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首页> 外文期刊>Biotechnology Progress >Enantioselective synthesis of phenylacetamides in the presence of high organic cosolvent concentrations catalyzed by stabilized penicillin G acylase. Effect of the acyl donor
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Enantioselective synthesis of phenylacetamides in the presence of high organic cosolvent concentrations catalyzed by stabilized penicillin G acylase. Effect of the acyl donor

机译:在稳定的青霉素G酰基转移酶催化的高有机助溶剂存在下,对苯乙酰胺的对映选择性合成。酰基供体的作用

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Immobilization of penicillin G acylase on glyoxyl agarose and its further hydrophilization by physicochemical modification with ionic polymers has made it possible to perform the direct condensation between (+/-)-2-hydroxy-2-phenylethylamine [(+/-)-1] and different acyl donors in the presence of high concentrations of organic cosolvent (up to 90%) in the reaction medium. Using 50 mM phenyl acetic acid and these drastic reaction conditions, too harsh for any other PGA preparation, we have achieved an almost quantitative transformation (more than 99%) of 10 mM (1)4 into the corresponding amide. Remarkably, the enantioselectivity of the enzyme immobilized on the amine was strongly dependent on the acyl donor employed. Thus, using phenylacetic acid (2), the enantioselectivity was almost negligible (1.3 favoring the S isomer), whereas Using S-mandelic acid [(S)-4], the E factor reached a value of 21 (also favoring the S isomer). By using R-mandelic acid [(R)-4], we observed a different enantioselectivity (E was 3.6 favoring the R). At 4 degreesC, the E value reached a value higher than 100 when (S)-4 was used as the acyl donor. The reaction performed under these conditions allowed us to produce (2S,2'S)-N-2'-hydroxy-2'-phenyl)-2-hydroxyphenylacetamide [(2S,2'S)-7] with a diasteromeric excess higher than 98%.
机译:将青霉素G酰基转移酶固定在乙醛酸琼脂糖上并通过用离子聚合物进行物理化学修饰使其进一步亲水化,使得在(+/-)-2-羟基-2-苯基乙胺[(+/-)-1]之间进行直接缩合成为可能。在反应介质中存在高浓度有机助溶剂(最高90%)的情况下使用不同的酰基供体。使用50 mM苯乙酸和这些苛刻的反应条件(对于任何其他PGA制备而言都太苛刻),我们已经实现了10 mM(1)4几乎定量的转化(超过99%)转化为相应的酰胺。值得注意的是,固定在胺上的酶的对映选择性很大程度上取决于所用的酰基供体。因此,使用苯乙酸(2)时,对映选择性几乎可以忽略不计(1.3有利于S异构体),而使用S-扁桃酸[(S)-4],E因子达到21(也有利于S异构体) )。通过使用R-扁桃酸[[R] -4],我们观察到了不同的对映选择性(E为3.6,有利于R)。当(S)-4用作酰基供体时,在4℃下,E值达到高于100的值。在这些条件下进行的反应使我们能够生产非对映体过量高于98%的(2S,2'S)-N-2'-羟基-2'-苯基)-2-羟基苯基乙酰胺[(2S,2'S)-7]。

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