Effect of bile acid oxazoline derivatives on microorganisms participating in 7 alpha-hydroxyl epimerization of primary bile acids.
نویسندگان
چکیده
We tested bile acid oxazoline derivatives of chenodeoxycholic (CDC-OX), 7-ketolithocholic (7-KLC-OX), ursodeoxycholic (UDC-OX), and deoxycholic (DC-OX) as inhibitors of the 7-epimerization of the primary bile acids cholic acid (CA) and CDC in cultures of four species of bacteria and the human fecal flora. The organisms tested elaborate a 7 alpha- and/or 7 beta-hydroxysteroid dehydrogenase (HSDH); they were Escherichia coli (7 alpha-HSDH), Bacteroides fragilis (7 alpha-HSDH), Clostridium absonum (7 alpha- and 7 beta-HSDH) and Eubacterium aerofaciens (7 beta-HSDH). None of the oxazolines affected 7 alpha-OH oxidation of CA or CDC by E. coli or the growth of the organism. All the oxazolines (except UDC-OX) inhibited the growth of B. fragilis and its 7 alpha-HSDH. In contrast, only DC-OX blocked 7 alpha-OH epimerization of CA by C. absonum. Surprisingly, the other three oxazolines enhanced 7 alpha-OH epimerization of CA, but not that of CDC, which was inhibited (CDC-OX greater than 7-KLC-OX much greater than UDC-OX). Enzymic data suggest that CDC-OX in the presence of CA can induce a greater level of both 7 alpha- and 7 beta-HSDH than CA or CDC-OX alone, CDC-OX being more toxic in the presence of CDC. Formation of urso-bile acid from 7-keto substrates by E. aerofaciens is totally blocked by the oxazolines (except UDC-OX). Similarly, suppression of urso-bile acid formation from primary bile acids by the human fecal flora was evident with DC-OX greater than 7-KLC-OX greater than CDC-OX much greater than UDC-OX, the last being ineffective. The inhibitory activity of the oxazolines on the 7-dehydroxylation of primary bile acids by human fecal flora followed the same order.
منابع مشابه
Effect of bile acid oxazoline derivatives on microorganisms participating in 7~hydroxyl epimerization
We tested bile acid oxazoline derivatives of chenodeoxycholic (CDC-OX), 7-ketolithocholic (7-KLC-OX), ursodeoxycholic (UDC-OX), and deoxycholic (DC-OX) as inhibitors of the 7-epimerization of the primary bile acids cholic acid (CA) and CDC in cultures of four species of bacteria and the human fecal flora. The organisms tested elaborate a 7aand/or 7Phydroxysteroid dehydrogenase (HSDH); they were...
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An unidentified gram-positive anaeroic organism capable of dehydrogenating the 7 beta-hydroxy group of ursodeoxycholic acid was recovered from human feces. By combined action of this organism with the ordinary 7 alpha-dehydrogenating bacteria, chenodeoxycholic acid and cholic acid alike were readily converted into their respective 7 beta-epimers and the reverse reactions were also carried out. ...
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Six strains of lecithinase-lipase-negative Clostridia, isolated from human feces, were capable of oxidizing chenodeoxycholic acid to 3a-hydroxy-7-keto-5P-cholanoic acid and of epimerizing it to ursodeoxycholic acid. The identity of the reaction products was confirmed by coniparing their mass spectra, obtained by combined gas-liquid chromatography-mass spectrometry, with those of authentic refer...
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The substrate specificity of cholylglycine hydrolase has been investigated using bile acid conjugates with modifications in the steroid ring system, the side chain, or the amino acid moiety. Epimerization at C-3 and C-7 did not affect the activity of the enzyme while oxidation of the three nuclear hydroxyl groups reduced the affinity of the enzyme toward the substrate. Elongation of the side ch...
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ورودعنوان ژورنال:
- Journal of lipid research
دوره 24 12 شماره
صفحات -
تاریخ انتشار 1983