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首页> 外文期刊>Angewandte Chemie >Probing Selectivity and Creating Structural Diversity Through Hybrid Polyketide Synthases
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Probing Selectivity and Creating Structural Diversity Through Hybrid Polyketide Synthases

机译:通过杂交聚酮合成酶探测选择性并产生结构多样性

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摘要

Engineering polyketide synthases (PKS) to produce new metabolites requires an understanding of catalytic points of failure during substrate processing. Growing evidence indicates the thioesterase (TE) domain as a significant bottleneck within engineered PKS systems. We created a series of hybrid PKS modules bearing exchanged TE domains from heterologous pathways and challenged them with both native and non-native polyketide substrates. Reactions pairing wildtype PKS modules with non-native substrates primarily resulted in poor conversions to anticipated macrolactones. Likewise, product formation with native substrates and hybrid PKS modules bearing non-cognate TE domains was severely reduced. In contrast, non-native substrates were converted by most hybrid modules containing a substrate compatible TE, directly implicating this domain as the major catalytic gatekeeper and highlighting its value as a target for protein engineering to improve analog production in PKS pathways.
机译:工程聚酮合成酶(PKS)产生新的代谢物需要了解底物处理期间的催化失效点。 日益增长的证据表明硫酯酶(TE)结构域作为工程PKS系统内的显着瓶颈。 我们创建了一系列杂交PKS模块,其轴承从异源途径交换晶域,并用天然和非天然聚酮基底挑战它们。 反应具有非天然基质的野生型PKS模块主要导致预期的大甲苯的转化率差。 同样地,具有轴承非同源TE结构域的天然底物和杂合浦模块的产物形成被严重减少。 相反,通过含有底物相容Te的大多数杂化模块转化非天然底物,直接将该域视为主要的催化网守,并突出其作为蛋白质工程的目标,以改善PKS途径的模拟产生。

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