Zheng Fengzhen, Basit Abdul, Zhuang Huan, Chen Jun, Zhang Jianfen, Chen Weiqing
College of Biological and Environmental Engineering, Zhejiang Shuren University, Hangzhou, China.
Department of Microbiology, University of Jhang, Jhang, Pakistan.
Front Microbiol. 2022 Sep 15;13:998160. doi: 10.3389/fmicb.2022.998160. eCollection 2022.
Acidophilic β-xylanases have attracted considerable attention due to their excellent activity under extreme acidic environments and potential industrial utilizations. In this study, a novel β-xylanase gene () of glycoside hydrolase family 11, was cloned from ND-1 and efficiently expressed in (a 2.0-fold increase). Xyl11 displayed a maximum activity of 121.99 U/ml at pH 3.0 and 50°C, and exhibited strict substrate specificity toward beechwood xylan ( = 9.06 mg/ml, = 608.65 μmol/min/mg). The Xyl11 retained over 80% activity at pH 2.0-5.0 after pretreatment at 4°C for 1 h. Analysis of the hydrolytic pattern revealed that Xyl11 could rapidly convert xylan to xylobiose via hydrolysis activity as well as transglycosylation. Moreover, the results of site-directed mutagenesis suggested that the Xyl11 residues, Glu, Glu, and Glu, are essential catalytic sites, with Asp having an auxiliary function. Additionally, a high degree of synergy (15.02) was observed when Xyl11 was used in association with commercial β-xylosidase. This study provided a novel acidophilic β-xylanase that exhibits excellent characteristics and can, therefore, be considered a suitable candidate for extensive applications, especially in food and animal feed industries.
嗜酸β-木聚糖酶因其在极端酸性环境下的优异活性和潜在的工业应用价值而备受关注。在本研究中,从ND-1中克隆了一种糖苷水解酶家族11的新型β-木聚糖酶基因(),并在(增加了2.0倍)中高效表达。Xyl11在pH 3.0和50°C时的最大活性为121.99 U/ml,对山毛榉木聚糖表现出严格的底物特异性( = 9.06 mg/ml, = 608.65 μmol/min/mg)。在4°C预处理1小时后,Xyl11在pH 2.0 - 5.0时保留了超过80%的活性。水解模式分析表明,Xyl11可以通过水解活性以及转糖基作用将木聚糖快速转化为木二糖。此外,定点诱变结果表明,Xyl11的残基Glu、Glu和Glu是必需的催化位点,Asp具有辅助功能。此外,当Xyl11与商业β-木糖苷酶联合使用时,观察到高度的协同作用(15.02)。本研究提供了一种新型嗜酸β-木聚糖酶,其具有优异的特性,因此可被视为广泛应用的合适候选者,尤其是在食品和动物饲料工业中。