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Stereospecificity of Ketoreductase Domains of the 6-Deoxyerythronolide B Synthase

机译:6-脱氧赤藓醇B合酶的酮还原酶结构域的立体特异性

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摘要

6-Deoxyerythronolide B synthase (DEBS) is a modular polyketide synthase (PKS) responsible for the biosynthesis of 6-dEB (>1), the parent aglycone of the broad spectrum macrolide antibiotic erythromycin. Individual DEBS modules, which contain the catalytic domains necessary for each step of polyketide chain elongation and chemical modification, can be deconstructed into constituent domains. To better understand the intrinsic stereospecificity of the ketoreductase (KR) domains, an in vitro reconstituted system has been developed involving combinations of ketosynthase (KS) – acyl transferase (AT) didomains with acyl-carrier protein (ACP) and KR domains from different DEBS modules. Incubations with (2S,3R)-2-methyl-3-hydroxypentanoic acid N-acetylcysteamine thioester (>2) and methylmalonyl-CoA plus NADPH result in formation of a reduced, ACP-bound triketide that is converted to the corresponding triketide lactone >4 by either base- or enzyme-catalyzed hydrolysis/cyclization. A sensitive and robust GC-mass spectrometry technique has been developed to assign the stereochemistry of the resulting triketide lactones, on the basis of direct comparison with synthetic standards of each of the four possible diasteromers >4a–>4d. Using the [KS][AT] didomains from either DEBS module 3 or module 6 in combination with KR domains from modules 2 or 6 gave in all cases exclusively (2R,3S,4R,5R)-3,5-dihydroxy-2,4-dimethyl-n-heptanoic acid-δ-lactone (>4a). The same product was also generated by a chimeric module in which [KS3][AT3] was fused to [KR5][ACP5] and the DEBS thioesterase [TE] domain. Reductive quenching of the ACP-bound 2-methyl-3-ketoacyl triketide intermediate with sodium borohydride confirmed that in each case the triketide intermediate carried only an unepimerized D-2-methyl group. The results confirm the predicted stereospecificity of the individual KR domains, while revealing an unexpected configurational stability of the ACP-bound 2-methyl-3-ketoacyl thioester intermediate. The methodology should be applicable to the study of any combination of heterologous [KS][AT] and [KR] domains.
机译:6-脱氧赤藓醇B合酶(DEBS)是一种模块化的聚酮化合物合酶(PKS),负责6-dEB(> 1 )的生物合成,6-dEB是广谱大环内酯类抗生素红霉素的母糖苷元。可以将各个DEBS模块解构为组成结构域,这些模块包含聚酮化合物链延长和化学修饰每个步骤所需的催化结构域。为了更好地了解酮还原酶(KR)结构域的固有立体特异性,开发了体外重组系统,该系统涉及酮合成酶(KS)-酰基转移酶(AT)双结构域与酰基载体蛋白(ACP)和来自不同DEBS的KR结构域的组合模块。与(2S,3R)-2-甲基-3-羟基戊酸N-乙酰半胱胺硫酯(> 2 )和甲基丙二酰辅酶A加NADPH一起孵育会形成还原的,与ACP结合的三酮化合物通过碱或酶催化的水解/环化反应得到相应的三酮内酯> 4 。在直接与四种可能的非对映异构体> 4a – >的合成标准品直接比较的基础上,开发了一种灵敏且稳健的GC-质谱技术来确定所得三酮内酯的立体化学4d 。将DEBS模块3或模块6中的[KS] [AT]双结构域与模块2或6中的KR结构域结合使用,在所有情况下均仅提供(2R,3S,4R,5R)-3,5-二羟基-2, 4-二甲基-正庚酸-δ-内酯(> 4a )。嵌合模块也产生了相同的产物,其中[KS3] [AT3]与[KR5] [ACP5]和DEBS硫酯酶[TE]结构域融合。用硼氢化钠对ACP结合的2-甲基-3-酮酰基三酮化合物中间体进行还原淬灭,证实在每种情况下,三酮化合物中间体仅携带未异构化的D-2-甲基。该结果证实了各个KR结构域的预测立体特异性,同时揭示了ACP结合的2-甲基-3-酮酰基硫代酯中间体的意想不到的构型稳定性。该方法应适用于研究异源[KS] [AT]和[KR]域的任何组合。

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