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硫代-β-D-葡萄糖醛酸苷和硫代-β-D-葡萄糖苷的生物合成机制。

Mechanism of biosynthesis of thio- -D-glucuronides and thio- -D-glucosides.

作者信息

Dutton G J, Illing H P

出版信息

Biochem J. 1972 Sep;129(3):539-50. doi: 10.1042/bj1290539.

Abstract
  1. The thio-beta-d-glucosiduronic acids (thio-beta-glucuronides) of o-aminothiophenol, diethyldithiocarbamic acid, p-nitrothiophenol and thiophenol are formed biosynthetically in broken- and intact-cell preparations of mouse liver. 2. For this biosynthesis to occur in homogenates or microsomal fractions, UDP-glucuronic acid was required during incubation; glucose, glucuronic acid or UDP could not replace it. UDP was a product of the reaction. 3. The biosynthetic mechanism linking glucuronic acid to thiol and carbodithioic groups therefore requires UDP-glucuronyltransferase activity and resembles that forming the various types of O-glucuronides. 4. An analogous enzymic mechanism employing UDP-glucose synthesizes the thio-beta-d-glucosides of diethyldithiocarbamic acid and thiophenol in gut preparations of the mollusc Arion ater; this mechanism resembles that forming the O-glucosides. The thio-beta-d-glucosides are formed also in intact cells. 5. As expected from the distribution of O-glycosides, S-glucuronides of these aglycones were not detectable with the invertebrate, nor were the S-glucosides with the vertebrate. 6. Despite their similar biosyntheses, S- and O-beta-glycosides differ in susceptibility to hydrolysis by beta-glycosidases. Rat preputial-gland beta-glucuronidase hydrolysed thioglucuronides of o-aminothiophenol, diethyldithiocarbamic acid and p-nitrothiophenol, hydrolysis being inhibited by glucarolactone; the thioglucuronide of thiophenol was not hydrolysed by preputial-gland or liver beta-glucuronidase. The two S-glucosides resisted hydrolysis by beta-glucosidase from almond emulsin.
摘要
  1. 邻氨基硫酚、二乙基二硫代氨基甲酸、对硝基硫酚和硫酚的硫代-β-D-葡糖醛酸(硫代-β-葡糖醛酸苷)在小鼠肝脏破碎细胞和完整细胞制剂中通过生物合成形成。2. 为使这种生物合成在匀浆或微粒体部分发生,孵育期间需要尿苷二磷酸葡糖醛酸(UDP-葡糖醛酸);葡萄糖、葡糖醛酸或UDP不能替代它。UDP是该反应的产物。3. 因此,将葡糖醛酸与硫醇和二硫代氨基甲酸盐基团连接的生物合成机制需要UDP-葡糖醛酸基转移酶活性,并且类似于形成各种类型O-葡糖醛酸苷的机制。4. 一种利用UDP-葡萄糖的类似酶促机制在蛞蝓Arion ater的肠道制剂中合成二乙基二硫代氨基甲酸和硫酚的硫代-β-D-葡糖苷;这种机制类似于形成O-葡糖苷的机制。硫代-β-D-葡糖苷也在完整细胞中形成。5. 正如从O-糖苷的分布所预期的那样,这些苷元的S-葡糖醛酸苷在无脊椎动物中未检测到,S-葡糖苷在脊椎动物中也未检测到。6. 尽管它们的生物合成相似,但S-和O-β-糖苷在对β-糖苷酶水解的敏感性方面有所不同。大鼠包皮腺β-葡糖醛酸酶水解邻氨基硫酚、二乙基二硫代氨基甲酸和对硝基硫酚的硫代葡糖醛酸苷,水解受到葡糖醛酸内酯的抑制;硫酚的硫代葡糖醛酸苷未被包皮腺或肝脏β-葡糖醛酸酶水解。这两种S-葡糖苷抵抗杏仁乳化液β-葡糖苷酶的水解。

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