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Human glucocerebrosidase catalyses transglucosylation between glucocerebroside and retinol.

机译:人葡糖脑苷脂酶催化葡糖脑苷脂和视黄醇之间的转糖基化。

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摘要

The basal activity of human placental glucocerebrosidase is elevated 16-fold by n-pentanol when assayed using p-nitrophenyl beta-D-glucopyranoside (pNPGlc) as the beta-glucosidase substrate. This enhancement of activity is the result of the formation of a transglucosylation product, n-pentyl beta-D-glucoside, in rate-determining competition with the hydrolytic reaction. The transglucosylation product accounts for approximately 80% of the reaction product generated in the presence of n-pentanol (0.18 M) when either glucocerebroside or pNPGlc was used as the substrate. This stimulatory effect can be increased an additional 3-fold by the inclusion of phosphatidylserine (20 micrograms/ml) or sodium taurodeoxycholate (0.3%, w/v) in the incubation medium. In the presence of retinol, glucocerebrosidase also catalyses the synthesis of a novel lipid glucoside, retinyl glucoside, when either glucocerebroside or pNPGlc serves as the substrate. The reaction product was identified as retinyl beta-D-glucoside, based on its susceptibility to hydrolysis by almond beta-D-glucosidase and the subsequent release of equimolar amounts of retinol and glucose. The rate of retinyl-beta-glucoside formation is dependent on the concentration of retinol in the incubation medium, reaching saturation at approximately 0.3 mM retinol. Retinyl beta-D-glucoside is a substrate for two broad-specificity mammalian beta-glucosidases, namely the cytosolic and membrane-associated beta-glucosidases of guinea pig liver. However, retinyl beta-D-glucoside is not hydrolysed by placental glucocerebrosidase. These data indicate that the glucocerebrosidase-catalysed transfer of glucose from glucocerebroside to natural endogenous lipid alcohols, followed by the action of a broad-specificity beta-glucosidase on the transglucosylation product, could provide mammals with an alternative pathway for the breakdown of glucocerebroside to glucose and ceramide.
机译:当使用对硝基苯基β-D-吡喃葡萄糖苷(pNPGlc)作为β-葡萄糖苷酶底物进行分析时,正戊醇可将人胎盘葡萄糖脑苷脂酶的基础活性提高16倍。活性的这种增强是在速率决定与水解反应的竞争中形成转葡糖基化产物正戊基β-D-葡萄糖苷的结果。当使用葡糖脑苷或pNPGlc作为底物时,转葡糖基化产物约占在正戊醇(0.18 M)存在下产生的反应产物的80%。通过在培养培养基中加入磷脂酰丝氨酸(20微克/毫升)或牛磺脱氧胆酸钠(0.3%,w / v),可以将这种刺激作用再提高3倍。在视黄醇的存在下,当葡糖脑苷或pNPGlc用作底物时,葡糖脑苷脂酶也催化新型脂质葡糖苷,视黄基葡糖苷的合成。根据反应产物对杏仁β-D-葡糖苷酶水解的敏感性以及随后释放等摩尔量的视黄醇和葡萄糖,将其鉴定为视黄基β-D-葡萄糖苷。视黄基-β-葡萄糖苷的形成速率取决于孵育培养基中视黄醇的浓度,视黄醇浓度约为0.3 mM时达到饱和。视黄基β-D-葡萄糖苷是两种广谱性哺乳动物β-葡萄糖苷酶(即豚鼠肝脏的胞浆和膜相关β-葡萄糖苷酶)的底物。但是,视黄基β-D-葡萄糖苷不会被胎盘葡糖脑苷脂酶水解。这些数据表明,葡糖脑苷脂酶催化的葡萄糖从葡糖脑苷脂到天然内源性脂质醇的转移,然后是广谱β-葡糖苷酶对转葡糖基化产物的作用,可以为哺乳动物提供替代途径,将葡糖脑苷脂分解为葡萄糖和神经酰胺。

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