Giacobbe Simona, Balan Venkatesh, Montella Salvatore, Fagnano Massimo, Mori Mauro, Faraco Vincenza
Department of Chemical Sciences, University of Naples "Federico II", Complesso Universitario Monte S. Angelo, via Cintia, Napoli, Italy.
Department of Chemical Engineering and Materials Science, DOE Great Lakes Bioenergy Research Center, Michigan State University, Lansing, MI, 48823, USA.
Appl Microbiol Biotechnol. 2016 Mar;100(5):2213-24. doi: 10.1007/s00253-015-7066-3. Epub 2015 Oct 31.
This study reports enzymatic hydrolysis of the biomass of the giant reed (Arundo donax L.) after ammonia fibre expansion (AFEX) pretreatment. In particular, the capacity of the arabinofuranosidase from the fungus Pleurotus ostreatus recombinantly expressed in Pichia pastoris rPoAbf, its evolved mutant rPoAbf F435Y/Y446F and the endo-cellulase from Streptomyces sp. G12 CelStrep recombinantly expressed in Escherichia coli to enhance the hydrolysis of AFEX-treated A. donax was investigated, using the corn stover as reference feedstock. The investigated enzymes were assayed using a mixture of purified cellulases (CBHI, CBHII, EGI and βG), endoxylanases (LX3, LX4) and accessory hemicellulases (LarbF and LβX) as reference enzyme mixture and substituting EGI with rCelStrep and LarbF with rPoAbf or rPoAbf F435Y/Y446F. The use of rPoAbf F435Y/Y446F in the substitution of LarbF led to improvements in sugar conversion, giving a glucan, xylan and arabinan conversion after 72 h of around 62, 63 and 80 %, respectively, similar or higher than those (44, 66 and 55 %) achieved by 72 h hydrolysis with commercial enzymes Novozymes Cellic®, Ctec3 and Htec3. The enzymes rPoAbf, rPoAbf F435Y/Y446F and rCelStrep were also investigated for their effect on hydrolysis of AFEX-pretreated A. donax by addition to commercial enzyme mixture Novozymes Cellic®, Ctec3 and Htec3, and it was shown that the addition of rPoAbf and its evolved mutant rPoAbf F435Y/Y446F enhanced both xylan and arabinan conversions, which achieved 80 % after 6 days of saccharification with rPoAbf F435Y/Y446F.
本研究报道了氨纤维膨胀(AFEX)预处理后巨芦苇(Arundo donax L.)生物质的酶促水解。具体而言,研究了在毕赤酵母中重组表达的平菇(Pleurotus ostreatus)阿拉伯呋喃糖苷酶rPoAbf、其进化突变体rPoAbf F435Y/Y446F以及在大肠杆菌中重组表达的链霉菌(Streptomyces sp.)G12内切纤维素酶CelStrep增强AFEX处理的巨芦苇水解的能力,以玉米秸秆作为参考原料。使用纯化的纤维素酶(CBHI、CBHII、EGI和βG)、内切木聚糖酶(LX3、LX4)和辅助半纤维素酶(LarbF和LβX)的混合物作为参考酶混合物,并将EGI替换为rCelStrep,将LarbF替换为rPoAbf或rPoAbf F435Y/Y446F,对所研究的酶进行了测定。用rPoAbf F435Y/Y446F替代LarbF可提高糖转化率,72小时后葡聚糖、木聚糖和阿拉伯聚糖的转化率分别约为62%、63%和80%,与使用商业酶诺维信Cellic®、Ctec3和Htec3进行72小时水解所达到的转化率(44%、66%和55%)相似或更高。还研究了酶rPoAbf、rPoAbf F435Y/Y446F和rCelStrep添加到商业酶混合物诺维信Cellic®、Ctec3和Htec3中对AFEX预处理的巨芦苇水解的影响,结果表明,添加rPoAbf及其进化突变体rPoAbf F435Y/Y446F可提高木聚糖和阿拉伯聚糖的转化率,用rPoAbf F435Y/Y446F糖化6天后转化率达到80%。