Pickles Isabelle B, Chen Yurong, Moroz Olga, Brown Haley A, de Boer Casper, Armstrong Zachary, McGregor Nicholas G S, Artola Marta, Codée Jeroen D C, Koropatkin Nicole M, Overkleeft Herman S, Davies Gideon J
York Structural Biology Laboratory, Department of Chemistry, University of York, York, North Yorkshire, YO10 5DD, UK.
Department of Bio-organic Synthesis, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC, Leiden, The Netherlands.
Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202415219. doi: 10.1002/anie.202415219. Epub 2024 Dec 27.
α-Amylases are the workhorse enzymes of starch degradation. They are central to human health, including as targets for anti-diabetic compounds, but are also the key enzymes in the industrial processing of starch for biofuels, corn syrups, brewing and detergents. Dissection of the activity, specificity and stability of α-amylases is crucial to understanding their biology and allowing their exploitation. Yet, functional characterization lags behind DNA sequencing and genomics; and new tools are required for rapid analysis of α-amylase function. Here, we design, synthesize and apply new branched α-amylase activity-based probes. Using both α-1,6 branched and unbranched α-1,4 maltobiose activity-based probes we were able to explore the stability and substrate specificity of both a panel of human gut microbial α-amylases and a panel of industrially relevant α-amylases. We also demonstrate how we can detect and annotate the substrate specificity of α-amylases in the complex cell lysate of both a prominent gut microbe and a diverse compost sample by in-gel fluorescence and mass spectrometry. A toolbox of starch-active activity-based probes will enable rapid functional dissection of α-amylases. We envisage activity-based probes contributing to better selection and engineering of enzymes for industrial application as well as fundamental analysis of enzymes in human health.
α-淀粉酶是淀粉降解的主力酶。它们对人类健康至关重要,包括作为抗糖尿病化合物的作用靶点,但也是淀粉在生物燃料、玉米糖浆、酿造和洗涤剂等工业加工中的关键酶。剖析α-淀粉酶的活性、特异性和稳定性对于理解其生物学特性并加以利用至关重要。然而,功能表征落后于DNA测序和基因组学;需要新工具来快速分析α-淀粉酶的功能。在此,我们设计、合成并应用了基于α-淀粉酶活性的新型分支探针。使用基于α-1,6分支和非分支α-1,4麦芽糖的活性探针,我们能够探究一组人类肠道微生物α-淀粉酶和一组工业相关α-淀粉酶的稳定性和底物特异性。我们还展示了如何通过凝胶内荧光和质谱法在一种重要肠道微生物和多样堆肥样品的复杂细胞裂解物中检测和注释α-淀粉酶的底物特异性。基于淀粉活性的活性探针工具箱将能够快速剖析α-淀粉酶的功能。我们设想基于活性的探针将有助于更好地选择和改造用于工业应用的酶,以及对人类健康中的酶进行基础分析。