Molecular Microbiology and Structural Biochemistry, UMR5086, CNRS, University of Lyon 1, 7 Passage du Vercors, F-69367 Lyon, CEDEX 07, France.
Evolution, Génomes, Comportement, Ecologie, UMR 9191 University Paris-Saclay-CNRS-IRD, F-91190 Gif-sur-Yvette, France.
Molecules. 2023 Jul 11;28(14):5327. doi: 10.3390/molecules28145327.
Insects rely on carbohydrates such as starch and glycogen as an energy supply for growth of larvae and for longevity. In this sense α-amylases have essential roles under extreme conditions, e.g., during nutritional or temperature stress, thereby contributing to survival of the insect. This makes them interesting targets for combating insect pests. α-amylase, DMA, which belongs to the glycoside hydrolase family 13, sub family 15, has been studied from an evolutionary, biochemical, and structural point of view. Our studies revealed that the DMA enzyme is active over a broad temperature and pH range, which is in agreement with the fluctuating environmental changes with which the insect is confronted. Crystal structures disclosed a new nearly fully solvated metal ion, only coordinated to the protein via Gln263. This residue is only conserved in the subgroup of and may thus contribute to the enzyme adaptive response to large temperature variations. Studies of the effect of plant inhibitors and the pseudo-tetrasaccharide inhibitor acarbose on DMA activity, allowed us to underline the important role of the so-called flexible loop on activity/inhibition, but also to suggest that the inhibition modes of the wheat inhibitors WI-1 and WI-3 on DMA, are likely different.
昆虫依赖碳水化合物如淀粉和糖原作为幼虫生长和长寿的能量供应。从这个意义上说,α-淀粉酶在极端条件下(例如在营养或温度胁迫期间)发挥着重要作用,从而有助于昆虫的生存。这使得它们成为防治害虫的有趣目标。α-淀粉酶,DMA,属于糖苷水解酶家族 13,亚家族 15,从进化、生化和结构的角度进行了研究。我们的研究表明,DMA 酶在较宽的温度和 pH 范围内具有活性,这与昆虫所面临的环境变化相一致。晶体结构揭示了一种新的几乎完全溶剂化的金属离子,仅通过 Gln263 与蛋白质配位。该残基仅在亚组中保守,因此可能有助于酶对温度变化的适应性反应。对植物抑制剂和拟四糖抑制剂阿卡波糖对 DMA 活性的研究,使我们能够强调所谓的柔性环在活性/抑制中的重要作用,但也表明小麦抑制剂 WI-1 和 WI-3 对 DMA 的抑制模式可能不同。