4.7 Review

Thermostable cellulose saccharifying microbial enzymes: Characteristics, recent advances and biotechnological applications

Journal

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Volume 188, Issue -, Pages 226-244

Publisher

ELSEVIER
DOI: 10.1016/j.ijbiomac.2021.08.024

Keywords

Thermophiles; Thermozymes; Native cellulases; Recombinant cellulases; Genetic; protein engineering; Organic solvent tolerance

Funding

  1. DBT
  2. Indo-US Science & Technology Forum (IUSSTF) [New Delhi, India] [IUSSTF/JCERDC-SGB/IUABC-UDSC/2016]
  3. University Grants Commission, New Delhi [18-1/2011 (BSR)]
  4. IUSSTF [2020_02085]
  5. DST

Ask authors/readers for more resources

Cellulases play a crucial role in the bioconversion of renewable lignocellulosic biomass, but low production titres lead to high enzyme costs, affecting the success of ethanol-based biorefineries. Stable cellulases are important for their wider application in industrial processes active at acidic/alkaline pH ranges, organic solvents, and salt tolerance.
Cellulases play a promising role in the bioconversion of renewable lignocellulosic biomass into fermentable sugars which are subsequently fermented to biofuels and other value-added chemicals. Besides biofuel industries, they are also in huge demand in textile, detergent, and paper and pulp industries. Low titres of cellulase production and processing are the main issues that contribute to high enzyme cost. The success of ethanol-based biorefinery depends on high production titres and the catalytic efficiency of cellulases functional at elevated temperatures with acid/alkali tolerance and the low cost. In view of their wider application in various industrial processes, stable cellulases that are active at elevated temperatures in the acidic-alkaline pH ranges, and organic solvents and salt tolerance would be useful. This review provides a recent update on the advances made in thermostable cellulases. Developments in their sources, characteristics and mechanisms are updated. Various methods such as rational design, directed evolution, synthetic & system biology and immobilization techniques adopted in evolving cellulases with ameliorated thermostability and characteristics are also discussed. The wide range of applications of thermostable cellulases in various industrial sectors is described.

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