Display of α-Amylase on the Surface of Lactobacillus casei Cells by Use of the PgsA Anchor Protein, and Production of Lactic Acid from Starch
Open Access
- 1 January 2006
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 72 (1) , 269-275
- https://doi.org/10.1128/aem.72.1.269-275.2006
Abstract
We developed a new cell surface engineering system based on the PgsA anchor protein from Bacillus subtilis . In this system, the N terminus of the target protein was fused to the PgsA protein and the resulting fusion protein was expressed on the cell surface. Using this new system, we constructed a novel starch-degrading strain of Lactobacillus casei by genetically displaying α-amylase from the Streptococcus bovis strain 148 with a FLAG peptide tag (AmyAF). Localization of the PgsA-AmyA-FLAG fusion protein on the cell surface was confirmed by immunofluorescence microscopy and flow cytometric analysis. The lactic acid bacteria which displayed AmyAF showed significantly elevated hydrolytic activity toward soluble starch. By fermentation using AmyAF-displaying L. casei cells, 50 g/liter of soluble starch was reduced to 13.7 g/liter, and 21.8 g/liter of lactic acid was produced within about 24 h. The yield in terms of grams of lactic acid produced per gram of carbohydrate utilized was 0.60 g per g of carbohydrate consumed at 24 h. Since AmyA was immobilized on the cells, cells were recovered after fermentation and used repeatedly. During repeated utilization of cells, the lactic acid yield was improved to 0.81 g per g of carbohydrate consumed at 72 h. These results indicate that efficient simultaneous saccharification and fermentation from soluble starch to lactic acid were carried out by recombinant L. casei cells with cell surface display of AmyA.Keywords
This publication has 50 references indexed in Scilit:
- Direct Production of Ethanol from Raw Corn Starch via Fermentation by Use of a Novel Surface-Engineered Yeast Strain Codisplaying Glucoamylase and α-AmylaseApplied and Environmental Microbiology, 2004
- Identification and Characterization of the Novel LysM Domain-Containing Surface Protein Sep from Lactobacillus fermentum BR11 and Its Use as a Peptide Fusion Partner in Lactobacillus and LactococcusApplied and Environmental Microbiology, 2004
- Efficient production of L-(+)-lactic acid from raw starch by Streptococcus bovis 148Journal of Bioscience and Bioengineering, 2004
- Peptide Surface Display and Secretion Using Two LPXTG-Containing Surface Proteins from Lactobacillus fermentum BR11Applied and Environmental Microbiology, 2003
- Cell Wall Attachment of a Widely Distributed Peptidoglycan Binding Domain Is Hindered by Cell Wall ConstituentsJournal of Biological Chemistry, 2003
- Surface Display of the Receptor-Binding Region of the Lactobacillus brevis S-Layer Protein in Lactococcus lactis Provides Nonadhesive Lactococci with the Ability To Adhere to Intestinal Epithelial CellsApplied and Environmental Microbiology, 2003
- Surface Display of Foreign Epitopes on the Lactobacillus brevis S-LayerApplied and Environmental Microbiology, 2002
- Identification by Flagellum Display of an Epithelial Cell- and Fibronectin-Binding Function in the SlpA Surface Protein of Lactobacillus brevisJournal of Bacteriology, 2002
- Expression of a streptococcal glucosyltransferase as a fusion to a solute-binding protein inLactobacillus fermentumBR11FEMS Microbiology Letters, 2002
- Lactic acid bacteria as antigen delivery vehicles for oral immunization purposesInternational Journal of Food Microbiology, 1998