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从梅萨尼水牛瘤胃宏基因组中分离并鉴定新型多功能重组26家族糖苷水解酶

Isolation and characterization of novel multifunctional recombinant family 26 glycoside hydrolase from Mehsani buffalo rumen metagenome.

作者信息

Patel Avani B, Patel Amrutlal K, Shah Mihir P, Parikh Ishan K, Joshi Chaitanya G

机构信息

Department of Animal Biotechnology, College of Veterinary Science and Animal Husbandry, Anand Agricultural University, Anand, India.

出版信息

Biotechnol Appl Biochem. 2016 Mar-Apr;63(2):257-65. doi: 10.1002/bab.1358. Epub 2016 Mar 14.

Abstract

Rumen microbiota harbor a diverse set of carbohydrate-active enzymes (CAZymes), which play a crucial role in the degradation of a complex plant polysaccharide thereby providing metabolic energy to the host animals. Earlier, we reported CAZYme analysis from the buffalo rumen metagenome by high throughput shotgun sequencing. Among the various CAZymes, glycoside hydrolase family 26 (GH26) enzymes have a number of industrial applications including in paper, oil, biofuel, food, feed, pharmaceutical, coffee, and detergent industries. Here, we report isolation and characterization of GH26 enzyme from the buffalo rumen metagenome. A novel GH26 gene composed of 1,119 base pairs was successfully amplified using the gene-specific primers inferred based on the contig generated from metagenome sequence assembly and cloned in a pET32a (+) expression vector as an N-terminal histidine tag fusion protein. A novel GH26 protein from an unknown rumen microorganism shared a maximum of 68% identity with the Prevotella ruminicola 23 encoded carbohydrate esterase family 7 and 46% with Bacteroides sp. 2_1_33B encoded mannan endo-1, 4-β-mannosidase. The recombinant GH26-histidine tag fusion protein was expressed in Escherichia coli and purified using Ni-NTA affinity chromatography. The purified enzyme displayed multifunctional activities against various carbohydrate substrates including locust bean gum, beechwood xylan, pectin, and carboxymethyl cellulose suggesting mannanase, xylanase, pectin esterase, and endoglucanase activities, respectively.

摘要

瘤胃微生物群含有多种碳水化合物活性酶(CAZymes),这些酶在复杂植物多糖的降解中起关键作用,从而为宿主动物提供代谢能量。此前,我们通过高通量鸟枪法测序报道了水牛瘤胃宏基因组的CAZyme分析。在各种CAZymes中,糖苷水解酶家族26(GH26)酶有许多工业应用,包括造纸、石油、生物燃料、食品、饲料、制药、咖啡和洗涤剂行业。在此,我们报道了从水牛瘤胃宏基因组中分离和鉴定GH26酶。使用基于宏基因组序列组装产生的重叠群推断的基因特异性引物,成功扩增了一个由1119个碱基对组成的新型GH26基因,并将其作为N端组氨酸标签融合蛋白克隆到pET32a(+)表达载体中。一种来自未知瘤胃微生物的新型GH26蛋白与普氏栖瘤胃菌23编码的碳水化合物酯酶家族7的同一性最高为68%,与拟杆菌属2_1_33B编码的甘露聚糖内切-1,4-β-甘露糖苷酶的同一性为46%。重组GH26-组氨酸标签融合蛋白在大肠杆菌中表达,并使用Ni-NTA亲和色谱法纯化。纯化后的酶对包括刺槐豆胶、山毛榉木聚糖、果胶和羧甲基纤维素在内的各种碳水化合物底物表现出多功能活性,分别提示具有甘露聚糖酶、木聚糖酶、果胶酯酶和内切葡聚糖酶活性。

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