Baker_2012_Appl.Microbiol.Biotechnol_93_229

Reference

Title : Identification and comparison of cutinases for synthetic polyester degradation - Baker_2012_Appl.Microbiol.Biotechnol_93_229
Author(s) : Baker PJ , Poultney C , Liu Z , Gross R , Montclare JK
Ref : Applied Microbiology & Biotechnology , 93 :229 , 2012
Abstract :

Cutinases have been exploited for a broad range of reactions, from hydrolysis of soluble and insoluble esters to polymer synthesis. To further expand the biotechnological applications of cutinases for synthetic polyester degradation, we perform a comparative activity and stability analysis of five cutinases from Alternaria brassicicola (AbC), Aspergillus fumigatus (AfC), Aspergillus oryzae (AoC), Humicola insolens (HiC), and the well-characterized Fusarium solani (FsC). Of the cutinases, HiC demonstrated enhanced poly(epsilon-caprolactone) hydrolysis at high temperatures and under all pH values, followed by AoC and AfC. Both AbC and FsC are least stable and function poorly at high temperatures as well as at acidic pH conditions. Surface charge calculations and phylogenetic analysis reveal two important modes of cutinase stabilization: (1) an overall neutral surface charge within the "crowning area" by the active site and (2) additional disulfide bond formation. These studies provide insights useful for reengineering such enzymes with improved function and stability for a wide range of biotransformations.

PubMedSearch : Baker_2012_Appl.Microbiol.Biotechnol_93_229
PubMedID: 21713515
Gene_locus related to this paper: humin-cut

Related information

Substrate Polycaprolactone
Gene_locus humin-cut

Citations formats

Baker PJ, Poultney C, Liu Z, Gross R, Montclare JK (2012)
Identification and comparison of cutinases for synthetic polyester degradation
Applied Microbiology & Biotechnology 93 :229

Baker PJ, Poultney C, Liu Z, Gross R, Montclare JK (2012)
Applied Microbiology & Biotechnology 93 :229