A C-Terminal Proline-Rich Sequence Simultaneously Broadens the Optimal Temperature and pH Ranges and Improves the Catalytic Efficiency of Glycosyl Hydrolase Family 10 Ruminal Xylanases
文献类型: 外文期刊
第一作者: Li, Zhongyuan
作者: Li, Zhongyuan;Xue, Xianli;Zhao, Heng;Yang, Peilong;Luo, Huiying;Huang, Huoqing;Yao, Bin;Li, Zhongyuan;Zhao, Junqi
作者机构:
关键词: sequence;broadens;plant
期刊名称:APPLIED AND ENVIRONMENTAL MICROBIOLOGY ( 影响因子:4.792; 五年影响因子:5.26 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: Efficient degradation of plant polysaccharides in rumen requires xylanolytic enzymes with a high catalytic capacity. In this study, a full-length xylanase gene (xynA) was retrieved from the sheep rumen. The deduced XynA sequence contains a putative signal peptide, a catalytic motif of glycoside hydrolase family 10 (GH10), and an extra C-terminal proline-rich sequence without a homolog. To determine its function, both mature XynA and its C terminus-truncated mutant, XynA-Tr, were expressed in Escherichia coli. The C-terminal oligopeptide had significant effects on the function and structure of XynA. Compared with XynA-Tr, XynA exhibited improved specific activity (12-fold) and catalytic efficiency (14-fold), a higher temperature optimum (50°C versus 45°C), and broader ranges of temperature and pH optima (pH 5.0 to 7.5 and 40 to 60°C versus pH 5.5 to 6.5 and 40 to 50°C). Moreover, XynA released more xylose than XynA-Tr when using beech wood xylan and wheat arabinoxylan as the substrate. The underlying mechanisms responsible for these changes were analyzed by substrate binding assay, circular dichroism (CD) spectroscopy, isothermal titration calorimetry (ITC), and xylooligosaccharide hydrolysis. XynA had no ability to bind to any of the tested soluble and insoluble polysaccharides. However, it contained more α helices and had a greater affinity and catalytic efficiency toward xylooligosaccharides, which benefited complete substrate degradation. Similar results were obtained when the C-terminal sequence was fused to another GH10 xylanase from sheep rumen. This study reveals an engineering strategy to improve the catalytic performance of enzymes.
分类号: Q939.9
- 相关文献
作者其他论文 更多>>
-
Different Infectivity of Swine Enteric Coronaviruses in Cells of Various Species
作者:Li, Zhongyuan;Chen, Yunyan;Li, Liang;Xue, Mei;Feng, Li
关键词:TGEV; PEDV; PDCoV; replication; aminopeptidase N (APN)
-
High-Throughput Screening Techniques for the Selection of Thermostable Enzymes
作者:Li, Lanxue;Bai, Yingguo;Yao, Bin;Luo, Huiying;Tu, Tao;Liu, Xiaoqing
关键词:high-throughput screening; virtual screening; protein engineering; enzyme thermostability
-
NLRP1 restricts porcine deltacoronavirus infection via IL-11 inhibiting the phosphorylation of the ERK signaling pathway
作者:He, Haojie;Li, Yongfeng;Chen, Yunyan;Chen, Jianfei;Li, Zhongyuan;Li, Liang;Shi, Da;Zhang, Xin;Shi, Hongyan;Xue, Mei;Feng, Li
关键词:porcine deltacoronavirus; nucleotide-binding oligomerization domain-like receptor family pyrin domain-containing 1; interleukin-11; ERK signaling; anti-coronavirus
-
Recombinant production of SAG1 fused with xylanase in Pichia pastoris induced higher protective immunity against Eimeria tenella infection in chicken
作者:Liu, Chen;Wei, HanBing;Wang, Yuan;Su, Xiaoyun;Tu, Tao;Luo, Huiying;Yao, Bin;Huang, Huoqing;Zhang, Honglian;Liang, Ruiying;Ding, Jiabo;Tang, Xinming
关键词:
-
Genome-wide association studies identified OsTMF as a gene regulating rice seed germination under salt stress
作者:Liu, Lifeng;Ma, Yanling;Zhao, Heng;Guo, Lin;Liu, Chun-Ming;Liu, Lifeng;Guo, Yan;Liu, Chun-Ming;Liu, Chun-Ming;Liu, Chun-Ming
关键词:rice; seed germination; salt stress; GWAS; OsTMF
-
Cooperative Fermentation Using Multiple Microorganisms and Enzymes Potentially Enhances the Nutritional Value of Spent Mushroom Substrate
作者:Zhang, Anrong;He, Weizhao;Han, Yunsheng;Zheng, Aijuan;Chen, Zhimin;Meng, Kun;Yang, Peilong;Liu, Guohua
关键词:fermentation; Pleurotus eryngii; nutritional value; condition optimization; enzymatic treatment
-
Enhancing the endo-activity of the thermophilic chitinase to yield chitooligosaccharides with high degrees of polymerization
作者:Zhang, Ruohan;Zhang, Honglian;Tu, Tao;Luo, Huiying;Yao, Bin;Tian, Jian;Huang, Huoqing;Guan, Feifei;Tian, Xiaoqian;Zhang, Yan;Wu, Ningfeng;Tian, Jian;Tian, Xiaoqian;Zhang, Yan;Sun, Jilu
关键词:Chitin; Chitinase; Endo-activity; Mutants; Functional oligosaccharides