Faulds C B, Sancho A I, Bartolomé B
Food Materials Science Division, Institute of Food Research, Norwich Research Park, Colney, UK.
Appl Microbiol Biotechnol. 2002 Dec;60(4):489-94. doi: 10.1007/s00253-002-1140-3. Epub 2002 Oct 12.
Ultraflo L, a beta-glucanase preparation from Humicola insolens sold for reducing viscosity problems in the brewing industry, exhibited activity against the methyl esters of ferulic, caffeic, p-coumaric and sinapic acids, displaying mainly type-B feruloyl esterase activity. Ultraflo also contained the ability to release 65% of the available ferulic acid (FA) together with three forms of diferulate from brewer's spent grain (BSG). An "esterase-free" Ultraflo preparation greatly enhanced the ability of a feruloyl esterase from Aspergillus niger, AnFAEA, to release FA (from 23 to 47%) and its dimeric forms, especially the 8,5' benzofuran form, from BSG. While total release of these phenolic acids was not observed, this synergistic enhancement of ferulate release demonstrates that FA and its dimeric forms present in BSG require the addition of more than a xylanase. This suggests either that FA is not solely attached to arabinoxylan in the barley cell wall, or that the cell wall polysaccharides in BSG hinder the accessibility of enzymes to the ferulates, due to processing treatments.
Ultraflo L是一种来源于特异腐质霉的β-葡聚糖酶制剂,用于解决酿造工业中的粘度问题,它对阿魏酸、咖啡酸、对香豆酸和芥子酸的甲酯具有活性,主要表现为B型阿魏酸酯酶活性。Ultraflo还能够从啤酒糟(BSG)中释放出65%的可利用阿魏酸(FA)以及三种二阿魏酸形式。一种“无酯酶”的Ultraflo制剂极大地增强了黑曲霉阿魏酸酯酶AnFAEA从BSG中释放FA(从23%提高到47%)及其二聚体形式,尤其是8,5'-苯并呋喃形式的能力。虽然未观察到这些酚酸的完全释放,但这种阿魏酸释放的协同增强表明,BSG中存在的FA及其二聚体形式需要添加不止一种木聚糖酶。这表明要么FA并非仅附着在大麦细胞壁中的阿拉伯木聚糖上,要么是由于加工处理,BSG中的细胞壁多糖阻碍了酶与阿魏酸的接触。