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Activity and Thermostability of GH5 Endoglucanase Chimeras from Mesophilic and Thermophilic Parents
Author(s) -
Fei Zheng,
Josh V. Vermaas,
Jie Zheng,
Yuan Wang,
Tao Tu,
Xiaoyu Wang,
Xiangming Xie,
Bin Yao,
Gregg T. Beckham,
Huiying Luo
Publication year - 2018
Publication title -
applied and environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.552
H-Index - 324
eISSN - 1070-6291
pISSN - 0099-2240
DOI - 10.1128/aem.02079-18
Subject(s) - thermostability , thermophile , cellulase , chimera (genetics) , mesophile , biology , chemistry , biochemistry , genetics , enzyme , gene , bacteria
Thermal stability is an essential property of enzymes in many industrial biotechnological applications, as high temperatures improve bioreactor throughput. Many protein engineering approaches, such as rational design and directed evolution, have been employed to improve the thermal properties of mesophilic enzymes. Structure-based recombination has also been used to fuse TIM barrel fragments, and even fragments from unrelated folds, to generate new structures. However, little research has been done on GH5 endoglucanases. In this study, two GH5 endoglucanases exhibiting TIM barrel structure,So Cel5 andTe Egl5A, with different thermal properties, were hybridized to study the roles of different (βα) motifs. This work illustrates the role that structure-guided recombination can play in helping to identify sequence function relationships within GH5 enzymes by supplementing natural diversity with synthetic diversity.

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