Xu_2013_Appl.Environ.Microbiol_79_7091

Reference

Title : Characterization of CpdC, a large-ring lactone-hydrolyzing enzyme from Pseudomonas sp. strain HI-70, and its use as a fusion tag facilitating overproduction of proteins in Escherichia coli - Xu_2013_Appl.Environ.Microbiol_79_7091
Author(s) : Xu Y , Grosse S , Iwaki H , Hasegawa Y , Lau PC
Ref : Applied Environmental Microbiology , 79 :7091 , 2013
Abstract :

There are few entries of carbon-carbon bond hydrolases (EC 3.7.1.-) in the ExPASy database. In microbes, these enzymes play an essential role in the metabolism of alicyclic or aromatic compounds as part of the global carbon cycle. CpdC is a omega-pentadecalactone hydrolase derived from the degradation pathway of cyclopentadecanol or cyclopentadecanone by Pseudomonas sp. strain HI-70. CpdC was purified to homogeneity and characterized. It is active as a dimer of 56,000 Da with a subunit molecular mass of 33,349. Although CpdC has the highest activity and reaction rate (kcat) toward omega-pentadecalactone, its catalytic efficiency favors lauryl lactone as a substrate. The melting temperature (Tm) of CpdC was estimated to be 50.9 +/- 0.1 degrees C. The half-life of CpdC at 35 degrees C is several days. By virtue of its high level of expression in Escherichia coli, the intact CpdC-encoding gene and progressive 3'-end deletions were employed in the construction of a series of fusion plasmid system. Although we found them in inclusion bodies, proof-of-concept of overproduction of three microbial cutinases of which the genes were otherwise expressed poorly or not at all in E. coli was demonstrated. On the other hand, two antigenic proteins, azurin and MPT63, were readily produced in soluble form.

PubMedSearch : Xu_2013_Appl.Environ.Microbiol_79_7091
PubMedID: 24038681

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Citations formats

Xu Y, Grosse S, Iwaki H, Hasegawa Y, Lau PC (2013)
Characterization of CpdC, a large-ring lactone-hydrolyzing enzyme from Pseudomonas sp. strain HI-70, and its use as a fusion tag facilitating overproduction of proteins in Escherichia coli
Applied Environmental Microbiology 79 :7091

Xu Y, Grosse S, Iwaki H, Hasegawa Y, Lau PC (2013)
Applied Environmental Microbiology 79 :7091