首页> 外文期刊>Canadian journal of microbiology >Characteristics of adjacent family 6 acetylxylan esterases from Fibrobacter succinogenes and the interaction with the Xyn10E xylanase in hydrolysis of acetylated xylan.
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Characteristics of adjacent family 6 acetylxylan esterases from Fibrobacter succinogenes and the interaction with the Xyn10E xylanase in hydrolysis of acetylated xylan.

机译:琥珀酸纤维杆菌的相邻家族6乙酰木聚糖酯酶的特性以及在乙酰化木聚糖水解中与Xyn10E木聚糖酶的相互作用。

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摘要

Acetylxylan esterase genes axe6A and axe6B located adjacent to one another on a Fibrobacter succinogenes chromosome have been separately cloned and their properties characterized. The corresponding esterases contained an N-terminal carbohydrate esterase family 6 catalytic domain (CD) and a C-terminal family 6 carbohydrate-binding module (CBM). The amino acid sequences of the CDs and CBMs were found to exhibit 52% and 40% amino acid similarity, respectively. The CDs of the two esterases exhibited the highest similarity to CDs of acetylxylan esterases: AxeA from the ruminal fungi Orpinomyces sp. and BnaA from Neocallimastix patriciarum. Axe6A and Axe6B were optimally active at neutral pH and had low Km values of 0.084 and 0.056 mmol.L–1, respectively. Axe6A and Axe6B were shown to bind to insoluble cellulose and xylan and to soluble arabinoxylan. Axe6A deacetylated acetylated xylan at the same initial rate in the presence and absence of added Xyn10E xylanase from F. succinogenes, but the action of the xylanase on acetylated xylan was dependent upon the initial activity of Axe6A. The capacity of acetylxylan esterases to bind to plant cell wall polymers and to independently deacetylate xylan enabling xylanase to release xylooligo saccharides, documents the central role these enzymes have to improve access of F. succinogenes to cellulose.
机译:分别位于琥珀酸纤维杆菌染色体上的彼此相邻的乙酰木聚糖酯酶基因axe6A和axe6B已被克隆,并对其特性进行了表征。相应的酯酶包含一个N末端碳水化合物酯酶家族6催化域(CD)和一个C末端家族6碳水化合物结合模块(CBM)。发现CD和CBM的氨基酸序列分别显示出52%和40%的氨基酸相似性。两种酯酶的CD与乙酰木聚糖酯酶的CD具有最高的相似性:瘤胃真菌Orpinomyces sp。的AxeA。以及来自新callimastix patriciarum的BnaA。 Axe6A和Axe6B在中性pH下具有最佳活性,其Km值分别为0.084和0.056 mmol.L-1。已显示Axe6A和Axe6B与不溶性纤维素和木聚糖以及可溶阿拉伯糖基木聚糖结合。在存在和不存在来自琥珀酸杆菌的Xyn10E木聚糖酶的情况下,Axe6A以相同的初始速率使乙酰化木聚糖脱乙酰,但是木聚糖酶对乙酰化木聚糖的作用取决于Axe6A的初始活性。乙酰木聚糖酯酶结合植物细胞壁聚合物并独立地使木聚糖脱乙酰基的能力,使木聚糖酶释放木糖寡糖,证明了这些酶在改善琥珀酸短纤杆菌进入纤维素中的核心作用。

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