Department of Chemical Science and Engineering, Graduate School of Engineering, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.
AMB Express. 2013 Dec 17;3(1):72. doi: 10.1186/2191-0855-3-72.
We produced organic acids, including lactate and succinate, directly from soluble starch under anaerobic conditions using high cell-density cultures of Corynebacterium glutamicum displaying α-amylase (AmyA) from Streptococcus bovis 148 on the cell surface. Notably, reactions performed under anaerobic conditions at 35 and 40°C, which are higher than the optimal growth temperature of 30°C, showed 32% and 19%, respectively, higher productivity of the organic acids lactate, succinate, and acetate compared to that at 30°C. However, α-amylase was not stably anchored and released into the medium from the cell surface during reactions at these higher temperatures, as demonstrated by the 61% and 85% decreases in activity, respectively, from baseline, compared to the only 8% decrease at 30°C. The AmyA-displaying C. glutamicum cells retained their starch-degrading capacity during five 10 h reaction cycles at 30°C, producing 107.8 g/l of total organic acids, including 88.9 g/l lactate and 14.0 g/l succinate. The applicability of cell surface-engineering technology for the production of organic acids from biomass by high cell-density cultures of C. glutamicum under anaerobic conditions was demonstrated.
我们使用在细胞表面展示来自牛链球菌的α-淀粉酶(AmyA)的谷氨酸棒杆菌高密度培养物,在厌氧条件下直接从可溶性淀粉生产有机酸,包括乳酸盐和琥珀酸盐。值得注意的是,在 35 和 40°C 下进行的厌氧反应分别比 30°C 的最佳生长温度高 32%和 19%,与 30°C 相比,乳酸盐、琥珀酸盐和醋酸盐的有机酸生产率分别提高了 32%和 19%。然而,在这些较高温度下的反应中,α-淀粉酶没有稳定地锚定并从细胞表面释放到培养基中,与仅在 30°C 下的 8%的下降相比,活性分别下降了 61%和 85%。在 30°C 下进行的五个 10 小时反应循环中,展示 AmyA 的谷氨酸棒杆菌细胞保留了其淀粉降解能力,生产了 107.8 g/L 的总有机酸,包括 88.9 g/L 的乳酸盐和 14.0 g/L 的琥珀酸盐。展示 AmyA 的谷氨酸棒杆菌细胞保留了其淀粉降解能力,生产了 107.8 g/L 的总有机酸,包括 88.9 g/L 的乳酸盐和 14.0 g/L 的琥珀酸盐。展示 AmyA 的谷氨酸棒杆菌细胞保留了其淀粉降解能力,生产了 107.8 g/L 的总有机酸,包括 88.9 g/L 的乳酸盐和 14.0 g/L 的琥珀酸盐。展示 AmyA 的谷氨酸棒杆菌细胞保留了其淀粉降解能力,生产了 107.8 g/L 的总有机酸,包括 88.9 g/L 的乳酸盐和 14.0 g/L 的琥珀酸盐。
该研究证明了细胞表面工程技术在厌氧条件下通过谷氨酸棒杆菌高密度培养物从生物质生产有机酸的适用性。