School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
Methods Mol Biol. 2021;2234:237-249. doi: 10.1007/978-1-0716-1048-0_17.
Trichoderma reesei (T. reesei) is the workhorse for the production of industrial cellulolytic enzyme cocktails for cellulose hydrolysis. However, the current industrial process using enzyme cocktails is not efficient enough for the cost-effective generation of cellulosic sugar. Here, we describe a protocol for the application of a state-of-the-art LC-MS/MS-based proteomics method for studying the T. reesei secretome. A protein-free minimal chemically defined cell culture medium must be used for a successful secretome analysis. A lignocellulose substrate can be added to this minimal medium to stimulate the fungal secretion of enzymes specific to that substrate. The secretory proteins in the conditioned medium can be purified for quantitative proteomics profiling. T. reesei secretes several hundred enzymes including cellulases, hemicellulases, pectinases, proteases, oxidoreductases, and many putative proteins when it is stimulated with lignocellulose. By combining an understanding of the basic biomass hydrolytic mechanisms with the discovery of novel enzymes, more effective enzyme cocktails can be designed for a sustainable biochemical-based biorefinery.
里氏木霉(T. reesei)是生产纤维素水解用工业纤维素酶混合物的主力。然而,目前使用酶混合物的工业过程对于经济高效地生成纤维素糖来说效率不够高。在这里,我们描述了一种应用最先进的基于 LC-MS/MS 的蛋白质组学方法来研究里氏木霉 secretome 的方案。必须使用无蛋白的最小化学定义细胞培养基来进行成功的 secretome 分析。可以向这种最小培养基中添加木质纤维素底物,以刺激真菌分泌针对该底物的特定酶。可以对条件培养基中的分泌蛋白进行纯化,以进行定量蛋白质组学分析。当受到木质纤维素刺激时,里氏木霉会分泌几百种酶,包括纤维素酶、半纤维素酶、果胶酶、蛋白酶、氧化还原酶和许多假定的蛋白质。通过将对基本生物质水解机制的理解与新酶的发现相结合,可以设计出更有效的酶混合物,用于可持续的基于生化的生物精炼厂。