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首页> 外文期刊>Applied Microbiology >A Lytic Polysaccharide Monooxygenase with Broad Xyloglucan Specificity from the Brown-Rot Fungus Gloeophyllum trabeum and Its Action on Cellulose-Xyloglucan Complexes
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A Lytic Polysaccharide Monooxygenase with Broad Xyloglucan Specificity from the Brown-Rot Fungus Gloeophyllum trabeum and Its Action on Cellulose-Xyloglucan Complexes

机译:具有棕色腐菌鳞状葡萄糖特异性的裂解性多糖单氧化单糖酶,来自棕色腐真菌的棕褐色胸部曲爪葡萄球菌及其对纤维素 - 木糖葡聚糖复合物的作用

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摘要

Fungi secrete a set of glycoside hydrolases and lytic polysaccharide monooxygenases (LPMOs) to degrade plant polysaccharides. Brown-rot fungi, such as Gloeophyllum trabeum , tend to have few LPMOs, and information on these enzymes is scarce. The genome of G. trabeum encodes four auxiliary activity 9 (AA9) LPMOs ( Gt LPMO9s), whose coding sequences were amplified from cDNA. Due to alternative splicing, two variants of Gt LPMO9A seem to be produced, a single-domain variant, Gt LPMO9A-1, and a longer variant, Gt LPMO9A-2, which contains a C-terminal domain comprising approximately 55 residues without a predicted function. We have overexpressed the phylogenetically distinct Gt LPMO9A-2 in Pichia pastoris and investigated its properties. Standard analyses using high-performance anion-exchange chromatography–pulsed amperometric detection (HPAEC-PAD) and mass spectrometry (MS) showed that Gt LPMO9A-2 is active on cellulose, carboxymethyl cellulose, and xyloglucan. Importantly, compared to other known xyloglucan-active LPMOs, Gt LPMO9A-2 has broad specificity, cleaving at any position along the β-glucan backbone of xyloglucan, regardless of substitutions. Using dynamic viscosity measurements to compare the hemicellulolytic action of Gt LPMO9A-2 to that of a well-characterized hemicellulolytic LPMO, Nc LPMO9C from Neurospora crassa revealed that Gt LPMO9A-2 is more efficient in depolymerizing xyloglucan. These measurements also revealed minor activity on glucomannan that could not be detected by the analysis of soluble products by HPAEC-PAD and MS and that was lower than the activity of Nc LPMO9C. Experiments with copolymeric substrates showed an inhibitory effect of hemicellulose coating on cellulolytic LPMO activity and did not reveal additional activities of Gt LPMO9A-2. These results provide insight into the LPMO potential of G. trabeum and provide a novel sensitive method, a measurement of dynamic viscosity, for monitoring LPMO activity.IMPORTANCE Currently, there are only a few methods available to analyze end products of lytic polysaccharide monooxygenase (LPMO) activity, the most common ones being liquid chromatography and mass spectrometry. Here, we present an alternative and sensitive method based on measurement of dynamic viscosity for real-time continuous monitoring of LPMO activity in the presence of water-soluble hemicelluloses, such as xyloglucan. We have used both these novel and existing analytical methods to characterize a xyloglucan-active LPMO from a brown-rot fungus. This enzyme, Gt LPMO9A-2, differs from previously characterized LPMOs in having broad substrate specificity, enabling almost random cleavage of the xyloglucan backbone. Gt LPMO9A-2 acts preferentially on free xyloglucan, suggesting a preference for xyloglucan chains that tether cellulose fibers together. The xyloglucan-degrading potential of Gt LPMO9A-2 suggests a role in decreasing wood strength at the initial stage of brown rot through degradation of the primary cell wall.
机译:真菌分泌一组糖苷水解酶和裂解多糖单氧基酶(LPMOS),以降解植物多糖。棕色腐真菌,如Gloeophyllum trabeum,往往有很少的LPMO,有关这些酶的信息很少。 G.Trabeum的基因组编码四种辅助活性9(AA9)LPMOS(GT LPMO9),其编码序列从cDNA扩增。由于替代剪接,GT LPMO9A的两个变体似乎是制造的,单域变体,GT LPMO9A-1和更长的变体GT LPMO9A-2,其含有包括大约55个残基的C末端域,而无需预测功能。我们在Pichia Pastoris中过表达了该系统源性不同的GT LPMO9A-2,并研究了其性质。使用高性能阴离子 - 交换色谱 - 脉冲测定检测(HPAEC-PAD)和质谱(MS)的标准分析显示GT LPMO9A-2在纤维素,羧甲基纤维素和木葡聚糖上是活性的。重要的是,与其他已知的Xyloglucan-ActiveLPMO相比,GT LPMO9A-2具有宽的特异性,在沿Xyloglucan的β-葡聚糖骨架的任何位置裂解,无论取代如何。使用动态粘度测量以将GT LPMO9A-2的半纤维素分解作用与神经孢子群的NC LPMO9C进行比较,显示出GT LPMO9A-2在解聚木瓜葡萄糖中更有效。这些测量还揭示了通过HPAEC焊盘和MS分析可溶性产物并且低于NC LPMO9C的活性来检测的葡甘露霉甘油系中的少量活性。共聚物底物的实验显示了半纤维素涂层对纤维素溶解的LPMO活性的抑制作用,并且没有揭示GT LPMO9A-2的另外的活性。这些结果提供了对G. Trabeum的LPMO电位的洞察力,并提供一种新的敏感方法,测量动态粘度,用于监测LPMO活动。目前只有几种方法可以分析裂解多糖单氧化单糖酶的最终产物(LPMO )活性,最常见的是液相色谱和质谱。在这里,我们提出了一种基于测量动态粘度的替代和敏感方法,用于实时连续监测LPMO活性的水溶性半纤维素,例如木葡聚糖。我们使用这些新颖和现有的分析方法来表征来自棕色腐菌的木葡聚糖活性LPMO。该酶GT LPMO9A-2不同于具有宽底物特异性的先前表征的LPMO,从而实现了木葡聚糖骨架的几乎随机切割。 GT LPMO9A-2优先于游离木葡聚糖上的作用,表明将纤维素纤维在一起的木葡聚糖链偏好。 GT LPMO9A-2的Xyloglucan降解潜力表明,通过初级细胞壁的降解,在棕色腐的初始阶段降低木质强度的作用。

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