Koseki Takuya, Hori Akane, Seki Shouji, Murayama Tetsuya, Shiono Yoshihito
Department of Bioresource Engineering, Yamagata University, Tsuruoka, Japan.
Appl Microbiol Biotechnol. 2009 Jun;83(4):689-96. doi: 10.1007/s00253-009-1913-z. Epub 2009 Feb 26.
Two hypothetical proteins XP_001818628 and XP_001819091 (designated AoFaeB and AoFaeC, respectively), showing sequence identity with known type-C feruloyl esterases, have been found in the genomic sequence of Aspergillus oryzae. We cloned the putative A. oryzae feruloyl esterase-encoding genes and expressed them in Pichia pastoris. Both purified recombinant AoFaeB (rAoFaeB) and AoFaeC (rAoFaeC) had apparent relative molecular masses of 61,000 and 75,000, respectively, on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. After N-deglycosylation, both proteins had a relative molecular mass of 55,000. The optimum pH for rAoFaeB was 6.0, although it was stable at pH values ranging from 3.0 to 9.0; rAoFaeC had an optimum pH of 6.0 and was stable in the pH range of 7.0-10.0. Thermostability of rAoFaeC was greater than that of rAoFaeB. Whereas rAoFaeC displayed hydrolytic activity toward methyl caffeate, methyl p-coumarate, methyl ferulate, and methyl sinapate, rAoFaeB displayed hydrolytic activity toward methyl caffeate, methyl p-coumarate, and methyl ferulate but not toward methyl sinapate. Substrate specificity profiling of rAoFaeB and rAoFaeC revealed type-B and type-C feruloyl esterases, respectively. Ferulic acid was efficiently released from wheat arabinoxylan when both esterases were applied with xylanase from Thermomyces lanuginosus. Both recombinant proteins also exhibited hydrolytic activity toward chlorogenic acid.
在米曲霉的基因组序列中发现了两种假设蛋白XP_001818628和XP_001819091(分别命名为AoFaeB和AoFaeC),它们与已知的C型阿魏酸酯酶具有序列同一性。我们克隆了推测的米曲霉阿魏酸酯酶编码基因,并在毕赤酵母中进行表达。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上,纯化后的重组AoFaeB(rAoFaeB)和AoFaeC(rAoFaeC)的表观相对分子质量分别为61,000和75,000。N-去糖基化后,两种蛋白的相对分子质量均为55,000。rAoFaeB的最适pH为6.0,尽管它在pH值3.0至9.0范围内稳定;rAoFaeC的最适pH为6.0,在pH值7.0 - 10.0范围内稳定。rAoFaeC的热稳定性高于rAoFaeB。rAoFaeC对咖啡酸甲酯、对香豆酸甲酯、阿魏酸甲酯和芥子酸甲酯具有水解活性,而rAoFaeB对咖啡酸甲酯、对香豆酸甲酯和阿魏酸甲酯具有水解活性,但对芥子酸甲酯没有水解活性。rAoFaeB和rAoFaeC的底物特异性分析分别揭示了B型和C型阿魏酸酯酶。当这两种酯酶与嗜热栖热菌的木聚糖酶一起应用时,能从小麦阿拉伯木聚糖中有效释放出阿魏酸。这两种重组蛋白对绿原酸也表现出水解活性。