SpyTag/SpyCatcher molecular cyclization confers protein stability and resilience to aggregation

被引:39
作者
Sun, Xiao-Bao [1 ]
Cao, Jia-Wen [1 ,2 ]
Wang, Jia-Kun [2 ]
Lin, Hai-Zhen [1 ]
Gao, De-Ying [1 ]
Qian, Guo-Ying [1 ]
Park, Yong-Doo [1 ,3 ]
Chen, Zhong-Fa [1 ]
Wang, Qian [1 ]
机构
[1] Zhejiang Wanli Univ, Coll Biol & Environm Sci, Ningbo 315100, Zhejiang, Peoples R China
[2] Zhejiang Univ, Key Lab Anim Feed & Nutr Zhejiang Prov, Coll Anim Sci, Hangzhou 310058, Zhejiang, Peoples R China
[3] Tsinghua Univ, Zhejiang Prov Key Lab Appl Enzymol, Yangtze Delta Reg Inst, 705 Yatai Rd, Jiaxing 314006, Zhejiang, Peoples R China
关键词
SpyTag/SpyCatcher cyclization; Xylanase; Thermostability; Aggregation; Sustainable; Lignocellulose; SACCHAROMYCES-CEREVISIAE; DIRECTED EVOLUTION; SPYCATCHER; XYLANASE; THERMOSTABILITY; BIOTECHNOLOGY; IMPROVEMENT; METABOLISM; PHYTASE; ENZYMES;
D O I
10.1016/j.nbt.2018.12.003
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The capacities for thermal and inhibitor tolerance are critical for industrial enzymes and loss of activity is a major challenge in deploying natural enzymes for commercial applications. Protein engineering approaches, such as site-directed mutagenesis and directed evolution, have been devoted to modifying natural enzymes. Recently, a post-translation protein engineering strategy, the SpyTag/SpyCatcher system, was introduced. Here, we have generated a thermo-and ion-tolerant cyclized xylanase (C-TFX) by fusing the SpyTag and SpyCatcher peptides to its N-and C-terminus respectively. Compared with the linear enzyme, C-TFX retained greater residual activity after heating or metal ion exposure. Intrinsic fluorescence and circular dichroism analysis revealed that the isopeptide bond mediated by SpyTag/SpyCatcher cyclization contributed to enhanced thermoand ion-stability, probably by stabilizing its secondary and conformational structure. In addition, the heatchallenged C-TFX was observed to degrade natural lignocellulosic substrates efficiently. The cyclized xylanase was more stable and resistent to denaturation and aggregation than the linear enzyme. The "superglue" SpyTag/ SpyCatcher cyclization system enables the enzyme to maintain its structural conformation, which will be of particular interest in engineering of enzymes for industrial application such as feed additives and functional oligosaccharides production.
引用
收藏
页码:28 / 36
页数:9
相关论文
共 49 条
[41]   Directed Evolution Method in Saccharomyces cerevisiae: Mutant Library Creation and Screening [J].
Vina-Gonzalez, Javier ;
Gonzalez-Perez, David ;
Alcalde, Miguel .
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2016, (110)
[42]   Enhanced thermal stability of lichenase from Bacillus subtilis 168 by SpyTag/SpyCatcher-mediated spontaneous cyclization [J].
Wang, Jindan ;
Wang, Yilin ;
Wang, Xinzhe ;
Zhang, Dandan ;
Wu, Shuyu ;
Zhang, Guangya .
BIOTECHNOLOGY FOR BIOFUELS, 2016, 9
[43]   Assessment of Noise and Heavy Metals (Cr, Cu, Cd, Pb) in the Ambience of the Production Line for Recycling Waste Printed Circuit Boards [J].
Xue, Mianqiang ;
Yang, Yichen ;
Ruan, Jujun ;
Xu, Zhenming .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (01) :494-499
[44]   Directed evolution of mandelate racemase by a novel high-throughput screening method [J].
Yang, Chengcheng ;
Ye, Lidan ;
Gu, Jiali ;
Yang, Xiaohong ;
Li, Aipeng ;
Yu, Hongwei .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2017, 101 (03) :1063-1072
[45]   Synthetic Biology: A New Tool for the Trade [J].
Zakeri, Bijan .
CHEMBIOCHEM, 2015, 16 (16) :2277-2282
[46]   Peptide tag forming a rapid covalent bond to a protein, through engineering a bacterial adhesin [J].
Zakeri, Bijan ;
Fierer, Jacob O. ;
Celik, Emrah ;
Chittock, Emily C. ;
Schwarz-Linek, Ulrich ;
Moy, Vincent T. ;
Howarth, Mark .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (12) :E690-E697
[47]   Combining C6 and C5 sugar metabolism for enhancing microbial bioconversion [J].
Zhang, Guo-Chang ;
Liu, Jing-Jing ;
Kong, In Iok ;
Kwak, Suryang ;
Jin, Yong-Su .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2015, 29 :49-57
[48]   Rapid ethanol production at elevated temperatures by engineered thermotolerant Kluyveromyces marxianus via the NADP(H)-preferring xylose reductase-xylitol dehydrogenase pathway [J].
Zhang, Jia ;
Zhang, Biao ;
Wang, Dongmei ;
Gao, Xiaolian ;
Sun, Lianhong ;
Hong, Jiong .
METABOLIC ENGINEERING, 2015, 31 :140-152
[49]   Toward an aggregated understanding of enzymatic hydrolysis of cellulose: Noncomplexed cellulase systems [J].
Zhang, YHP ;
Lynd, LR .
BIOTECHNOLOGY AND BIOENGINEERING, 2004, 88 (07) :797-824