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基质辅助激光解吸电离飞行时间质谱在褐藻糖胶水解物的表征和内切褐藻糖胶酶活性筛选中的应用。

Application of MALDI-MS for characterization of fucoidan hydrolysates and screening of endo-fucoidanase activity.

机构信息

Department of Chemistry, Biotechnology, and Life Science, Norwegian University of Life Sciences (NMBU), Christian Magnus Falsens vei 18, 1433 Ås, Norway.

University of Bremen, MARUM Centre for Marine Environmental Sciences, Leobener Str. 8, D-28359 Bremen, Germany; Max Planck Institute for Marine Microbiology, Celsiusstr. 1, D-28359 Bremen, Germany.

出版信息

Carbohydr Polym. 2024 Sep 15;340:122317. doi: 10.1016/j.carbpol.2024.122317. Epub 2024 May 25.

Abstract

Brown macroalgae synthesize large amounts of fucoidans, sulfated fucose-containing polysaccharides, in the ocean. Fucoidans are of importance for their recently discovered contribution to marine carbon dioxide sequestration and due to their potential applications in biotechnology and biomedicine. However, fucoidans have high intra- and intermolecular diversity that challenges assignment of structure to biological function and the development of applications. Fucoidan-active enzymes may be used to simplify this diversity by producing defined oligosaccharides more applicable for structural refinement, characterization, and structure to function assignment for example via bioassays. In this study, we combined MALDI mass spectrometry with biocatalysis to show that the endo-fucoidanases P5AFcnA and Wv323 can produce defined oligosaccharide structures directly from unrefined macroalgal biomass. P5AFcnA released oligosaccharides from seven commercial fucoidan extracts in addition to unrefined biomass of three macroalgae species indicating a broadly applicable approach reproducible across 10 species. Both MALDI-TOF/TOF and AP-MALDI-Orbitrap systems were used, demonstrating that the approach is not instrument-specific and exploiting their combined high-throughput and high-resolution capabilities. Overall, the combination of MALDI-MS and endo-fucoidanase assays offers high-throughput evaluation of fucoidan samples and also enables extraction of defined oligosaccharides of known structure from unrefined seaweed biomass.

摘要

海洋中的褐藻大量合成褐藻糖胶,这是一种含有硫酸化岩藻糖的多糖。褐藻糖胶因其最近被发现的对海洋二氧化碳封存的贡献而受到重视,并且由于其在生物技术和生物医学中的潜在应用而受到关注。然而,褐藻糖胶具有高度的分子内和分子间多样性,这给结构与功能的关联以及应用的开发带来了挑战。褐藻糖胶活性酶可以通过产生更适用于结构精修、表征和结构与功能关联的定义性寡糖来简化这种多样性,例如通过生物测定。在这项研究中,我们结合 MALDI 质谱和生物催化,证明了内切褐藻糖胶酶 P5AFcnA 和 Wv323 可以直接从未精制的大型藻类生物质中产生定义性的寡糖结构。P5AFcnA 除了三种大型藻类的未精制生物质外,还从七种商业褐藻糖胶提取物中释放出寡糖,表明这是一种广泛适用的方法,可在 10 个物种中重现。我们使用了 MALDI-TOF/TOF 和 AP-MALDI-Orbitrap 系统,证明该方法不受仪器限制,并利用了它们结合的高通量和高分辨率能力。总体而言,MALDI-MS 和内切褐藻糖胶酶分析的组合提供了褐藻糖胶样品的高通量评估,并且还能够从未精制的海藻生物质中提取具有已知结构的定义性寡糖。

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