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首页> 外文期刊>ChemCatChem >Re-Investigation of Hydration Potential of Rhodococcus Whole-Cell Biocatalysts towards Michael Acceptors
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Re-Investigation of Hydration Potential of Rhodococcus Whole-Cell Biocatalysts towards Michael Acceptors

机译:对麦克尔受体罗达卡克全细胞生物催化剂的水化潜力重新调查

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摘要

The implementation of a stereoselective Michael addition with water as substrate is still a major challenge by classical, chemical means. Inspired by nature's ability to carry out this attractive reaction with both high selectivity and efficiency, the interest in hydratases (EC 4.2.1.x) to accomplish a selective water addition is steadily rising. The gram-positive bacterial genus Rhodococcus is known as biocatalytic powerhouse and has been reported to hydrate various Michael acceptors leading to chiral alcohols. This study aimed at the in-depth re-investigation of the hydration potential of Rhodococcus whole-cells towards Michael acceptors. Here, two concurrent effects responsible for the hydration reaction were found: while the majority of substrates was hydrated in an oxygen-independent manner by amino-acid catalysis, an enzyme-catalysed water addition to (E)-4-hydroxy-3-methylbut-2-enoic acid was proven to be oxygen-dependent. O-18(2)-labelling studies showed that no O-18(2) was incorporated in the product. Therefore, a novel O-2-dependent hydratase distinct from all characterised hydratases so far was found.
机译:用水作为基质的立体选择性迈克尔的实施仍然是古典化学手段的主要挑战。灵感来自大自然的能力与高选择性和效率进行这种有吸引力的反应,对水性酶的兴趣(EC 4.2.1.x)实现选择性水加入稳步上升。革兰氏阳性细菌属rhodococcus被称为生物催化强制,并据报道,据报道,滋润各种迈克尔受体,导致手性醇。本研究旨在深入再研究杜鹃体朝向迈克尔受体的水化潜力。这里,发现负责水合反应的两种并发效果:氨基酸催化作用氨基酸催化,氨基酸催化水分以氧与氧 - 催化的水分水合,而大部分底物效应被证明-2-烯酸被证明是氧依赖性的。 O-18(2) - 标记研究表明,在产物中没有掺入O-18(2)。因此,发现了到目前为止,从所有特征的水序酶不同的新型O-2依赖性水合物。

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