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草酸盐与β-葡聚糖的相互作用:对真菌细胞外基质及代谢物转运的影响

Interaction of oxalate with β-glucan: Implications for the fungal extracellular matrix, and metabolite transport.

作者信息

Perez-Gonzalez Gabriel, Tompsett Geoffrey A, Mastalerz Kyle, Timko Michael T, Goodell Barry

机构信息

Department of Microbiology, University of Massachusetts, Amherst, MA 01003, USA.

Department of Chemical Engineering, Worcester Polytechnic Institute, 100 Institute Road, Worcester, MA 01609, USA.

出版信息

iScience. 2023 May 10;26(6):106851. doi: 10.1016/j.isci.2023.106851. eCollection 2023 Jun 16.

Abstract

β-glucan is the major component of the extracellular matrix (ECM) of many fungi, including wood degrading fungi. Many of these species also secrete oxalate into the ECM. Our research demonstrates that β-glucan forms a novel, previously unreported, hydrogel at room temperature with oxalate. Oxalate was found to alter the rheometric properties of the β-glucan hydrogels, and modeling showed that β-glucan hydrogen bonds with oxalate in a non-covalent matrix. Change of oxalate concentration also impacted the diffusion of a high-molecular-weight protein through the gels. This finding has relevance to the diffusion of extracellular enzymes into substrates and helps to explain why some types of wood-decay fungi rely on non-enzymatic degradation schemes for carbon cycling. Further, this research has potential impact on the diffusion of metabolites in association with pathogenic/biomedical fungi.

摘要

β-葡聚糖是包括木材降解真菌在内的许多真菌细胞外基质(ECM)的主要成分。这些物种中的许多还会将草酸盐分泌到细胞外基质中。我们的研究表明,β-葡聚糖在室温下与草酸盐形成一种新型的、以前未报道过的水凝胶。研究发现草酸盐会改变β-葡聚糖水凝胶的流变特性,并且模型显示β-葡聚糖在非共价基质中与草酸盐形成氢键。草酸盐浓度的变化也会影响高分子量蛋白质在凝胶中的扩散。这一发现与细胞外酶向底物中的扩散有关,有助于解释为什么某些类型的木材腐朽真菌依靠非酶降解方案进行碳循环。此外,这项研究对与致病/生物医学真菌相关的代谢物扩散具有潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/722e/10232728/3d46abccc6fb/fx1.jpg

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