数字农科院2.0

Biochemical And Structural Properties Of A. Low-Temperature-Active Glycoside Hydrolase F amily 43 Beta-Xylosidase: Activity And Instability At High Neutral Salt Concentrations

文献类型: 外文期刊

作者: Zhang, R; Li, N; Liu, Y; Han, XW; Tu, T; Shen, JD; Xu, SJ; Wu, Q; Zhou, JP; Huang, ZX

作者机构:

关键词: beta-Xylosidase; Activity; Stability; Low temperature; Salt; Crystal structure; Glycoside hydrolase

期刊名称: FOOD CHEMISTRY

ISSN: 0308-8146

年卷期: 2019 年 301 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: beta-Xylosidase, of the glycoside hydrolase family 43 from Bacillus sp. HJ14, was expressed in Escherichia coli. Recombinant beta-xylosidase (rHJ14GH43) exhibited maximum activity at 25 degrees C, approximately 15, 45, and 88% of maximum activity at 0, 10, and 20 degrees C, respectively, and poor stability at temperatures over 20 degrees C. rHJ14GH43 showed moderate or high activity, but poor stability, in NaCl, KCl, NaNO3, KNO3, Na2SO4, and (NH4)(2)SO4 at concentrations from 3.0 to 30.0% (w/v). The crystal structure of rHJ14GH43 was resolved and showed higher structural flexibility due to fewer salt bridges and hydrogen bonds compared to mesophilic and thermophilic beta-xylosidases. High structural flexibility is presumed to be a key factor for catalytic adaptations to low temperatures and high salt concentrations. Approximately one-third of the surface of rHJ14GH43 is positively charged, which may be the primary factor responsible for poor stability in high neutral salt environments.

分类号:

  • 相关文献

[1]Revisiting Glycoside Hydrolase Family 20 B.eta-N-Acetyl-D-Hexosaminidases: Crystal Structures, Physiological S ubstrates And Specific Inhibitors. Duan, Yanwei,Liu, Tian,Yang, Qing. 2018

[2]Insights Into The Roles Of N.on-Catalytic Residues In The A ctive Site Of A Gh10 Xylanase With Activity On Cellulose. Chu, YD, Tu, T, Penttinen, L, Xue, XL, Wang, XY, Yi, ZL, Gong, L, Rouvinen, J, Luo, HY, Hakulinen, N, Yao, B, Su, XY. 2017

[3]Effects Of Phosphorylation On The Activity Of Glycogen Phosphorylase In Mutton During Incubation At 4 Degrees C In Vitro. Bai, YQ, Li, X, Zhang, DQ, Chen, L, Hou, CL, Zheng, XC, Ren, C. 2020

[4]Localization And Enzyme Kinetics Of Aminopeptidase N3 From Toxoplasma Gondii. Lu, WH, Lu, C, Zhang, Q, Cao, SN, Zhang, ZX, Jia, HL, Zheng, J. 2020

[5]Biochemical and kinetic characterization of the multifunctional beta-glucosidase/beta-xylosidase/alpha-arabinosidase, Bgxa1. Gruninger, R. J.,Gong, X.,Forster, R. J.,McAllister, T. A.,Gong, X.. 2014

[6]Two xylose-tolerant GH43 bifunctional beta-xylosidase/alpha-arabinosidases and one GH11 xylanase from Humicola insolens and their synergy in the degradation of xylan. Yang, Xinzhuo,Shi, Pengjun,Huang, Huoqing,Luo, Huiying,Wang, Yaru,Yao, Bin,Zhang, Wei. 2014

[7]Cloning, expression, and characterization of a thermostable beta-xylosidase from thermoacidophilic Alicyclobacillus sp A4. Zhang, Sanyan,Wang, Huimin,Shi, Pengjun,Bai, Yingguo,Luo, Huiying,Yao, Bin,Zhang, Sanyan,Xu, Bo. 2014

[8]Discovery and characterization of endo-xylanase and beta-xylosidase from a highly xylanolytic bacterium in the hindgut of Holotrichia parallela larvae. Xu, Jing,Zhang, Hongyu,Sheng, Ping,Xu, Jing,Zhang, Hongyu,Saccone, Giuseppe,Li, Kebin. 2014

[9]Glycoside Hydrolase Family 39 Beta-Xylosidases E.xhibit Beta-1,2-Xylosidase Activity For T ransformation Of Notoginsenosides: A New Ec Subsubclass. Zhang, R, Li, N, Xu, SJ, Han, XW, Li, CY, Wei, X, Liu, Y, Tu, T, Tang, XH, Zhou, JP, Huang, ZX. 2019

[10]Genetic Diversity Detection And Gene D.iscovery Of Novel Glycoside H ydrolase Family 48 From Soil Environmental Genomic Dna. Hua, M, Yu, SS, Ma, Y, Chen, S, Li, F. 2018

[11]Discovery of Kasugamycin as a Potent Inhibitor of Glycoside Hydrolase Family 18 Chitinases. Qi Huitang,Jiang Xi,Ding Yi,Liu Tian,Yang Qing. 2021

[12]Structural Insights into the Mechanisms Underlying the Kinetic Stability of GH28 Endo-Polygalacturonase. Tao Tu,Zhiyun Wang,Yan Luo,Yeqing Li,Xiaoyun Su,Yuan Wang,Jie Zhang,Juha Rouvinen,Bin Yao,Nina Hakulinen,Huiying Luo. 2021

[13]Discovery of Kasugamycin as a Potent Inhibitor of Glycoside Hydrolase Family 18 Chitinases. Qi Huitang,Jiang Xi,Ding Yi,Liu Tian,Yang Qing. 2021

[14]The glycoside hydrolase 7 member VdGH7a regulates Verticillium dahliae pathogenicity and induces host defenses by interacting with GhOLP1. . 2025

[15]Molecular Characterization Of A Stress-Induced N.ac Gene, Ghsnac3, From G ossypium Hirsutum. Liu, Ren-Zhong,Ma, Jun-Jun,Liu, Zhan-Ji,Fu, Ming-Chuan,Wang, Li-Guo,Liu, Zhan-Ji,Ma, Jun-Jun,Li, Fei. 2018

[16]The Rna Editing Factor Dua1 I.s Crucial To Chloroplast D evelopment At Low Temperature In Rice. Gu, Xiaofeng,Wang, Yanwei,Cui, Xuean,Han, Xiao,Wu, Jinxia,Zhang, Zhiguo,Lu, Tiegang. 2019

[17]Maize Abp2 Enhances Tolerance To D.rought And Salt Stress I n Transgenic Arabidopsis. Li Xing-juan,Li Xing-juan,Zong Na,Wang Lei,Li Ling,Zhao Jun,Fan Yun-liu,Zhang Xia,Wen Hong-tao,Wang Ying. 2018

[18]Ghwrky6 Acts As A Negative R.egulator In Both Transgenic A rabidopsis And Cotton During Drought And Salt Stress. Zhou, Kehai,Zhou, Kehai,Zhang, Yihao,Zhang, Yihao,Yang, Zhaoen,Yang, Zhaoen,Wang, Peng,Wang, Peng,Qin, Wenqiang,Qin, Wenqiang,Li, Zhi,Li, Zhi,Li, Lei,Li, Fuguang,Li, Fuguang,Han, Xiao,Din, Yanpeng,Ge, Xiaoyang,Ge, Xiaoyang,Han, Xiao,Din, Yanpeng,Ma, Zhiying. 2019

[19]A Na+/H+ Antiporter, K2-Nhad, Improves Salt And Drought Tolerance In Cotton (Gossypium Hirsutum L.). Li, Gangqiang,Wang, Nan,Yang, Caifeng,Peng, Huakang,Chen, Sanfeng,Guo, Wenfang,Liu, Dehu,Chen, Sanfeng,Zhao, Yanan,Guo, Wenfang. 2020

[20]Impacts Of Wheat Photosynthate Allocation O.n Soil N2O Emission D uring Post-Anthesis Period. Jiang, Yu,Qian, Haoyu,Chen, Changli,Deng, Aixing,Zhang, Weijian,Zhang, Yu,Zheng, Chengyan,Zhang, Xin,Zhang, Xingyue. 2019

作者其他论文 更多>>