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从自热植物残骸中分离出的嗜热毁丝霉 SS-8 中新型木聚糖酶的特性、克隆和功能表达。

Characterization, cloning and functional expression of novel xylanase from Thermomyces lanuginosus SS-8 isolated from self-heating plant wreckage material.

机构信息

Department of Biotechnology, Birla Institute of Technology, Mesra, Ranchi, 835215, India.

出版信息

World J Microbiol Biotechnol. 2013 Dec;29(12):2407-15. doi: 10.1007/s11274-013-1409-y. Epub 2013 Jun 23.

Abstract

Extracellular cellulase free xylanase from Thermomyces lanuginosus sp. SS-8, isolated from self heating plant wreckage material was identified as β-1,4-endo-xylanase precursor, a monomer of 21.3 kDa with no carbohydrate residue. This xylanase retained 80 % activity at 60 °C for 96 h, was active at a wide pH range of 3-11 and uniquely hydrolyzed xylan to xylose without production of xylo-oligosaccharides. Gene xynSS8 encoding xylanase from T. lanuginosus SS-8 was cloned and functionally expressed in Escherichia coli XL1 Blue using pTZ57R/T plasmid and xynSS8/pQE-9 expression vector construct respectively. Gene xynSS8 was of 777 bp and deduced amino acid sequence was a mature xylanase of 258 amino acids. XynSS8 has extra 33 amino acids compared to its nearest homolog and was thermo-alkali tolerant as that of native protein. The xylanase could degrade pulp and release substantial chromophoric materials and lignin derived compounds indicating its effective utility in pulp bleaching. Novel characteristics of the enzyme may contribute to its wide industrial usage. This is first report of cloning and functional expression of the novel xylanase from T. lanuginosus SS-8.

摘要

从自热工厂残骸中分离出的嗜热真菌 SS-8 产生的无细胞外纤维素酶木聚糖酶被鉴定为β-1,4-内切木聚糖酶前体,其单体分子量为 21.3 kDa,没有碳水化合物残基。该木聚糖酶在 60°C 下保持 80%的活性达 96 小时,在 pH 值为 3-11 的较宽范围内具有活性,并且独特地将木聚糖水解为木糖,而不产生木二糖等低聚糖。来自 T. lanuginosus SS-8 的木聚糖酶基因 xynSS8 使用 pTZ57R/T 质粒和 xynSS8/pQE-9 表达载体构建体分别在大肠杆菌 XL1 Blue 中进行了克隆和功能表达。基因 xynSS8 长 777bp,推断的氨基酸序列为 258 个氨基酸的成熟木聚糖酶。XynSS8 比其最近的同源物多 33 个氨基酸,并且与天然蛋白一样具有耐热耐碱的特性。该木聚糖酶可以降解纸浆并释放大量的发色物质和木质素衍生化合物,表明其在纸浆漂白中的有效用途。该酶的新颖特性可能有助于其广泛的工业用途。这是首次从嗜热真菌 SS-8 中克隆和表达新型木聚糖酶的报道。

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