Биологический каталог

Биология антибиотиков животного происхождения

Автор В.Н.Кокряков

. Role of charge and hydrophobic interactions in the action of the bactericidal/permeability-increasing protein of neutrophils on gram-negative bacteria ff J. Clin. Invest. 1983. Vol. 71. P. 540—549.

Weiss J., Muello K., Victor Af., Elsbach P. The role of lipopolysaccharides in the action of the bactericidal/permeability-increasing neutrophil protein on the bacterial envelope ff J. Immun. 1984. Vol. 132. P. 3109—3115.

Weiss J., Kao L, Victor Af., Elsbach P. Oxygen-independent intracellular and oxygen-dependent extracellular killing of Escherichia coli S15 by human polymorphonuclear leukocytes / J. Clin. Invest. 7955. Vol. 76. P. 206—212.

Weiss J., Hutzler Af., Kao L Environmental modulation of lipopolysaccharide chain length alters the sensitivity of Escherichia coli to the neutrophil bactericidal/permeability-increasing protein# Infect, and Immun. 1986. Vol.51. P.594—599.

Weiss J., Kao L, Victor Af., Elsbach P. Respiratory burst facilitates the digestion of Escherichia coli killed by polymorphonuclear leukocyles # Infect and Immun 7957 Vol.55. P.2141—2147.

Weiss J., Wright G., BekkersA. C. etal. Conversion of pig pancreas phospholipase A2 by protein engineering into enzyme active against Escherichia coli treated with the bactericidal/permeability increasing protein If J. Biol. Chem. 7997. Vol. 266. P. 4162—4167.

Weiss J., Elsbach P., Shu C. et al. Human bactericidal/ permeability-increasing protein and a recombinant NH2-terminal fragment cause killing of serum-resistant gram-negative bacteria in whole blood and inhibit tumor necrosis factor release induced by the bacteria If J. Clin. Invest 7992. Vol.90. P. 1122—1130. Weiss J., Inada Af., Elsbach P., Crowl R. Af. Structural determinants of the action against Escherichia coli of a human inflammatory fluid phospholipase A2 in conceit with polymorphonuclear leukocytes ff J. Biol. Chem. 7994. Vol.269. P.26 331—26 337.

Weiss S. J., Young J., LoBuglio A. et al. Role of hydrogen peroxide in neutrophil mediated destruction of cultured endothelial cells If J. Clin. Invest. 7987. Vol. 68. P.714— 721.

Weiss S. J., Peppin G., Ortiz X. et al. Oxidative autoactivation of latent collagenase by human neutrophils i Science. 7985. Vol. 227. P. 747—749.

Westbrook E. Af., Lehrer R. I., Selsted Af. E. Characterization of two crystal forms of neutrophil cationic protein NP-2, a naturally broad-spectrum antimicrobial agent from leukocytes I J. Mol. Biol. 7984. Vol. 178. P. 783—785.

Westerhoff H. V., Hendler R. W., Zasloff Af., Juretic D. Interactions between a new class of eucaryotic antimicrobial agents and isolated rat liver mitochondria В Biochim. et biophys. acta. 1989a. Vol.975. P.361—369.

Westerhoff H. V., Juretic D., Hendler R. W., Zasloff Af. Magainin and the disruption of membrane-linked free-energy transduction Я Proc. Nat. Acad. Sci. USA. 7989b. Vol. 86. P. 6597—6601.

Wieprecht Т., Dathe Af., Beyermann Af. et al. Peptide hydrophobicity controls the activity and selectivity of magainin 2 amide in interaction with membranes / Biochemistry. 7997. Vol.36, N20. P.6124—6132.

Wilde C. G, Seilhamer J. J., McGrogan Af. et al. Bactericidal/permeability-increasing protein and lipopolysaccharide (LPS) binding protein: LPS binding properties and effects on LPS-mediated cell activation Я J. Biol. Chem. 1994. Vol. 269. P. 17 411—17 416.

Wilson С. B. Immunological basis for increased susceptibility of the neonate to infection Я J. Pediatr. 7986. Vol. 108, N1. P. 1—12.

Wilson L., Spitznagel J. K. Molecular and structural damage to Escherichia coli produced by antibody, complement and lysozyme systems Я J. Bacteriol. 7968. Vol.96. P. 1339—1348.

Winterbourn С. C. Myeloperoxidase as an effective inhibitor of hydroxyl radical production implications for the oxidative reactions of neutrophils ff J. Clin. Invest. 7986. Vol.78, N2. P.545—550.

Winterbourn С. C, Garcia R. C, Segal A. W. Production of the superoxide adduct of myeloperoxidase (compound Ш) by stimulated human neutrophils and its reactivity with hydrogen peroxide and chloride ff Biochem. J. 7985. Vol. 228. P. 583—592.

Wright C. D., Nelson R. D. Candidacidal activity of myeloperoxidase: therapeutic influence of the enzyme in vivo ff Infect, and Immun. 7985. Vol.47, N2. P. 363—365,

Wright С D., Nelson R. D. Candidacidal activity of myeloperoxidase: Characterization of myeloperoxidase-yeast complex formation ff Biochem. and Biophys. Res. Communs. 7988. Vol. 154. P. 809—817.

Wright C. D., Bowie J. U., Gray G. R., Nelson R. D. Candidacidal activity of myeloperoxidase: Mechanisms of inhibitory influence of soluble cell wall m arm an ff Infect, and Immun..7983. Vol. 42. P. 76—80.

Wright C. D., Bowie J. U., Nelson R. D. Influence of yeast mannan on release of myeloperoxidase by human neutrophils: Determination of structural features required for formation of myeloperoxidase-mannan-neutrophil complex ff Infect and Immun. 1984a. Vol.43. P.467-471.

Wright C. D., Herron Af. /., Gray G. R. et al. Influence of yeast mannan on human neutrophil function: inhibition of release of myeloperoxidase related to carbohydrate-binding property of the enzyme # Infect, and Immun. 1984b. Vol. 43. P. 472—476.

Wright G. C, Ooi С E., Weiss J., Elsbach P. Purification of a cellular (granulocyte) and an extracellular (serum) phospholipase A2 that participate in the destruction of Escherichia coli in a rabbit inflammatory exudate ff J. Biol. Chem. 7990л Vol.265. P. 6675—6681. Wright G. С, Weiss J., Kim S. K. et al. Bacterial phospholipid hydrolysis enhances the destruction of Escherichia coli ingested by rabbit neutrophils I J. Clin. Invest. 1990b. Vol.85. P. 1925—1935.

Wright J., Yoshimoto S., Offner G. D. et al. Structural characterization of the isoenzy-matic forms of human myeloperoxidase ff Biochim. et biophys. acta. 1987. Vol.915. P. 68—76.

WrightS. D., Tobias P. S., Ulevitch R. J., Ramos Я A. Lipopolysaccharide (LPS) Binding Protein opsoni

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