Developmental strategies and regulation of cell-free enzyme system for ethanol production: a molecular prospective

被引:0
作者
Waleed Ahmad Khattak
Muhammad Wajid Ullah
Mazhar Ul-Islam
Shaukat Khan
Minah Kim
Yeji Kim
Joong Kon Park
机构
[1] Kyungpook National University,Department of Chemical Engineering
来源
Applied Microbiology and Biotechnology | 2014年 / 98卷
关键词
Cell-free enzyme system; Whole-cell system; Glycolytic and fermentation enzymes; Ethanol; Conventional fermentation;
D O I
暂无
中图分类号
学科分类号
摘要
Most biomanufacturing systems developed for the production of biocommodities are based on whole-cell systems. However, with the advent of innovative technologies, the focus has shifted from whole-cell towards cell-free enzyme system. Since more than a century, researchers are using the cell-free extract containing the required enzymes and their respective cofactors in order to study the fundamental aspects of biological systems, particularly fermentation. Although yeast cell-free enzyme system is known since long ago, it is rarely been studied and characterized in detail. In this review, we hope to describe the major pitfalls encountered by whole-cell system and introduce possible solutions to them using cell-free enzyme systems. We have discussed the glycolytic and fermentative pathways and their regulation at both transcription and translational levels. Moreover, several strategies employed for development of cell-free enzyme system have been described with their potential merits and shortcomings associated with these developmental approaches. We also described in detail the various developmental approaches of synthetic cell-free enzyme system such as compartmentalization, metabolic channeling, protein fusion, and co-immobilization strategies. Additionally, we portrayed the novel cell-free enzyme technologies based on encapsulation and immobilization techniques and their development and commercialization. Through this review, we have presented the basics of cell-free enzyme system, the strategies involved in development and operation, and the advantages over conventional processes. Finally, we have addressed some potential directions for the future development and industrialization of cell-free enzyme system.
引用
收藏
页码:9561 / 9578
页数:17
相关论文
共 576 条
  • [91] Porro D(1982)Disruption and protein release by ultrasonication of yeast cells J Biol Chem 260 15019-159
  • [92] Conrado RJ(1985)Construction of an artificial bifunctional enzyme, beta-galactosidase/galactose dehydrogenase, exhibiting efficient galactose channeling J Biol Chem 45 29-6289
  • [93] Varner JD(2011) aldolase mutants Free Radic Res 32 59-5337
  • [94] DeLisa MP(1994)Resistance to 2-deoxyglucose in yeast: a direct selection of mutants lacking glucose-phosphorylating enzymes J Biotechnol 9 152-698
  • [95] Delneri D(2007)The structural basis of substrate activation in yeast pyruvate decarboxylase. A crystallographic and kinetic study Metab Eng 132 6288-17
  • [96] Gardner DCJ(2010)A highly efficient and robust cell-free protein synthesis system prepared from wheat embryos: plants apparently contain a suicide system directed at ribosomes J Am Chem Soc 11 5330-260
  • [97] Bruschi CV(1991)Yeast as a model for medical and medicinal research Mol Cell Biol 234 691-451
  • [98] Oliver SG(1986)Selective recovery of acetone-butanol-ethanol from aqueous mixture by pervaporation Biochem J 363 12-375
  • [99] Denis CL(2007)Yeast pyruvate kinase: a mutant from catalytically insensitive to fructose 1,6-bisphosphate Biochem Biophys Res Commun 92 251-920
  • [100] Ferguson J(2004)Lipase from Bioresour Technol 9 442-279