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Enzymatic Redox Cofactor Regeneration in Organic Media:Functionalization and Application of Glycerol Dehydrogenase and Soluble Transhydrogenase in Reverse Micelles

机译:有机介质中酶促氧化还原辅因子的再生:甘油反胶束中甘油脱氢酶和可溶性转氢酶的功能化及应用

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摘要

An enzymatic system for the regeneration of redox cofactors NADH and NADPH was investigated in nanostructural reverse micelles using bacterial glycerol dehydrogenase (GLD) and soluble transhydrogenase (STH).Catalytic conversion of NAD+ to NADH was realized in the sodium dioctylsulfosuccinate (AOT)/isooctane reverse micellar system harboring GLD and a sacrificial substrate,glycerol.The initial rate of NADH regeneration was enhanced by exogenous addition of ammonium sulfate into the reverse micelles,suggesting that NH4"1" acts as a monovalent cationic activator.STH was successfully entrapped in the AOT/isooctane reverse micelles as well as GLD and was revealed to be capable of catalyzing the stoichiometric hydrogen transfer reaction between NADP+ and NADPH in reverse micelles.These results indicate that GLD and STH have potential for use in redox cofactor recycling in reverse micelles,which allows the use of catalytic quantities of NAD(P)H in organic media.
机译:使用细菌甘油脱氢酶(GLD)和可溶性转氢酶(STH)在纳米结构反胶束中研究了氧化还原辅因子NADH和NADPH再生的酶系统,在二辛基磺基琥珀酸钠(AOT)/异辛烷反向钠中实现了NAD +到NADH的催化转化。胶束系统包含GLD和牺牲性底物甘油。通过向反胶束中外加硫酸铵,可以提高NADH的初始再生速率,这表明NH4“ 1”是一价阳离子活化剂。STH已成功嵌入AOT /异辛烷反胶束以及GLD,被发现能够催化反胶束中NADP +和NADPH之间的化学计量的氢转移反应。在有机介质中使用催化量的NAD(P)H。

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