Method for preparing DL-alanine with fumaric acid as raw material through multi-enzyme coupling
A fumaric acid and alanine technology, applied in the biological field, can solve the problems of low sugar-acid conversion efficiency, complex fermentation broth composition and high production cost, and achieve the effects of reducing equipment investment, shortening reaction time and low cost
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Embodiment 1
[0036] 1. Get 0.5 g of Escherichia coli wet thallus with aspartase activity, 5 g of Pseudomonas dacunhae wet thallus with aspartate-β-decarboxylase activity and Corynebacterium glutamicum wet with alanine racemase activity Add 10g of bacteria to 1000ml of transformation solution, which contains 50g / L fumaric acid, 0.01g / L pyridoxal phosphate and 0.01g / L Tween 80, pH 6.0, 25℃ for 10h, reaction Liquid optical rotation is zero. After the reaction, the concentration of DL-alanine in the conversion liquid was 36.4 g / L, and the molar conversion rate to fumaric acid was 95%.
[0037]2. Centrifuge the transformation solution at 4000r / min for 15 minutes to remove the bacteria, heat the supernatant to 70-80°C, add activated carbon for decolorization, the decolorization solution is purified by ultrafiltration and nanofiltration, the purified solution is vacuum concentrated to 80ml, cooled and crystallized to room temperature , suction filtration, and drying to obtain 22 g of solid DL-al...
Embodiment 2
[0040] 1. Get 0.5 g of Escherichia coli wet thallus with aspartate activity, 10 g of Pseudomonas dacunhae wet thallus with aspartate-β-decarboxylase activity and Corynebacterium glutamicum wet with alanine racemase activity Add 10g of bacteria to 1000ml transformation solution, which contains 100g / L fumaric acid, 0.1g / L pyridoxal phosphate and 0.1g / L TritonX 100, pH 7.0, 40℃ for 18h, the reaction solution Optical rotation is zero. After the reaction, the concentration of DL-alanine in the conversion liquid was 73.6 g / L, and the molar conversion rate to fumaric acid was 96%.
[0041] 2. Centrifuge the transformation solution at 4000r / min for 15 minutes to remove the bacteria, heat the supernatant to 70-80°C, add activated carbon for decolorization, the decolorization solution is purified by ultrafiltration and nanofiltration, the purified solution is vacuum concentrated to 150ml, cooled and crystallized to room temperature , suction filtration, and drying to obtain 46 g of sol...
Embodiment 3
[0044] 1. Get 1.0 g of Escherichia coli wet thallus with aspartate activity, 15 g of Pseudomonas dacunhae wet thallus with aspartate-β-decarboxylase activity and Corynebacterium glutamicum wet with alanine racemase activity Add 15g of bacteria to 1000ml of transformation solution, which contains 300g / L fumaric acid, 0.5g / L pyridoxal phosphate and 0.5g / L CTAB, pH 8.0, enzymatic reaction at 45°C for 30h, and the reaction solution is optically active to zero. After the reaction, the concentration of DL-alanine in the conversion liquid was 218.6 g / L, and the molar conversion rate to fumaric acid was 95%.
[0045] 2. Centrifuge the transformation solution at 4000r / min for 15 minutes to remove the bacteria, heat the supernatant to 70-80°C, add activated carbon for decolorization, the decolorization solution is purified by ultrafiltration and nanofiltration, the purified solution is vacuum concentrated to 400ml, cooled and crystallized to room temperature , suction filtration and dr...
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