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通过嗜热分子伴侣重定向青霉素酰胺酶的失活途径并提高阿莫西林产量。

Redirecting the inactivation pathway of penicillin amidase and increasing amoxicillin production via a thermophilic molecular chaperone.

作者信息

Bergeron Lisa M, Tokatlian Talar, Gomez Lizabeth, Clark Douglas S

机构信息

Department of Chemical Engineering, University of California, Berkeley, California 94720, USA.

出版信息

Biotechnol Bioeng. 2009 Feb 1;102(2):417-24. doi: 10.1002/bit.22142.

Abstract

We have previously shown that a single-subunit thermosome from Methanocaldococcus jannaschii (rTHS) can stabilize enzymes in semi-aqueous media (Bergeron et al., 2008b). In the present study, rTHS was used to stabilize penicillin amidase (PGA) in methanol-water mixtures. Including methanol in the reaction medium for amoxicillin synthesis can suppress unwanted hydrolysis reactions but inactivate PGA. Inactivation and reactivation pathways proposed for PGA illustrate the predictability of enzyme stabilization by rTHS in co-solvents. Calcium was necessary for reversible dissociation of the two PGA subunits in methanol-water and the presence of calcium resulted in an enhancement of chaperone-assisted stabilization. rTHS also acted as a stabilizer in the enzymatic synthesis of the beta-lactam antibiotic amoxicillin. rTHS stabilized PGA, increasing its half-life in 35% methanol by fivefold at 37 degrees C. Stabilization by rTHS was enhanced but did not require the presence of ATP. Including rTHS in fed-batch reactions performed in methanol-water resulted in nearly 4 times more amoxicillin than when the reaction was run without rTHS, and over threefold higher selectivity towards amoxicillin synthesis compared to aqueous conditions without rTHS. The thermosome and other thermophilic chaperones may thus be generally useful for stabilizing enzymes in their soluble form and expanding the range of conditions suitable for biocatalysis.

摘要

我们之前已经表明,来自嗜热栖热菌的单亚基热体(rTHS)能够在半水介质中稳定酶(伯杰龙等人,2008b)。在本研究中,rTHS被用于在甲醇 - 水混合物中稳定青霉素酰胺酶(PGA)。在阿莫西林合成的反应介质中加入甲醇可以抑制不必要的水解反应,但会使PGA失活。为PGA提出的失活和再激活途径说明了rTHS在共溶剂中对酶稳定作用的可预测性。钙对于甲醇 - 水中两个PGA亚基的可逆解离是必需的,并且钙的存在导致伴侣蛋白辅助稳定作用增强。rTHS在β-内酰胺抗生素阿莫西林的酶促合成中也起到了稳定剂的作用。rTHS稳定了PGA,在37℃下使其在35%甲醇中的半衰期延长了五倍。rTHS的稳定作用增强,但不需要ATP的存在。在甲醇 - 水体系中进行的补料分批反应中加入rTHS,阿莫西林的产量比不添加rTHS时高出近4倍,与没有rTHS的水相条件相比,对阿莫西林合成的选择性高出三倍以上。因此,热体和其他嗜热伴侣蛋白可能普遍有助于稳定酶的可溶形式,并扩大适合生物催化的条件范围。

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