首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Structural insights into the substrate-binding cleft of AlyF reveal the first long-chain alginate-binding mode
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Structural insights into the substrate-binding cleft of AlyF reveal the first long-chain alginate-binding mode

机译:结构性substrate-binding见解裂AlyF发现第一个长链alginate-binding模式

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The products of alginate degradation, alginate oligosaccharides (AOS), have potential applications in many areas, including functional foods and marine drugs. Enzyme-based approaches using alginate lyases have advantages in the preparation of well defined AOS and have attracted much attention in recent years. However, a lack of structural insight into the whole substrate-binding cleft for most known alginate lyases severely hampers their application in the industrial generation of well defined AOS. To solve this issue, AlyF was co-crystallized with the long alginate oligosaccharide G6 (L-hexaguluronic acid hexasodium salt), which is the longest bound substrate in all solved alginate lyase complex structures. AlyF formed interactions with G6 from subsites -3 to +3 without additional substrate-binding site interactions, suggesting that the substrate-binding cleft of AlyF was fully occupied by six sugars, which was further confirmed by isothermal titration calorimetry and differential scanning calorimetry analyses. More importantly, a combination of structural comparisons and mutagenetic analyses determined that three key loops (loop 1, Lys215-Glu236; loop 2, Gln402-Ile416; loop 3, Arg334-Gly348) mainly function in binding long substrates (degree of polymerization of >4). The potential flexibility of loop 1 and loop 2 might enable the substrate to continue to enter the cleft after binding to subsites +1 to +3; loop 3 stabilizes and orients the substrate at subsites -2 and -3. Taken together, these results provide the first possible alginate lyase-substrate binding profile for long-chain alginates, facilitating the rational design of new enzymes for industrial purposes.
机译:海藻酸降解的产物,海藻酸寡糖(代谢),有潜力应用在许多领域,包括功能食品和海洋药物。使用海藻酸裂解酶有优势定义良好的代谢和做准备近年来吸引了很多注意力。然而,缺乏结构洞察对于大多数已知的整个substrate-binding裂褐藻胶裂解酶严重妨碍了他们应用在工业代先进的定义。co-crystallized长藻朊酸盐低聚糖G6 (L-hexaguluronic酸hexasodium盐),这是最长的在所有解决海藻酸裂解酶复杂基质结构。子3 + 3没有额外的substrate-binding站点交互,暗示AlyF substrate-binding裂的完全被六糖,进一步通过等温滴定量热法和确认差示扫描量热法分析。重要的是,结构的组合比较和mutagenetic分析确定三个关键循环(循环1、Lys215-Glu236;2、Gln402-Ile416;长基板(程度的函数绑定> 4)的聚合。循环1和循环2可能会使底物绑定后继续进入裂子站+ 1到+ 3;底物在子站2和3。在一起,这些结果提供第一海藻酸可能lyase-substrate绑定配置长链海藻酸盐,方便rational为工业设计的新酶目的。

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