首页> 外文期刊>Journal of the American Chemical Society >D-Fructose-6-Phosphate Aldolase-Catalyzed One-Pot Synthesis of Iminocyclitols
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D-Fructose-6-Phosphate Aldolase-Catalyzed One-Pot Synthesis of Iminocyclitols

机译:D-果糖-6-磷酸醛缩酶催化一锅合成亚氨基环醇。

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A one-pot chemoenzymatic method for the synthesis of a variety of new iminocyclitols from readily available, non-phosphorylated donor substrates has been developed. The method utilizes the recently discovered fructose-6-phosphate aldolase (FSA), which is functionally distinct from known aldolases in its tolerance of different donor substrates as well as acceptor substrates. Kinetic studies were performed with dihydroxyacetone (DHA), the presumed endogenous substrate for FSA, as well as hydroxy acetone (HA) and 1 -hydroxy-2-butanone (HB) as donor substrates, in each case using glyceraldehyde-3-phosphate as acceptor substrate. Remarkably, FSA used the three donor substrates with equal efficiency, with K_(cat)K_M-values of 33,75, and 20 M~(-1) s~(-1),respectively. This level of donor substrate tolerance is unprecedented for an aldolase. Furthermore, DHA, HA, and HB were accepted as donors in FSA-catalyzed aldol reactions with a variety of azido- and Cbz-amino aldehyde acceptors. The broad substrate tolerance of FSA and the ability to circumvent the need for phosphorylated substrates allowed for one-pot synthesis of a number of known and novel iminocyclitols in good yields, and in a very concise fashion. New iminocyclitols were assayed as inhibitors against a panel of glycosidases. Compounds 15 and 16 were specific a-mannosidase inhibitors, and 24 and 26 were potent and selective inhibitors of β-N-acetylglucosaminidases in the submicromolar range. Facile access to these compounds makes them attractive core structures for further inhibitor optimization.
机译:已经开发出一种从容易获得的非磷酸化供体底物中合成各种新亚氨基环醇的一锅化学酶法。该方法利用了最近发现的6-磷酸果糖醛缩酶(FSA),其功能与已知醛缩酶的区别在于其对不同供体底物和受体底物的耐受性。使用假定为FSA的内源性底物二羟基丙酮(DHA)以及羟基丙酮(HA)和1-羟基-2-丁酮(HB)作为供体底物进行了动力学研究,每种情况下均使用3-磷酸甘油醛作为受体底物。值得注意的是,FSA使用了三个效率相同的供体基板,其K_(cat)K_M值分别为33,75和20 M〜(-1)s〜(-1)。对于醛缩酶来说,这种水平的供体底物耐受性是前所未有的。此外,DHA,HA和HB被FSA催化的带有各种叠氮基和Cbz-氨基醛受体的羟醛反应中的供体。 FSA具有广泛的底物耐受性,并且能够避免对磷酸化底物的需求,因此可以以非常简明的方式一锅法合成许多已知和新型的亚氨基环糖醇。测定新的亚氨基环糖醇作为针对一组糖苷酶的抑制剂。化合物15和16是特异的α-甘露糖苷酶抑制剂,化合物24和26是在亚微摩尔范围内的β-N-乙酰氨基葡萄糖苷酶的有效和选择性抑制剂。容易获得这些化合物使其成为有吸引力的核心结构,可进一步优化抑制剂。

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