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A novel keratinase from Bacillus tequilensis strain Q7 with promising potential for the leather bating process

机译:一种来自龙舌兰芽孢杆菌Q7菌株的新型角蛋白酶,具有皮革软化工艺的潜力

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The present paper reports on the purification and characterization of an extracellular keratinase (KERQ7) newly purified from Bacillus tequilensis Q7. Pure protein was obtained after ammonium sulfate fractionation (30-60%), followed by Mono S Sepharose cation-exchange chromatography. MALDI-TOF/MS analysis revealed that the purified enzyme was a monomer with a molecular mass of 28,355.07-Da. The sequence of the 21 N-terminal residues of KERQ7 showed high homology with those of Bacillus keratinases. Optimal activity was achieved at pH 7 and 30 degrees C. KERQ7 was completely inhibited by PMSF and DFP, which suggests that it belongs to the serine keratinase family. KERQ7 displayed higher levels of hydrolysis and catalytic efficiency than Basozym (R) CS 10, Koropon (R) SC 5K, and Pyrase (R) 250 MP. The kerQ7 gene encoding KERQ7 was cloned, sequenced, and expressed in Escherichia coli BL21(DE3)pLysS. The biochemical properties of the extracellular purified recombinant enzyme (rKERQ7) were similar to those of native KERQ7. The deduced amino acid sequence showed strong homology with other Bacillus keratinases. The highest sequence identity value (97%) was obtained with KERUS from Brevibacillus brevis US575, with only 7 aa of difference. These properties make KERQ7 a potential promising and eco-friendly enzymatically enhanced process for animal hide bating in the leather processing industry. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文报道了从芽孢杆菌Q7新纯化的细胞外角蛋白酶(KERQ7)的纯化和表征。经硫酸铵分级分离(30-60%),然后进行Mono S Sepharose阳离子交换层析,获得纯蛋白。 MALDI-TOF / MS分析表明,纯化的酶是分子量为28,355.07-Da的单体。 KERQ7的21个N末端残基的序列与芽孢杆菌角化酶的同源性很高。在pH 7和30摄氏度下实现了最佳活性。KERSF7被PMSF和DFP完全抑制,这表明它属于丝氨酸角蛋白酶家族。与Basozym CS 10,Koropon SC 5K和Pyrase 250 MP相比,KERQ7的水解和催化效率更高。编码KERQ7的kerQ7基因被克隆,测序并在大肠杆菌BL21(DE3)pLysS中表达。细胞外纯化重组酶(rKERQ7)的生化特性与天然KERQ7相似。推导的氨基酸序列显示出与其他芽孢杆菌角蛋白酶的强同源性。从短短杆菌US575用KERUS获得最高的序列同一性值(97%),仅相差7个氨基酸。这些特性使KERQ7成为皮革加工行业中用于动物皮软化处理的潜在有前途且环保的酶促工艺。 (C)2015 Elsevier B.V.保留所有权利。

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