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在模块化聚酮合酶上进行的体外聚酮化合物合成。

Polyketide synthesis in vitro on a modular polyketide synthase.

作者信息

Wiesmann K E, Cortés J, Brown M J, Cutter A L, Staunton J, Leadlay P F

机构信息

Cambridge Centre for Molecular Recognition, University of Cambridge, UK.

出版信息

Chem Biol. 1995 Sep;2(9):583-9. doi: 10.1016/1074-5521(95)90122-1.

Abstract

BACKGROUND

The 6-deoxyerythronolide B synthase (DEBS) of Saccharopolyspora erythraea, which synthesizes the aglycone core of the antibiotic erythromycin A, contains some 30 active sites distributed between three multienzyme polypeptides (designated DEBS1-3). This complexity has hitherto frustrated mechanistic analysis of such enzymes. We previously produced a mutant strain of S. erythraea in which the chain-terminating cyclase domain (TE) is fused to the carboxyl-terminus of DEBS1, the multienzyme that catalyzes the first two rounds of polyketide chain extension in S. erythraea. This mutant strain produces triketide lactone in vivo. We set out to purify the chimaeric enzyme and to determine its activity in vitro.

RESULTS

The purified DEBS1-TE multienzyme catalyzes synthesis of triketide lactones in vitro. The synthase specifically uses the (2S)-isomer of methylmalonyl-CoA, as previously proposed, but has a more relaxed specificity for the starter unit than in vivo.

CONCLUSIONS

We have obtained a purified polyketide synthase system, derived from DEBS, which retains catalytic activity. This approach opens the way for mechanistic and structural analyses of active multienzymes derived from any modular polyketide synthase.

摘要

背景

糖多孢红霉菌的6-脱氧红霉内酯B合酶(DEBS)负责合成抗生素红霉素A的苷元核心,它包含约30个活性位点,分布在三种多酶多肽(命名为DEBS1 - 3)之间。这种复杂性迄今为止阻碍了对此类酶的机制分析。我们之前构建了一株糖多孢红霉菌突变株,其中链终止环化酶结构域(TE)与DEBS1的羧基末端融合,DEBS1是在糖多孢红霉菌中催化前两轮聚酮链延伸的多酶。该突变株在体内产生三酮内酯。我们着手纯化这种嵌合酶并测定其体外活性。

结果

纯化后的DEBS1 - TE多酶在体外催化三酮内酯的合成。如先前推测的那样,该合酶特异性地使用甲基丙二酰辅酶A的(2S)-异构体,但对起始单元的特异性比在体内时更为宽松。

结论

我们获得了一个源自DEBS的纯化聚酮合酶系统,它保留了催化活性。这种方法为对源自任何模块化聚酮合酶的活性多酶进行机制和结构分析开辟了道路。

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