State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, People’s Republic of China.
Appl Environ Microbiol. 2011 Sep;77(17):6141-7. doi: 10.1128/AEM.00657-11. Epub 2011 Jul 15.
Feruloyl esterases (Faes) constitute a subclass of carboxyl esterases that specifically hydrolyze the ester linkages between ferulate and polysaccharides in plant cell walls. Until now, the described microbial Faes were mainly from fungi. In this study, we report that Cellulosilyticum ruminicola H1, a previously described fibrolytic rumen bacterium, possesses three different active feruloyl esterases, FaeI, FaeII, and FaeIII. Phylogenetic analysis classified the described bacterial Faes into two types, FaeI and FaeII in type I and FaeIII in type II. Substrate specificity assays indicated that FaeI is more active against the ester bonds in natural hemicelluloses and FaeIII preferentially attacks the ferulate esters with a small moiety, such as methyl groups, while FaeII is active on both types of substrates. Among the three feruloyl esterase genes, faeI was the only one induced significantly by xylose and xylan, while pectin appeared to moderately induce the three genes during the late log phase to stationary phase. Western blot analysis determined that FaeI and FaeIII were secreted and cytoplasmic proteins, respectively, whereas FaeII seemed to be cell associated. The addition of FaeI and FaeII but not FaeIII enhanced the activity of a xylanase on maize cob, suggesting a synergy of the former two with xylanase. Hence, we propose that the three feruloyl esterases work in concert to hydrolyze ferulate esters in natural hemicelluloses.
阿魏酸酯酶(Faes)属于羧酸酯酶的一个亚类,能够特异性地水解植物细胞壁中阿魏酸与多糖之间的酯键。到目前为止,已描述的微生物 Faes 主要来自真菌。在这项研究中,我们报告了先前描述的纤维分解瘤胃细菌 Cellulosilyticum ruminicola H1 拥有三种不同的活性阿魏酸酯酶,FaeI、FaeII 和 FaeIII。系统发育分析将描述的细菌 Faes 分为两类,I 型中的 FaeI 和 FaeII 以及 II 型中的 FaeIII。底物特异性试验表明,FaeI 对天然半纤维素中的酯键更具活性,而 FaeIII 优先攻击带有小部分(如甲基)的阿魏酸酯,而 FaeII 对这两种类型的底物都具有活性。在这三个阿魏酸酯酶基因中,faeI 是唯一被木糖和木聚糖显著诱导的基因,而在对数后期到稳定期,果胶似乎适度诱导三个基因。Western blot 分析确定 FaeI 和 FaeIII 分别是分泌蛋白和细胞质蛋白,而 FaeII 似乎与细胞相关。添加 FaeI 和 FaeII 但不添加 FaeIII 可增强木聚糖酶对玉米穗轴的活性,表明前两者与木聚糖酶具有协同作用。因此,我们提出这三种阿魏酸酯酶协同作用来水解天然半纤维素中的阿魏酸酯。