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从厌氧真菌新丽鞭毛菌属MC-2菌株中分离并鉴定对香豆酰酯酶

Isolation and characterization of p-coumaroyl esterase from the anaerobic fungus Neocallimastix strain MC-2.

作者信息

Borneman W S, Ljungdahl L G, Hartley R D, Akin D E

机构信息

Richard B. Russell Agricultural Research Center, Agricultural Research Service, U.S. Dept. of Agriculture, Athens, Georgia 30613.

出版信息

Appl Environ Microbiol. 1991 Aug;57(8):2337-44. doi: 10.1128/aem.57.8.2337-2344.1991.

Abstract

An extracellular p-coumaroyl esterase produced by the anaerobic fungus Neocallimastix strain MC-2 released p-coumaroyl groups from 0-[5-0-((E)-p-coumaroyl)-alpha-L-arabinofuranosyl]-(1----3)-0-beta -D-xylopyranosyl-(1----4)-D-xylopyranose (PAXX). The esterase was purified 121-fold from culture medium in successive steps involving ultrafiltration column chromatography on S-sepharose and hydroxylapatite, isoelectric focusing, and gel filtration. The native enzyme had an apparent mass of 11 kDa under nondenaturing conditions and a mass of 5.8 kDa under denaturing conditions, suggesting that the enzyme may exist as a dimer. The isoelectric point was 4.7, and the pH optimum was 7.2. The purified esterase had 100 times more activity towards PAXX than towards the analogous feruloyl ester (FAXX). The apparent Km and Vmax of the purified p-coumaroyl esterase for PAXX at pH 7.2 and 40 degrees C were 19.4 microM and 5.1 microM min(-1), respectively. p-Coumaroyl tetrasaccharides isolated from plant cell walls were hydrolyzed at rates similar to that for PAXX, whereas a dimer of PAXX was hydrolyzed at a rate 20-fold lower, yielding 4,4'-dihydroxy-alpha-truxillic acid as an end product. Ethyl and methyl p-coumarates were hydrolyzed at very slow rates, if at all. The purified esterase released p-coumaroyl groups from finely, but not coarsely, ground plant cell walls, and this activity was enhanced by the addition of xylanase and other cell wall-degrading enzymes.

摘要

厌氧真菌新丽鞭毛菌MC - 2菌株产生的一种细胞外对香豆酰酯酶可从0-[5-0-((E)-对香豆酰基)-α-L-阿拉伯呋喃糖基]-(1→3)-0-β-D-木吡喃糖基-(1→4)-D-木吡喃糖(PAXX)上释放对香豆酰基。该酯酶通过超滤、S-琼脂糖柱色谱、羟基磷灰石柱色谱、等电聚焦和凝胶过滤等连续步骤从培养基中纯化了121倍。天然酶在非变性条件下的表观质量为11 kDa,在变性条件下为5.8 kDa,表明该酶可能以二聚体形式存在。其等电点为4.7,最适pH为7.2。纯化后的酯酶对PAXX的活性比对类似的阿魏酰酯(FAXX)高100倍。纯化后的对香豆酰酯酶在pH 7.2和40℃下对PAXX的表观Km和Vmax分别为19.4 μM和5.1 μM min⁻¹。从植物细胞壁分离得到的对香豆酰四糖的水解速率与PAXX相似,而PAXX的二聚体水解速率低20倍,最终产物为4,4'-二羟基-α-曲酸。对香豆酸乙酯和甲酯即使能水解,速率也非常慢。纯化后的酯酶能从精细研磨而非粗研磨的植物细胞壁中释放对香豆酰基,添加木聚糖酶和其他细胞壁降解酶可增强这种活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bda/183573/17abe6149dcd/aem00061-0241-a.jpg

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