VTT Technical Research Centre of Finland, P.O. Box 1000, 02044 VTT, Finland.
Enzyme Microb Technol. 2013 May 10;52(6-7):358-69. doi: 10.1016/j.enzmictec.2013.03.003. Epub 2013 Mar 13.
The (hemi)cellulolytic systems of two novel lignocellulolytic Penicillium strains (Penicillium pulvillorum TUB F-2220 and P. cf. simplicissimum TUB F-2378) have been studied. The cultures of the Penicillium strains were characterized by high cellulase and β-glucosidase as well moderate xylanase activities compared to the Trichoderma reesei reference strains QM 6a and RUTC30 (volumetric or per secreted protein, respectively). Comparison of the novel Penicillium and T. reesei secreted enzyme mixtures in the hydrolysis of (ligno)cellulose substrates showed that the F-2220 enzyme mixture gave higher yields in the hydrolysis of crystalline cellulose (Avicel) and similar yields in hydrolysis of pre-treated spruce and wheat straw than enzyme mixture secreted by the T. reesei reference strain. The sensitivity of the Penicillium cellulase complexes to softwood (spruce) and grass (wheat straw) lignins was lignin and temperature dependent: inhibition of cellulose hydrolysis in the presence of wheat straw lignin was minor at 35°C while at 45°C by spruce lignin a clear inhibition was observed. The two main proteins in the F-2220 (hemi)cellulase complex were partially purified and identified by peptide sequence similarity as glycosyl hydrolases (cellobiohydrolases) of families 7 and 6. Adsorption of the GH7 enzyme PpCBH1 on cellulose and lignins was studied showing that the lignin adsorption of the enzyme is temperature and pH dependent. The ppcbh1 coding sequence was obtained using PCR cloning and the translated amino acid sequence of PpCBH1 showed up to 82% amino acid sequence identity to known Penicillium cellobiohydrolases.
研究了两株新型木质纤维素分解青霉(Penicillium pulvillorum TUB F-2220 和 P. cf. simplicissimum TUB F-2378)的(半)纤维素酶系统。与 Trichoderma reesei 参考菌株 QM 6a 和 RUTC30(分别按体积或每分泌蛋白计)相比,青霉菌株的培养物表现出较高的纤维素酶和β-葡萄糖苷酶活性以及中等的木聚糖酶活性。比较新型青霉和 T. reesei 分泌的酶混合物在(木质纤维素)底物水解中的作用表明,F-2220 酶混合物在水解结晶纤维素(Avicel)时产率更高,在水解预处理过的云杉和小麦秸秆时产率与 T. reesei 参考菌株分泌的酶混合物相似。青霉纤维素复合酶对软木(云杉)和草(小麦秸秆)木质素的敏感性取决于木质素和温度:在 35°C 时,小麦秸秆木质素存在时对纤维素水解的抑制作用较小,而在 45°C 时,云杉木质素则观察到明显的抑制作用。F-2220(半)纤维素复合酶中的两种主要蛋白质通过肽序列相似性被部分纯化并鉴定为糖苷水解酶(纤维素酶)家族 7 和 6。研究了 GH7 酶 PpCBH1 在纤维素和木质素上的吸附,结果表明该酶的木质素吸附取决于温度和 pH 值。使用 PCR 克隆获得了 ppcbh1 编码序列,PpCBH1 的翻译氨基酸序列与已知的青霉纤维素酶显示出高达 82%的氨基酸序列同一性。