Cao Shengsheng, Li Li, Li Qian, Jiang Ling, Zhu Benwei, Yao Zhong
College of Food Science and Light Industry, Nanjing Tech University, Nanjing, 211816, China.
Appl Microbiol Biotechnol. 2023 Mar;107(5-6):1737-1749. doi: 10.1007/s00253-023-12424-4. Epub 2023 Feb 16.
Brown algae are considered promising crops for the production of sustainable biofuels. However, the commercial application has been limited by lack of efficient methods for converting alginate into fermentable sugars. Herein, we cloned and characterized a novel alginate lyase AlyPL17 from Pedobacter hainanensis NJ-02. It possessed outstanding catalytic efficiency toward polymannuronic acid (polyM), polyguluronic acid (polyG), and alginate sodium, with k of 39.42 ± 1.9 s, 32.53 ± 0.88 s, and 38.30 ± 2.12 s, respectively. AlyPL17 showed maximum activity at 45 °C and pH 9.0. The domain truncation did not change the optimal temperature and optimal pH, but greatly reduced the activity. In addition, AlyPL17 degrades alginate through the cooperative action of two structural domains in an exolytic mode. The minimal degradation substrate of AlyPL17 is a disaccharide. Furthermore, AlyPL17 and AlyPL6 can synergistically degrade alginate to prepare unsaturated monosaccharides that can be converted to 4-deoxy-L-erythron-5-hexoseuloseuronate acid (DEH). DEH is reduced to KDG by DEH reductase (Sdr), which enters the Entner-Doudoroff (ED) pathway as a common metabolite and is converted to bioethanol. KEY POINTS: • Biochemical characterization of alginate lyase from Pedobacter hainanensis NJ-02 and its truncated form. • Degradation patterns of AlyPL17 and the role of its domains in product distribution and mode of action. • Potential of synergistic degradation system for efficient preparation of unsaturated monosaccharides.
褐藻被认为是生产可持续生物燃料的有前景的作物。然而,商业应用受到缺乏将藻酸盐转化为可发酵糖的有效方法的限制。在此,我们从海南食碱杆菌NJ-02中克隆并鉴定了一种新型藻酸盐裂解酶AlyPL17。它对聚甘露糖醛酸(polyM)、聚古洛糖醛酸(polyG)和海藻酸钠具有出色的催化效率,其k值分别为39.42±1.9 s、32.53±0.88 s和38.30±2.12 s。AlyPL17在45°C和pH 9.0时表现出最大活性。结构域截短并未改变最适温度和最适pH,但大大降低了活性。此外,AlyPL17通过两个结构域的协同作用以外切模式降解藻酸盐。AlyPL17的最小降解底物是二糖。此外,AlyPL17和AlyPL6可以协同降解藻酸盐以制备可转化为4-脱氧-L-赤藓糖-5-己酮糖醛酸(DEH)的不饱和单糖。DEH被DEH还原酶(Sdr)还原为KDG,KDG作为常见代谢物进入Entner-Doudoroff(ED)途径并转化为生物乙醇。要点:•海南食碱杆菌NJ-02藻酸盐裂解酶及其截短形式的生化特性。•AlyPL17的降解模式及其结构域在产物分布和作用方式中的作用。•协同降解系统高效制备不饱和单糖的潜力。