Literature DB >> 33559890

Improving the activity and thermostability of GH2 β-glucuronidases via domain reassembly.

Mingzhu Liu1, Jing Yu1, Bo Lv1, Yuhui Hou1, Xinhe Liu1, Xudong Feng1, Chun Li1,2,3.   

Abstract

Glycoside hydrolase family 2 (GH2) enzymes are generally composed of three domains: TIM-barrel domain (TIM), immunoglobulin-like β-sandwich domain (ISD), and sugar-binding domain (SBD). The combination of these three domains yields multiple structural combinations with different properties. Theoretically, the drawbacks of a given GH2 fold may be circumvented by efficiently reassembling the three domains. However, very few successful cases have been reported. In this study, we used six GH2 β-glucuronidases (GUSs) from bacteria, fungi, or humans as model enzymes and constructed a series of mutants by reassembling the domains from different GUSs. The mutants PGUS-At, GUS-PAA, and GUS-PAP, with reassembled domains from fungal GUSs, showed improved expression levels, activity, and thermostability, respectively. Specifically, compared to the parental enzyme, the mutant PGUS-At displayed 3.8 times higher expression, the mutant GUS-PAA displayed 1.0 time higher catalytic efficiency (kcat /Km ), and the mutant GUS-PAP displayed 7.5 times higher thermostability at 65°C. Furthermore, two-hybrid mutants, GUS-AEA and GUS-PEP, were constructed with the ISD from a bacterial GUS and SBD and TIM domain from fungal GUSs. GUS-AEA and GUS-PEP showed 30.4% and 23.0% higher thermostability than GUS-PAP, respectively. Finally, molecular dynamics simulations were conducted to uncover the molecular reasons for the increased thermostability of the mutant.
© 2021 Wiley Periodicals LLC.

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Keywords:  MD simulation; glycoside hydrolase family 2; protein engineering; reassembly of domains; β-glucuronidase

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Year:  2021        PMID: 33559890     DOI: 10.1002/bit.27710

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  1 in total

1.  Structural and Biochemical Basis of a Marine Bacterial Glycoside Hydrolase Family 2 β-Glycosidase with Broad Substrate Specificity.

Authors:  Jian Yang; Shubo Li; Yu Liu; Ru Li; Lijuan Long
Journal:  Appl Environ Microbiol       Date:  2021-11-24       Impact factor: 5.005

  1 in total

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