Department of Genetics, University of Georgia, Athens, Georgia, USA.
The BioEnergy Science Center, Oak Ridge National Laboratory, Oak Ridge, Tennessee, USA.
Appl Environ Microbiol. 2018 Jan 17;84(3). doi: 10.1128/AEM.02348-17. Print 2018 Feb 1.
Members of the genus have the ability to deconstruct and grow on lignocellulosic biomass without conventional pretreatment. A genetically tractable species, , was recently engineered to produce ethanol directly from switchgrass. contains more than 50 glycosyl hydrolases and a suite of extracellular enzymes for biomass deconstruction, most prominently CelA, a multidomain cellulase that uses a novel mechanism to deconstruct plant biomass. Accumulation of cellobiose, a product of CelA during growth on biomass, inhibits cellulase activity. Here, we show that heterologous expression of a cellobiose phosphorylase from improves the phosphorolytic pathway in and results in synergistic activity with endogenous enzymes, including CelA, to increase cellulolytic activity and growth on crystalline cellulose. CelA is the only known cellulase to function well on highly crystalline cellulose and it uses a mechanism distinct from those of other cellulases, including fungal cellulases. Also unlike fungal cellulases, it functions at high temperature and, in fact, outperforms commercial cellulase cocktails. Factors that inhibit CelA during biomass deconstruction are significantly different than those that impact the performance of fungal cellulases and commercial mixtures. This work contributes to understanding of cellulase inhibition and enzyme function and will suggest a rational approach to engineering optimal activity.
属的成员具有在没有传统预处理的情况下解构和生长在木质纤维素生物质上的能力。最近,一种可遗传操作的物种 被工程改造为直接从柳枝稷生产乙醇。 包含超过 50 种糖苷水解酶和一套用于生物质解构的细胞外酶,其中最突出的是 CelA,一种多结构域纤维素酶,它使用一种新颖的机制来解构植物生物质。在生物质上生长过程中积累的纤维二糖是 CelA 的产物,会抑制纤维素酶的活性。在这里,我们表明,来自 的异源表达的纤维二糖磷酸酶改善了 在磷酸解途径中的作用,并与内源性酶(包括 CelA)产生协同活性,从而提高纤维素酶活性和在结晶纤维素上的生长。CelA 是唯一已知的在高度结晶纤维素上能很好地发挥作用的纤维素酶,它使用的机制与其他纤维素酶(包括真菌纤维素酶)不同。也与真菌纤维素酶不同,它在高温下起作用,事实上,其性能优于商业纤维素酶混合物。在生物质解构过程中抑制 CelA 的因素与影响真菌纤维素酶和商业混合物性能的因素有很大不同。这项工作有助于了解纤维素酶抑制和酶功能,并将为工程优化活性提供合理的方法。