首页> 美国卫生研究院文献>Journal of Bacteriology >Cloning of a Thermomonospora fusca xylanase gene and its expression in Escherichia coli and Streptomyces lividans.
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Cloning of a Thermomonospora fusca xylanase gene and its expression in Escherichia coli and Streptomyces lividans.

机译:嗜热单孢菌木聚糖酶基因的克隆及其在大肠杆菌和淡链霉菌中的表达。

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摘要

Thermomonospora fusca chromosomal DNA was partially digested with EcoRI to obtain 4- to 14-kilobase fragments, which were used to construct a library of recombinant phage by ligation with EcoRI arms of lambda gtWES. lambda B. A recombinant phage coding for xylanase activity which contained a 14-kilobase insert was identified. The xylanase gene was localized to a 2.1-kilobase SalI fragment of the EcoRI insert by subcloning onto pBR322 and derivatives of pBR322 that can also replicate in Streptomyces lividans. The xylanase activity produced by S. lividans transformants was 10- to 20-fold higher than that produced by Escherichia coli transformants but only one-fourth the level produced by induced T. fusca. A 30-kilodalton peptide with activity against both Remazol brilliant blue xylan and xylan was produced in S. lividans transformants that carried the 2.1-kilobase SalI fragment of T. fusca DNA and was not produced by control transformants. T. fusca cultures were found to contain a xylanase of a similar size that was induced by growth on xylan or Solka Floc. Antiserum directed against supernatant proteins isolated from a Solka Floc-grown T. fusca culture inhibited the xylanase activity of S. lividans transformants. The cloned T. fusca xylanase gene was expressed at about the same level in S. lividans grown in minimal medium containing either glucose, cellobiose, or xylan. The xylanase bound to and hydrolyzed insoluble xylan. The cloned xylanase appeared to be the same as the major protein in xylan-induced T. fusca culture supernatants, which also contained at least three additional minor proteins with xylanase activity and having apparent molecular masses of 43, 23, and 20 kilodaltons.
机译:用EcoRI部分消化热单孢菌染色体DNA,以获得4至14个碱基的片段,将其通过与λgtWES的EcoRI臂连接来构建重组噬菌体文库。鉴定了编码木聚糖酶活性的重组噬菌体,该噬菌体含有14-千碱基插入物。木聚糖酶基因通过亚克隆到pBR322和pBR322衍生物(也可以在淡链霉菌中复制)而定位到EcoRI插入片段的2.1碱基对SalI片段。 lividans转化子产生的木聚糖酶活性比大肠杆菌转化子产生的木聚糖酶活性高10到20倍,但仅为诱导的F.ca产生的木聚糖酶活性的四分之一。在S. lividans转化株中产生了一种对Remazol亮蓝木聚糖和木聚糖均具有活性的30千达尔顿肽,该肽带有T. fusca DNA的2.1千碱基SalI片段,而对照转化子却未产生。发现美国山毛榉培养物含有大小相似的木聚糖酶,该木聚糖酶的大小是由木聚糖或Solka Floc的生长诱导的。针对从Solka Floc种植的T.fusca培养物中分离的上清液蛋白的抗血清抑制了S. lividans转化子的木聚糖酶活性。在含有葡萄糖,纤维二糖或木聚糖的基本培养基中生长的S. lividans中,克隆的丁香木聚糖酶基因在大约相同的水平表达。木聚糖酶与不溶性木聚糖结合并水解。克隆的木聚糖酶似乎与木聚糖诱导的美国山毛榉培养物上清液中的主要蛋白质相同,后者还含有至少三种具有木聚糖酶活性且表观分子量为43、23和20千道尔顿的次要蛋白质。

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