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Characterization of different plasmid-borne dihydropteroate synthases mediating bacterial resistance to sulfonamides.

Plasmid-borne resistance to sulfonamides was studied in both newly isolated and earlier characterized R plasmids. Two different classes of drug-resistant dihydropteroate synthases were found to be responsible for most cases of plasmid-mediated sulfonamide resistance. The plasmid-coded enzymes could...

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Main Authors: Swedberg, G, Sköld, O, Clowes, M M, Lynch, C M, Miller, A D, Miller, D G, Osborne, W R, Clowes, A W, Suarez, J E, Chater, K F, Takeshita, S, Gal, D, Leclerc, G, Pickering, J G, Riessen, R, Weir, L, Isner, J M, Polacheck, I, Kwon-Chung, K J, Hopper, D J, Kemp, P D, Zheng, L P, Brogi, E, Kearney, M, Pu, L Q, Bunting, S, Ferrara, N, Symes, J F, Ishii, J, Nakae, T, Bruni, C B, Musti, A M, Frunzio, R, Blasi, F, Tenenhouse, H S, Werner, A, Biber, J, Ma, S, Martel, J, Roy, S, Murer, H, Satta, G, Canepari, P, Botta, G, Fontana, R, Kane, D W, Tesauro, T, Koizumi, T, Gupta, R, Newman, J H, Leduc, M, van Heijenoort, J, Clemson, B, Gaul, L, Gubin, S S, Campsey, D M, McConville, J, Nussberger, J, Zelis, R, Ray, Paul H., Benedict, Charles D., Goldblum, S E, Brann, T W, Ding, X, Pugin, J, Tobias, P S, Streicher, S L, Tyler, B, Hajjar, K A, Reynolds, C M, Hanson, B A, Lester, R L, Spiegelberg, H L, Beck, L, Kocher, H P, Fanslow, W C, Lucas, A H, Haldenwang, W G, Banner, C D, Ollington, J F, Losick, R, Hoch, J A, O'Connor, M B, Sonenshein, A L, Garcia, S, Nascimento, J H, Bonfa, E, Levy, R, Oliveira, S F, Tavares, A V, de Carvalho, A C, Leonardo, J M, Goldberg, R B, MacDonald, P N, Ritter, C, Brown, A J, Slatopolsky, E, Uemichi, T, Liepnieks, J J, Benson, M D, Chatterjee, Arun K., Roehl, R A, Vinopal, R T, Engelhardt, J F, Zepeda, M, Cohn, J A, Yankaskas, J R, Wilson, J M, Murgola, E J, Bryant, J E, Benson, D R, Arp, D J, Burris, R H, Watanabe, H, Hashimoto, H, Mitsuhashi, S, Seko, Y, Minota, S, Kawasaki, A, Shinkai, Y, Maeda, K, Yagita, H, Okumura, K, Sato, O, Takagi, A, Tada, Y, Fairweather, N F, Orr, E, Holland, I B, Braun, V, Frenz, J, Hantke, K, Schaller, K, Lamba, Parveen, Webster, Dale A., Mestril, R, Chi, S H, Sayen, M R, O'Reilly, K, Dillmann, W H, Carothers, A M, McFall, E, Palchaudhuri, S, Clerici, M, Wynn, T A, Berzofsky, J A, Blatt, S P, Hendrix, C W, Sher, A, Coffman, R L, Shearer, G M, Heincz, M C, Murphey-Corb, M, Kong, H L, Murray, M L, Abraham, W M, Sielczak, M W, Ahmed, A, Cortes, A, Lauredo, I T, Kim, J, Pepinsky, B, Benjamin, C D, Leone, D R, Lobb, R R, Garcia, J R, Hiatt, W R, Peters, J, Sypherd, P S, Weber, H, Taylor, D S, Molloy, C J, Blumenthal, R M, Dennis, P P, Humbert, R, Simoni, R D, Matkovic, V, Jelic, T, Wardlaw, G M, Ilich, J Z, Goel, P K, Wright, J K, Andon, M B, Smith, K T, Heaney, R P, Felton, J, Michaelis, S, Wright, A, Lopez, P, Perez Ureña, M T, Garcia, E, Espinosa, M, Isaacs, R D, Marsh, R C, Hepburn, M L
格式: Artigo
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出版: 1980
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總結:Plasmid-borne resistance to sulfonamides was studied in both newly isolated and earlier characterized R plasmids. Two different classes of drug-resistant dihydropteroate synthases were found to be responsible for most cases of plasmid-mediated sulfonamide resistance. The plasmid-coded enzymes could be completely separated from their chromosomal counterpart and also showed differences in heat stability and molecular size. The resistant and chromosomal enzymes could bind the normal substrate, p-aminobenzoic acid, with equal efficiency. In contrast, sulfonamide binding was about 10,000 times lower with the plasmid-coded enzymes than with the chromosomal enzyme. Another substrate analog, p-aminosalicylic acid, on the other hand, inhibited chromosomal and plasmid-mediated enzymes to a similar extent. Evidence was also found for the existence of a plasmid-borne resistance mechanism independent of drug-insensitive enzymes.