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首页> 外文期刊>Asian-Australasian Journal of Animal Sciences >Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
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Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02

机译:从厌氧的瘤胃真菌新callimastix额叶PMA02分离的异源表达的乙酰木聚糖Esterase1的表征。

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Acetyl xylan esterase (AXE), which hydrolyzes the ester linkages of the naturally acetylated xylan and thus known to have an important role for hemicellulose degradation, was isolated from the anaerobic rumen fungus Neocallimastix frontatlis PMA02, heterologously expressed in Escherichi coli (E. coli) and characterized. The full-length cDNA encoding NfAXE1 was 1,494 bp, of which 978 bp constituted an open reading frame. The estimated molecular weight of NfAXE1 was 36.5 kDa with 326 amino acid residues, and the calculated isoelectric point was 4.54. The secondary protein structure was predicted to consist of nine alpha-helixes and 12 beta-strands. The enzyme expressed in E. coli had the highest activity at 40 degrees C and pH 8. The purified recombinant NfAXE1 had a specific activity of 100.1 U/mg when p-nitrophenyl acetate (p-NA) was used as a substrate at 40 degrees C, optimum temperature. The amount of liberated acetic acids were the highest and the lowest when p-NA and acetylated birchwood xylan were used as substrates, respectively. The amount of xylose released from acetylated birchwod xylan was increased by 1.4 fold when NfAXE1 was mixed with xylanase in a reaction cocktail, implying a synergistic effect of NfAXE1 with xylanase on hemicellulose degradation.
机译:乙酰木聚糖酯酶(AXE)水解天然乙酰化木聚糖的酯键,因此已知对半纤维素降解具有重要作用,是从厌氧瘤胃真菌新callimastix frontatlis PMA02中分离出来的,后者在大肠杆菌(E. coli)中异源表达。和特点。编码NfAXE1的全长cDNA为1,494 bp,其中978 bp构成一个开放阅读框。 NfAXE1的估计分子量为36.5 kDa,具有326个氨基酸残基,计算的等电点为4.54。二级蛋白质结构预计由九个α-螺旋和12个β-链组成。在40°C和pH 8时,在大肠杆菌中表达的酶具有最高的活性。当在40°C下使用对硝基苯乙酸酯(p-NA)作为底物时,纯化的重组NfAXE1的比活性为100.1 U / mg。 C,最佳温度。当以p-NA和乙酰化的桦木木聚糖为底物时,游离乙酸的量最高和最低。当在反应混合物中将NfAXE1与木聚糖酶混合时,从乙酰化桦木木聚糖中释放的木糖量增加了1.4倍,这意味着NfAXE1与木聚糖酶对半纤维素降解具有协同作用。

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