arrow
返回

Enzyme activity engineering based on sequence co-evolution analysis

delete2022-11-01
delete14
PRE
AI
D
Donghyo Kim
M
Myung Hyun Noh
M
Minhyuk Park
I
Inhae Kim
H
Hyunsoo Ahn
D
Dae-yeol Ye *
G
Gyoo Yeol Jung
S
Sanguk Kim *
DOI:10.1016/j.ymben.2022.09.001delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
The utility of engineering enzyme activity is expanding with the development of biotechnology. Conventional methods have limited applicability as they require high-throughput screening or three-dimensional structures to direct target residues of activity control. An alternative method uses sequence evolution of natural selection. A repertoire of mutations was selected for fine-tuning enzyme activities to adapt to varying environments during the evolution. Here, we devised a strategy called sequence co-evolutionary analysis to control the efficiency of enzyme reactions (SCANEER), which scans the evolution of protein sequences and direct mutation strategy to improve enzyme activity. We hypothesized that amino acid pairs for various enzyme activity were encoded in the evolutionary history of protein sequences, whereas loss-of-function mutations were avoided since those are depleted during the evolution. SCANEER successfully predicted the enzyme activities of beta-lactamase and aminoglycoside 3 '-phosphotransferase. SCANEER was further experimentally validated to control the activities of three different enzymes of great interest in chemical production: cis-aconitate decarboxylase, alpha-ketoglutaric semialdehyde dehydrogenase, and inositol oxygenase. Activity-enhancing mutations that improve substratebinding affinity or turnover rate were found at sites distal from known active sites or ligand-binding pockets. We provide SCANEER to control desired enzyme activity through a user-friendly webserver.
Keyword:
Sequence evolution
Enzyme engineering
Sequence design
Metabolic engineering
Co -evolution analysis

期刊

Metabolic Engineering 封面图
Metabolic Engineering
IF:
6.8
论文数:
2.6K
被引数:
1.1W

机构

Y
Yonsei University
学者数:
4.8W
论文数: 4.6W
被引数: 5.2W
引用论文

引用论文

Cavity-induced chiral states of fermionic quantum gases
err2016-04-08
err0
errOAAI
errAmeneh Sheikhan; Ferdinand Brennecke; Corinna Kollath
err分享
err收藏
Suppression of Glutamine:Fructose‐6‐phosphate amidotransferase‐1 inhibits adipogenesis in 3T3‐L1 adipocytes
err2011-10-24
err0
PREAI
errTusty‐Jiuan Hsieh; Tzu Lin; Pei‐Chen Hsieh; Min‐Chun Liao; Shyi‐Jang Shin
err分享
err收藏
Comprehensive mutational scanning of a kinase in vivo reveals substrate-dependent fitness landscapes
err2014-06-09
err160
errOAAI
errMelnikov, Alexandre; Rogov, Peter; Wang, Li; Gnirke, Andreas; Mikkelsen, Tarjei S.
err分享
err收藏
Structural insights into the production of 3-hydroxypropionic acid by aldehyde dehydrogenase from Azospirillum brasilense
err2017-04-10
err18
errOAAI
errSon, Hyeoncheol Francis; Park, Sunghoon; Yoo, Tae Hyeon; Jung, Gyoo Yeol; Kim, Kyung-Jin
err分享
err收藏
err分享
err收藏
Moduli stabilization and inflation using wrapped branes
err2005-07-05
err0
errOAAI
errDamien A. Easson; Mark Trodden
err分享
err收藏
GALNT11 as a new molecular marker in chronic lymphocytic leukemia
errGene
IF0
err2014-01-01
err0
PREAI
errM.G. Libisch; M. Casás; ML. Chiribao; P. Moreno; A. Cayota; E. Osinaga; P. Oppezzo; C. Robello
err分享
err收藏
Targeting enzymes to the right compartment: Metabolic engineering for itaconic acid production by Aspergillus niger
err2013-09-01
err101
PREAI
errBlumhoff, Marzena L.; Steiger, Matthias G.; Mattanovich, Diethard; Sauer, Michael
err分享
err收藏
Automated Structure- and Sequence-Based Design of Proteins for High Bacterial Expression and Stability基于结构和序列的蛋白质的自动化设计,以实现高细菌表达和稳定性
err2016-07-01
err404
errOAAI
errGoldenzweig, Adi; Goldsmith, Moshe; Hill, Shannon E.; Gertman, Or; Laurino, Paola; Ashani, Yacov; Dym, Orly; Unger, Tamar; Albeck, Shira; Prilusky, Jaime; Lieberman, Raquel L.; Aharoni, Amir; Silman, Israel; Sussman, Joel L.; Tawfik, Dan S.; Fleishman, Sarel J.
err分享
err收藏
学者 查看更多内容