| Literature DB >> 28387245 |
Jieyuan Wu1,2, Peixia Jiang1, Wei Chen1, Dandan Xiong1,2, Linglan Huang3, Junying Jia4, Yuanyuan Chen4, Jian-Ming Jin3, Shuang-Yan Tang1.
Abstract
In this study the repressor of Escherichia coli lac operon, LacI, has been engineered for altered effector specificity. A LacI saturation mutagenesis library was subjected to Fluorescence Activated Cell Sorting (FACS) dual screening. Mutant LacI-L5 was selected and it is specifically induced by lactulose but not by other disaccharides tested (lactose, epilactose, maltose, sucrose, cellobiose and melibiose). LacI-L5 has been successfully used to construct a whole-cell lactulose biosensor which was then applied in directed evolution of cellobiose 2-epimerase (C2E) for elevated lactulose production. The mutant C2E enzyme with ~32-fold enhanced expression level was selected, demonstrating the high efficiency of the lactulose biosensor. LacI-L5 can also be used as a novel regulatory tool. This work explores the potential of engineering LacI for customized molecular biosensors which can be applied in practice.Entities:
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Year: 2017 PMID: 28387245 PMCID: PMC5384092 DOI: 10.1038/srep45994
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Crystal structure of the wild-type LacI binding pocket in complex with IPTG (PDB ID: 2P9H)21, based on which four residues in the effector binding pocket were selected for saturation mutagenesis.
Figure 2Engineering LacI for altered effector specificity.
(a) GFP fluorescence from strain BLGR harboring plasmid pLac7-L5 as a function of lactulose. The corresponding dose-response curve of wild-type LacI (LacI-WT) is included for reference. (b) GFP fluorescence from the strain BLGR, which harbors plasmid pLac7-L5, in response to 1 mM of the indicated disaccharides, and the structures of the disaccharides. (c) The binding affinity of LacI-L5 for lactulose was measured by SPR. The corresponding binding affinity of wild-type LacI (LacI-WT) is included for reference.
Figure 3Effects of lactose on wild-type LacI (a) and LacI-L5 (b).
Figure 4Engineering C2E for elevated lactulose production.
(a) The BLGR strains co-expressing LacI-L5 and the C2E random mutagenesis library grown on LB agar supplemented with 10 mM lactose under UV 302 nm. (b) Lactulose productions of the selected variants expressing the C2E mutants at 37 °C, compared with that of strain expressing the wild-type C2E (C2E-WT). (c) Western-blot analysis of mutant C2 expression as compared with the wild-type enzyme. (d) Specific activities of wild-type C2E (C2E-WT) and mutant C2 at 37 °C and 80 °C.