulcher, T. K., J. T. Beatty, and M. R. Jones. 1998. A demonstration of the key role played by the PufX protein in the functional and structural organization of native and hybrid bacterial photosynthetic core complexes. J. Bacteriol. 180:642-646 [Abstract/Full Text].
i2.Hu, X., and K. Schulten. 1998. A model for the light harvesting complex 1 (B875) of Rhodobacter sphaeroides. Biophys. J. 75:683-694 [Abstract/Full Text].
i3.Hu, X., T. R. Damjanovic, and K. Schulten. 1998. Architecture and function of the light-harvesting apparatus of purple bacteria. Proc. Natl. Acad. Sci. USA 95:5935-5941 [Abstract/Full Text].
i4.Jungas, C., J.-L. Ranck, J.-L. Rijaud, P. Joliot, and A. Verméglio. 1999. Supramolecular organisation of the photosynthetic apparatus of Rhodobacter sphaeroides. EMBO J. 18:534-542 [Abstract/Full Text].
i5.McGlynn, P., W. H. J. Westerhuis, M. R. Jones, and C. N. Hunter. 1996. Consequences for the organisation of reaction centre LH1 core complexes of Rhodobacter sphaeroides arising from/by deletion of amino acid residues from the C-terminus of the LH1 -polypeptide. J. Biol. Chem. 271:3285-3292 [Abstract/Full Text].
i6.Pinta, V., Picaud, M., Reiss-Husson, F., Astier, C. (2002). Rubrivivax gelatinosus acsF (Previously orf358) Codes for a Conserved, Putative Binuclear-Iron-Cluster-Containing Protein Involved in Aerobic Oxidative Cyclization of Mg-Protoporphyrin IX Monomethylester. J. Bacteriol. 184: 746-753
[Abstract/Full Text].

i7.Yurkov, V. V., and J. T. Beatty. 1998. Aerobic anoxygenic phototrophic bacteria. Microbiol Mol. Biol. Rev. 62:695-724. [Abstract/Full Text].
i8.Vasil'ev, S. , Orth, P. , Zouni, A. , Owens, T. G. & Bruce, D. (2001) Proc. Natl. Acad. Sci. USA 98, 8602-8607
[Abstract/Full Text].

i9.Kuhl, H. , Kruip, J. , Seidler, A. , Krieger-Liszkay, A. , Bunker, A. , Bald, D. , Scheidig, A. J. & Rogner, M. (2000) J. Biol. Chem. 275, 20652-20659 [Abstract/Full Text].
i10.Nishiyama, Y., Hayashi, H., Watanabe, T., and Murata, N. (1994) Plant Physiol. 105, 1313-1319 [Abstract/Full Text].


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