Kim Sun-Ki, Chung Daehwan, Himmel Michael E, Bomble Yannick J, Westpheling Janet
Department of Genetics, University of Georgia, Athens, GA, 30602, USA.
The BioEnergy Science Center, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
J Ind Microbiol Biotechnol. 2017 Dec;44(12):1643-1651. doi: 10.1007/s10295-017-1982-4. Epub 2017 Sep 23.
Members of the genus Caldicellulosiruptor are the most thermophilic cellulolytic bacteria so far described and are capable of efficiently utilizing complex lignocellulosic biomass without conventional pretreatment. Previous studies have shown that accumulation of high concentrations of cellobiose and, to a lesser extent, cellotriose, inhibits cellulase activity both in vivo and in vitro and high concentrations of cellobiose are present in C. bescii fermentations after 90 h of incubation. For some cellulolytic microorganisms, β-D-glucosidase is essential for the efficient utilization of cellobiose as a carbon source and is an essential enzyme in commercial preparations for efficient deconstruction of plant biomass. In spite of its ability to grow efficiently on crystalline cellulose, no extracellular β-D-glucosidase or its GH1 catalytic domain could be identified in the C. bescii genome. To investigate whether the addition of a secreted β-D-glucosidase would improve growth and cellulose utilization by C. bescii, we cloned and expressed a thermostable β-D-glucosidase from Acidothermus cellulolyticus (Acel_0133) in C. bescii using the CelA signal sequence for protein export. The effect of this addition was modest, suggesting that β-D-glucosidase is not rate limiting for cellulose deconstruction and utilization by C. bescii.
嗜热栖热纤维素菌属的成员是目前已描述的最嗜热的纤维素分解细菌,能够在无需常规预处理的情况下有效利用复杂的木质纤维素生物质。先前的研究表明,高浓度纤维二糖以及较低程度的纤维三糖的积累,在体内和体外均会抑制纤维素酶的活性,并且在90小时的培养后,嗜热栖热放线杆菌发酵液中存在高浓度的纤维二糖。对于一些纤维素分解微生物而言,β-D-葡萄糖苷酶对于将纤维二糖作为碳源进行有效利用至关重要,并且是商业制剂中用于高效解构植物生物质的必需酶。尽管嗜热栖热放线杆菌能够在结晶纤维素上高效生长,但在其基因组中未鉴定出细胞外β-D-葡萄糖苷酶或其GH1催化结构域。为了研究添加分泌型β-D-葡萄糖苷酶是否会改善嗜热栖热放线杆菌的生长和纤维素利用情况,我们使用用于蛋白质输出的CelA信号序列,在嗜热栖热放线杆菌中克隆并表达了来自解纤维素嗜热放线菌的一种耐热β-D-葡萄糖苷酶(Acel_0133)。这种添加的效果并不显著,这表明β-D-葡萄糖苷酶并非嗜热栖热放线杆菌进行纤维素解构和利用的限速因素。