School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, Texas 77030, United States.
J Agric Food Chem. 2022 Jul 27;70(29):9057-9065. doi: 10.1021/acs.jafc.2c03031. Epub 2022 Jul 13.
Maltooligosaccharide-forming amylases (MFAs) hydrolyze starch into maltooligosaccharides with a defined degree of polymerization. However, the enzymatic mechanism underlying the product specificity remains partially understood. Here, we show that MFA (SdMFA) contains a noncatalytic starch-binding domain (SBD), which belongs to the carbohydrate-binding module family 20 and enables modulation of the product specificity. Removal of SBD from SdMFA resulted in a 3.5-fold lower production of the target maltopentaose. Conversely, appending SBD to another MFA from improved the specificity for maltopentaose. SdMFA exhibited a higher level of exo-action and greater product specificity when reacting with amylopectin than with amylose. Our structural analysis and molecular dynamics simulation suggested that SBD could promote the recognition of nonreducing ends of substrates and delivery of the substrate chain to a groove end toward the active site in the catalytic domain. Furthermore, we demonstrate that a moderate temperature could mediate SBD to interact with the substrate with loose affinity, which facilitates the substrate to slide toward the active site. Together, our study reveals the structural and conditional bases for the specificity of MFAs, providing generalizable strategies to engineer MFAs and optimize the biosynthesis of maltooligosaccharides.
甘露寡糖形成淀粉酶(MFAs)将淀粉水解成具有特定聚合度的麦芽寡糖。然而,其产物特异性的酶促机制仍部分未知。在这里,我们发现 MFA(SdMFA)含有一个非催化的淀粉结合结构域(SBD),它属于碳水化合物结合模块家族 20,能够调节产物特异性。从 SdMFA 中去除 SBD 会导致目标麦芽五糖的产量降低 3.5 倍。相反,将 SBD 添加到另一种来自 的 MFA 中则提高了麦芽五糖的特异性。SdMFA 与支链淀粉反应时,其外切作用水平更高,产物特异性也更强,而与直链淀粉反应时则不然。我们的结构分析和分子动力学模拟表明,SBD 可以促进对底物非还原末端的识别,并将底物链输送到催化结构域中的一个沟槽末端朝向活性位点。此外,我们还证明了适中的温度可以介导 SBD 与底物松散结合,从而使底物更容易滑向活性位点。综上所述,本研究揭示了 MFAs 特异性的结构和条件基础,为 MFAs 的工程改造和麦芽寡糖生物合成的优化提供了通用策略。