Literature DB >> 36000858

Identification and Mutation Analysis of Nonconserved Residues on the TIM-Barrel Surface of GH5_5 Cellulases for Catalytic Efficiency and Stability Improvement.

Jie Zheng1,2, Han-Qing Liu3, Xing Qin1, Kun Yang1, Jian Tian3, Xiao-Lu Wang1, Ya-Ru Wang1, Yuan Wang1, Bin Yao1, Hui-Ying Luo1, Huo-Qing Huang1.   

Abstract

Exploring the potential functions of nonconserved residues on the outer side of α-helices and systematically optimizing them are pivotal for their application in protein engineering. Based on the evolutionary structural conservation analysis of GH5_5 cellulases, a practical molecular improvement strategy was developed. Highly variable sites on the outer side of the α-helices of the GH5_5 cellulase from Aspergillus niger (AnCel5A) were screened, and 14 out of the 34 highly variable sites were confirmed to exert a positive effect on the activity. After the modular combination of the positive mutations, the catalytic efficiency of the mutants was further improved. By using CMC-Na as the substrate, the catalytic efficiency and specific activity of variant AnCel5A_N193A/T300P/D307P were approximately 2.0-fold that of AnCel5A (227 ± 21 versus 451 ± 43 ml/s/mg and 1,726 ± 19 versus 3,472 ± 42 U/mg, respectively). The half-life (t1/2) of variant AnCel5A_N193A/T300P/D307P at 75°C was 2.36 times that of AnCel5A. The role of these sites was successfully validated in other GH5_5 cellulases. Computational analyses revealed that the flexibility of the loop 6-loop 7-loop 8 region was responsible for the increased catalytic performance. This work not only illustrated the important role of rapidly evolving positions on the outer side of the α-helices of GH5_5 cellulases but also revealed new insights into engineering the proteins that nature left as clues for us to find. IMPORTANCE A comprehensive understanding of the residues on the α-helices of the GH5_5 cellulases is important for catalytic efficiency and stability improvement. The main objective of this study was to use the evolutionary conservation and plasticity of the TIM-barrel fold to probe the relationship between nonconserved residues on the outer side of the α-helices and the catalytic efficiency of GH5_5 cellulases by conducting structure-guided protein engineering. By using a four-step nonconserved residue screening strategy, the functional role of nonconserved residues on the outer side of the α-helices was effectively identified, and a variant with superior performance and capability was constructed. Hence, this study proved the effectiveness of this strategy in engineering GH5_5 cellulases and provided a potential competitor for industrial applications. Furthermore, this study sheds new light on engineering TIM-barrel proteins.

Entities:  

Keywords:  GH5_5 family cellulases; TIM-barrel fold; catalytic efficiency; lignocellulosic biomass; nonconserved residues; α-helices

Mesh:

Substances:

Year:  2022        PMID: 36000858      PMCID: PMC9469711          DOI: 10.1128/aem.01046-22

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   5.005


  48 in total

1.  Factors enhancing protein thermostability.

Authors:  S Kumar; C J Tsai; R Nussinov
Journal:  Protein Eng       Date:  2000-03

2.  Disulfide bonds elimination of endoglucanase II from Trichoderma reesei by site-directed mutagenesis to improve enzyme activity and thermal stability: An experimental and theoretical approach.

Authors:  Ali Akbarzadeh; Navid Pourzardosht; Ehsan Dehnavi; Seyed Omid Ranaei Siadat; Mohammad Reza Zamani; Mostafa Motallebi; Farnaz Nikzad Jamnani; Mojtaba Aghaeepoor; Mohammad Barshan Tashnizi
Journal:  Int J Biol Macromol       Date:  2018-09-26       Impact factor: 6.953

3.  Active site loop motion in triosephosphate isomerase: T-jump relaxation spectroscopy of thermal activation.

Authors:  Ruel Desamero; Sharon Rozovsky; Nick Zhadin; Ann McDermott; Robert Callender
Journal:  Biochemistry       Date:  2003-03-18       Impact factor: 3.162

Review 4.  The TIM-barrel fold: a versatile framework for efficient enzymes.

Authors:  R K Wierenga
Journal:  FEBS Lett       Date:  2001-03-16       Impact factor: 4.124

5.  Reflections on the catalytic power of a TIM-barrel.

Authors:  John P Richard; Xiang Zhai; M Merced Malabanan
Journal:  Bioorg Chem       Date:  2014-07-11       Impact factor: 5.275

6.  Stabilizing salt-bridge enhances protein thermostability by reducing the heat capacity change of unfolding.

Authors:  Chi-Ho Chan; Tsz-Ha Yu; Kam-Bo Wong
Journal:  PLoS One       Date:  2011-06-24       Impact factor: 3.240

7.  Microbial cellulases and their industrial applications.

Authors:  Ramesh Chander Kuhad; Rishi Gupta; Ajay Singh
Journal:  Enzyme Res       Date:  2011-09-07

8.  Predicting the impact of Lynch syndrome-causing missense mutations from structural calculations.

Authors:  Sofie V Nielsen; Amelie Stein; Alexander B Dinitzen; Elena Papaleo; Michael H Tatham; Esben G Poulsen; Maher M Kassem; Lene J Rasmussen; Kresten Lindorff-Larsen; Rasmus Hartmann-Petersen
Journal:  PLoS Genet       Date:  2017-04-19       Impact factor: 5.917

9.  Integrating enzyme fermentation in lignocellulosic ethanol production: life-cycle assessment and techno-economic analysis.

Authors:  Johanna Olofsson; Zsolt Barta; Pål Börjesson; Ola Wallberg
Journal:  Biotechnol Biofuels       Date:  2017-02-23       Impact factor: 6.040

Review 10.  FoldX as Protein Engineering Tool: Better Than Random Based Approaches?

Authors:  Oliver Buß; Jens Rudat; Katrin Ochsenreither
Journal:  Comput Struct Biotechnol J       Date:  2018-02-03       Impact factor: 7.271

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