Affiliation:
1. Department of Biological Sciences, Korea Advanced Institute of Science and Technology
2. Applied and Engineering Chemistry Division, Korea Research Institute of Chemical Technology, Daejeon, Republic of Korea
Abstract
ABSTRACT
The ABC transporter (TliDEF) from
Pseudomonas fluorescens
SIK W1, which mediated the secretion of a thermostable lipase (TliA) into the extracellular space in
Escherichia coli
, was engineered using directed evolution (error-prone PCR) to improve its secretion efficiency. TliD mutants with increased secretion efficiency were identified by coexpressing the mutated
tliD
library with the wild-type
tliA
lipase in
E. coli
and by screening the library with a tributyrin-emulsified indicator plate assay and a microtiter plate-based assay. Four selected mutants from one round of error-prone PCR mutagenesis, T6, T8, T24, and T35, showed 3.2-, 2.6-, 2.9-, and 3.0-fold increases in the level of secretion of TliA lipase, respectively, but had almost the same level of expression of TliD in the membrane as the strain with the wild-type TliDEF transporter. These results indicated that the improved secretion of TliA lipase was mediated by the transporter mutations. Each mutant had a single amino acid change in the predicted cytoplasmic regions in the membrane domain of TliD, implying that the corresponding region of TliD was important for the improved and successful secretion of the target protein. We therefore concluded that the efficiency of secretion of a heterologous protein in
E. coli
can be enhanced by in vitro engineering of the ABC transporter.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
27 articles.
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