Biosynthesis of uridine diphosphate N-acetyl-L-fucosamine in a cell-free system from Salmonella arizonae O:59
Biochemistry (Moscow) - 2005
Tóm tắt
The conversion of uridine diphosphate N-acetyl-D-glucosamine into uridine diphosphate N-acetyl-L-fucosamine was demonstrated with enzymes from cytoplasmic fraction of Salmonella arizonae O:59 cells in the presence of NAD+ (NADP+) and NADPH. The reaction product was identified by ion-pair, reverse-phase HPLC with the use of synthetic nucleoside diphosphate sugar standards under conditions specially developed for separation of uridine diphosphate 2-acetamido-2,6-dideoxyhexoses. L-Fucose dehydrogenase from porcine liver was shown to be applicable for determination of N-acetyl-L-fucosamine, this enzyme being used to confirm L-configuration of the amino sugar residue in the sugar nucleotide formed.
Từ khóa
Tài liệu tham khảo
Lindberg, B. (1990) Adv. Carbohydr. Chem. Biochem., 48, 279–318.
Knirel, Yu. A., and Kochetkov, N. K. (1994) Biochemistry (Moscow), 59, 1325–1384.
Jansson, P.-E. (1999) in Endotoxin in Health and Disease (Brade, H., Opal, S. M., Vogel, S. N., and Morrison, D. C., eds.) Marcel Dekker, New York-Basel, pp. 155–178.
Kamerling, J. P. (2000) in Streptococcus pneumoniae: Molecular Biology and Mechanisms of Disease (Tomacz, A., ed.) Mary Ann Liebert Inc., Larchmont, N. Y., pp. 81–114.
Moreau, M., Richards, J. C., Fournier, J.-M., Byrd, R. A., Karakawa, W. W., and Vann, W. F. (1990) Carbohydr. Res., 201, 285–297.
Cryz, S. J., Pitt, T. L., Fuerer, E., and Germanier, R. (1984) Infect. Immun., 44, 508–513.
Thakker, M., Park, J. S., Carey, V., and Lee, J. C. (1998) Infect. Immun., 66, 5183–5189.
Shibaev, V. N. (1986) Adv. Carbohydr. Chem. Biochem., 44, 277–339.
Field, R. A., and Naismith, J. H. (2003) Biochemistry, 42, 7637–7642.
Samuel, G., and Reeves, P. (2003) Carbohydr. Res., 338, 2503–2519.
Druzhinina, T. N., Goshadze, M. Sh., Streshinskaya, G. M., and Shibaev, V. N. (1988) Bioorg. Khim., 14, 1690–1694.
Druzhinina, T. N., Goshadze, M. Sh., Streshinskaya, G. M., Shibaev, V. N., and Naumova, I. B. (1991) Bioorg. Khim., 17, 671–677.
Sau, S., Bhasin, N., Wann, E. R., Lee, J. C., Foster, T. J., and Lee, Y. C. (1997) Microbiology, 143, 2395–2405.
Dean, C. R., Franklund, C. V., Retief, D. J., Coyne, M. J., Hatano, K., Evans, D. J., Pier, G. B., and Goldberg, J. H. (1999) J. Bacteriol., 181, 4275–4284.
Lee, J. C., and Lee, Y. C. (1999) in Genetics of Bacterial Polysaccharides (Goldberg, J. H., ed.) CRC Press, Boca Raton, pp. 185–205.
Jiang, S.-M., Wang, L., and Reeves, P. R. (2001) Infect. Immun., 69, 1244–1255.
D’Souza, J., Wang, L., and Reeves, P. (2002) Gene, 297, 123–127.
Vinogradov, E. V., Knirel, Yu. A., Lipkind, G. M., Shashkov, A. S., Kochetkov, N. K., Stanislavsky, E. S., and Kholodkova, E. V. (1987) Bioorg. Khim., 13, 1275–1281.
Illarionov, P. A., Torgov, V. I., Hancock, I., and Shibaev, V. N. (2000) Russ. Chem. Bull., 49, 1891–1894.
Illarionov, P. A., Torgov, V. I., Hancock, I., and Shibaev, V. N. (2001) Russ. Chem. Bull., 50, 1303–1308.
Schachter, H., Sarney, J., McGuire, E. J., and Roseman, S. (1969) J. Biol. Chem., 244, 4785–4792.
Payne, S. M., and Ames, B. N. (1982) Analyt. Biochem., 123, 151–161.
Palmieri, M. J., Berry, G. T., Player, D. A., Rogers, S., and Segal, S. (1991) Analyt. Biochem., 194, 388–393.
Lagunas, R., and Diez-Masa, J. C. (1994) Analyt. Biochem., 216, 188–194.
Tomiya, M., Ailor, E., Lawrence, S. M., Betenbaugh, M. J., and Lee, Y. C. (2001) Analyt. Biochem., 293, 129–137.
Rabina, J., Maki, M., Savilahti, E. M., Jarvinen, N., Penttila, L., and Renkonen, R. (2001) Glycoconjugate J., 18, 799–805.
Finch, P. R., Yuen, R., Schachter, H., and Moscarello, M. A. (1969) Analyt. Biochem., 31, 296–305.
Tsay, G. C., and Dawson, G. (1977) Analyt. Biochem., 78, 423–427.
Cohenfold, M. A., Abraham, A., Abraham, J., and Dain, J. A. (1989) Analyt. Biochem., 177, 172–177.
Kawamura, T., Kimura, M., Yamamori, S., and Ito, E. (1978) J. Biol. Chem., 253, 3595–3601.
Kawamura, T., Ishimoto, N., and Ito, E. (1979) J. Biol. Chem., 254, 8457–8465.
Yoneyama, T., Koike, Y., Arakawa, H., Yokoyama, K., Sasaki, Y., Kawamura, T., Araki, Y., Ito, E., and Takao, S. (1982) J. Bacteriol., 149, 15–21.
Kawamura, T., Ichihara, N., Sugiyama, S., Yokota, H., Ishimoto, N., and Ito, E. (1985) J. Biochem., 98, 105–116.
Meier-Dieter, U., Starman, R., Barr, K., Mayer, H., and Rick, P. D. (1990) J. Biol. Chem., 265, 13490–13497.
Kiser, K. B., Bhasin, N., Deng, L., and Lee, J. C. (1999) J. Bacteriol., 181, 4818–4824.
Kneidinger, B., O’Riordan, K., Li, J., Brisson, J.-R., Lee, J. C., and Lam, J. S. (2003) J. Biol. Chem., 278, 3615–3627.