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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Probing the Substrate Promiscuity of Isopentenyl Phosphate Kinase as a Platform for Hemiterpene Analogue Production
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Probing the Substrate Promiscuity of Isopentenyl Phosphate Kinase as a Platform for Hemiterpene Analogue Production

机译:探测异戊烯基磷酸酯基酸的基材滥己作为肿瘤模拟产生的平台

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摘要

Isoprenoids are a large class of natural products with wide-ranging applications. Synthetic biology approaches to the manufacture of isoprenoids and their new-to-nature derivatives are limited due to the provision in nature of just two hemiterpene building blocks for isoprenoid biosynthesis. To address this limitation, artificial chemo-enzymatic pathways such as the alcohol-dependent hemiterpene (ADH) pathway serve to leverage consecutive kinases to convert exogenous alcohols into pyrophosphates that could be coupled to downstream isoprenoid biosynthesis. To be successful, each kinase in this pathway should be permissive of a broad range of substrates. For the first time, we have probed the promiscuity of the second enzyme in the ADH pathway-isopentenyl phosphate kinase from Thermoplasma acidophilum-towards a broad range of acceptor monophosphates. Subsequently, we evaluate the suitability of this enzyme to provide unnatural pyrophosphates and provide a critical first step in characterizing the rate-limiting steps in the artificial ADH pathway.
机译:异戊二烯是一种大类自然产品,应用宽。由于仅为异戊二烯化生物合成的两个次粒构建块的规定,综合生物学和其新的衍生物的制造和其新的衍生物的方法受到限制。为了解决这种限制,人工化学酶促途径,例如醇依赖性溶解(ADH)途径用于利用连续的激酶以将外源醇转化为焦磷酸盐,其可以与下游异戊二烯化生物合成偶联。为了成功,该途径中的每个激酶应该是宽范围的基材。首次,我们已经探讨了来自热量嗜酸体磷酸磷酸磷酸激酶的第二酶的第二酶的滥交从热量嗜酸钙磷酸侧朝向广泛的受体单磷酸盐。随后,我们评估该酶的适用性提供非天然的焦磷酸盐,并提供了在人造ADH途径中的速率限制步骤的关键第一步。

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