Protein engineering for biofuel production: Recent development
The unstable and unsure handiness of crude oil sources moreover the rising price of fuels have shifted international efforts to utilize renewable resources for the assembly of greener energy and a replacement which might additionally meet the high energy demand of the globe. Biofuels represent a su...
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doaj-ce5e862bb11c4bd78fc74e6685ceebb82020-11-25T01:22:16ZengApplied Science Innovations Private LimitedCarbon: Science and Technology0974-05460974-05462016-09-018394102Protein engineering for biofuel production: Recent developmentNisha Singh0 Pragya Prakash1Ramesh Chandra2Department of Bio-Engineering, Birla Institute of Technology, BIT Mesra Ranchi, IndiaDepartment of Bio-Engineering, Birla Institute of Technology, BIT Mesra Ranchi, IndiaDepartment of Bio-Engineering, Birla Institute of Technology, BIT Mesra Ranchi, IndiaThe unstable and unsure handiness of crude oil sources moreover the rising price of fuels have shifted international efforts to utilize renewable resources for the assembly of greener energy and a replacement which might additionally meet the high energy demand of the globe. Biofuels represent a sustainable, renewable, and also the solely predictable energy supply to fossil fuels. During the green production of Biofuels, several in vivo processes place confidence in the conversion of biomass to sugars by engineered enzymes, and the subsequent conversion of sugars to chemicals via designed proteins in microbial production hosts. Enzymes are indispensable within the effort to provide fuels in an ecologically friendly manner. They have the potential to catalyze reactions with high specificity and potency while not using dangerous chemicals. Nature provides an in depth assortment of enzymes, however usually these should be altered to perform desired functions in needed conditions. Presently available enzymes like cellulose are subject to tight induction and regulation systems and additionally suffer inhibition from numerous end products. Therefore, more impregnable and economical catalyst preparations ought to be developed for the enzymatic method to be more economical. Approaches like protein engineering, reconstitution of protein mixtures and bio prospecting for superior enzymes are gaining importance. Advances in enzyme engineering allow the planning and/or directed evolution of enzymes specifically tailored for such industrial applications. Recent years have seen the production of improved enzymes to help with the conversion of biomass into fuels. The assembly of the many of those fuels is feasible due to advances in protein engineering. This review discusses the distinctive challenges that protein engineering faces in the method of changing lignocellulose to biofuels and the way they're addressed by recent advances in this field. http://www.applied-science-innovations.com/cst-web-site/CST-8-3-2016/CST-209-8-3-2016-94-102.pdfBioefuelProtein engineeringcellulaselipase. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nisha Singh Pragya Prakash Ramesh Chandra |
spellingShingle |
Nisha Singh Pragya Prakash Ramesh Chandra Protein engineering for biofuel production: Recent development Carbon: Science and Technology Bioefuel Protein engineering cellulase lipase. |
author_facet |
Nisha Singh Pragya Prakash Ramesh Chandra |
author_sort |
Nisha Singh |
title |
Protein engineering for biofuel production: Recent development |
title_short |
Protein engineering for biofuel production: Recent development |
title_full |
Protein engineering for biofuel production: Recent development |
title_fullStr |
Protein engineering for biofuel production: Recent development |
title_full_unstemmed |
Protein engineering for biofuel production: Recent development |
title_sort |
protein engineering for biofuel production: recent development |
publisher |
Applied Science Innovations Private Limited |
series |
Carbon: Science and Technology |
issn |
0974-0546 0974-0546 |
publishDate |
2016-09-01 |
description |
The unstable and unsure handiness of crude oil sources moreover the rising price of fuels have shifted international efforts to utilize renewable resources for the assembly of greener energy and a
replacement which might additionally meet the high energy demand of the globe. Biofuels represent a sustainable, renewable, and also the solely predictable energy supply to fossil fuels. During the green production of Biofuels, several in vivo processes place confidence in the conversion of biomass to sugars by engineered enzymes, and the subsequent conversion of sugars to chemicals via designed proteins in microbial production hosts. Enzymes are indispensable within the effort to provide fuels in an ecologically friendly manner. They have the potential to catalyze reactions with high specificity and potency while not using dangerous chemicals. Nature provides an in depth assortment of
enzymes, however usually these should be altered to perform desired functions in needed conditions. Presently available enzymes like cellulose are subject to tight induction and regulation systems and additionally suffer inhibition from numerous end products. Therefore, more impregnable and economical catalyst preparations ought to be developed for the enzymatic method to be more economical. Approaches like protein engineering, reconstitution of protein mixtures and bio prospecting for superior enzymes are gaining importance. Advances in enzyme engineering allow the planning and/or directed evolution of enzymes specifically tailored for such industrial applications. Recent years have seen the production of improved enzymes to help with the conversion of biomass into fuels. The assembly of the many of those fuels is feasible due to advances in protein engineering. This review discusses the distinctive challenges that protein engineering faces in the method of changing lignocellulose to biofuels and the way they're addressed by recent advances in this field.
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topic |
Bioefuel Protein engineering cellulase lipase. |
url |
http://www.applied-science-innovations.com/cst-web-site/CST-8-3-2016/CST-209-8-3-2016-94-102.pdf |
work_keys_str_mv |
AT nishasingh proteinengineeringforbiofuelproductionrecentdevelopment AT pragyaprakash proteinengineeringforbiofuelproductionrecentdevelopment AT rameshchandra proteinengineeringforbiofuelproductionrecentdevelopment |
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