Gianfreda L, Scarfi M R
Dipartimento di Ingegneria Chimica, Università di Napoli, Italy.
Mol Cell Biochem. 1991 Feb 2;100(2):97-128. doi: 10.1007/BF00234161.
'Enzyme stabilization' is one of the most important fields in basic and applied enzymology. In basic enzymology, it is of particular relevance to understand enzyme stabilization principles first elucidating how and why the enzymes lose their biological activity and then deriving structure-stability relationships existing in enzymatic molecules. In applied enzymology, the most significant goal is to achieve useful compounds by biocatalysis. Enzymes are good catalysts in terms of high catalytic and specific activity with ability to function under mild conditions. However, they are not always ideal catalysts for practical applications because they are generally unstable and they inactivate rapidly through several mechanisms. In order to enhance enzyme stability, many strategies have been pursued in recent years. The present article is an attempt to provide detailed information about these strategies.
“酶的稳定化”是基础酶学和应用酶学中最重要的领域之一。在基础酶学中,首先阐明酶如何以及为何失去其生物活性,然后推导酶分子中存在的结构-稳定性关系,对于理解酶的稳定化原理尤为重要。在应用酶学中,最重要的目标是通过生物催化获得有用的化合物。酶就其高催化活性和特异性而言是良好的催化剂,并且能够在温和条件下发挥作用。然而,它们在实际应用中并不总是理想的催化剂,因为它们通常不稳定,并且会通过多种机制迅速失活。为了提高酶的稳定性,近年来人们采取了许多策略。本文旨在提供有关这些策略的详细信息。