1- Benz, I., and M. A. Schmidt. (1989) Cloning and expression of an adhesion (AIDA-I) involved in diffuse adherence of enteropathogenic Escherichia coli, Infect. Immun. 57, pp:1506–1511.##
2- Bessette, P. H., J. J. Rice, and P. S. Daugherty. (2004) Rapid isolation of high-affinity protein binding peptides using bacterial display, Protein Eng. Des. Sel. 17,pp:731–739.##
3- Bornscheuer, U. T. (2002) Microbial carboxyl esterases: Classification, properties and application in biocatalysis, FEMS Microbiol. Rev, 26,pp:73–81.##
4- Francisco, J. A., C. F. Earhart, and G. Georgiou. (1992) Transport and anchoring of beta-lactamase to the external surface of Escherichia coli, Proc. Natl. Acad. Sci. 89,pp:2713–2717.##
5- Francisco, J. A., R. Campbell, B. L. Iverson, and G. Georgiou. (1993) Production and fluorescence-activated cell sorting of Escherichia coli expressing a functional antibody fragment on the external surface, Proc. Natl. Acad. Sci. 90,pp:10444–10448.##
6- Georgiou, G., C. Stathopoulos, P. S. Daugherty, A. R. Nayak, B. L. Iverson, and R. Curtiss III. (1997) Display of heterologous proteins on the surface of microorganisms: From the screening of combinatorial libraries to live recombinant vaccines, Nat. Biotechnol. 15,pp:29–34.##
7- Giffhorn, F., S. Kopper, A. Huwig, and S. Freimund. (2000) Rare sugars and sugar-based synthons by chemo-enzymatic synthesis, Enzyme Microb. Technol. 27,pp:734–742.##
8- Grinberg, A. V., F. Hannemann, B. Schiffler, J. Muller, U. Heinemann, and R. Bernhardt. (2000) Adrenodoxin: structure, stability, and electron transfer properties, Proteins 40,pp:590–612.##
9- Hess, J., A. Dreher, I. Gentschev, W. Goebel, C. Ladel, D. Miko, and S. H. Kaufmann. (1996) Protein p60 participates in intestinal host invasion by Listeria monocytogenes, Zentbl. Bakteriol. 284,pp:263–272.##
10- Jose, J., F. Jahnig, and T. F. Meyer. (1995) Common structural features of IgA1 protease-like outer membrane protein autotransporters letter, Mol. Microbiol. 18,pp:378–380.##
11- Jose, J., J. Kramer, T. Klauser, J. Pohlner, and T. F. Meyer. (1996) Absence of periplasmic DsbA oxidoreductase facilitates export of cysteine-containing passenger proteins to the Escherichia coli cell surface via the Iga beta autotransporter pathway, Gene, 178,pp:107–110.##
12- Jose, J., F. Hannemann, and R. Bernhardt. (2001) Functional display of active bovine adrenodoxin on the surface of E. coli by chemical incorporation of the 2Fe-2S cluster, Chembiochem, 2,pp:695–701.##
13- Jose, J., R. Bernhardt, and F. Hannemann. (2002) Cellular surface display of dimeric Adx and whole cell P450-mediated steroid synthesis on E. coli, J. Biotechnol. 95,pp:257–268.##
14- Jose, J. and S. Handel. (2003) Monitoring the cellular surface display of recombinant proteins by cysteine labeling and flow cytometry, Chembiochem, 4,pp:396–405.##
15- Jose, J., and S. von Schwichow. (2004) Autodisplay of active sorbitol dehydrogenase (SDH) yields a whole cell biocatalyst for the synthesis of rare sugars, Chembiochem, 5,pp:100–108.##
16- Jose, J., and D. Zangen. (2005) Autodisplay of the protease inhibitor aprotininin Escherichia coli, Biochem. Biophys. Res. Commun, 333,pp:1218–1226.##
17- Jose J., Meyer, T.F. (2007) The Autodisplay Story, from Discovery to Biotechnical and Biomedical applications, microbiology and molecular biology reviews, Vol. 71, No. 4,pp:600–619##
18- Klauser, T., J. Pohlner, and T. F. Meyer. (1990) Extracellular transport of cholera toxin B subunit using Neisseria IgA protease beta-domain: Conformation-dependent outer membrane translocation, EMBO J, 9,pp:1991–1999.##
19- Klauser, T., J. Pohlner, and T. F. Meyer. (1992) Selective extracellular release of cholera toxin B subunit by Escherichia coli: Dissection of Neisseria Iga beta-mediated outer membrane transport, EMBO J, 11,pp:2327–2335.##
20- Klauser, T., J. Pohlner, and T. F. Meyer. (1993) The secretion pathway of IgA protease-type proteins in gram-negative bacteria, Bioessays, 15,pp:799–805.##
21- Konieczny, M. P., M. Suhr, A. Noll, I. B. Autenrieth, and M. Alexander Schmidt. (2000) Cell surface presentation of recombinant (poly-) peptides including functional T-cell epitopes by the AIDA autotransporter system, FEMS Immunol. Med.
Microbiol, 27,pp:321–332.##
22- Kramer, U., K. Rizos, H. Apfel, I. B. Autenrieth, and C. T. Lattemann. (2003) Autodisplay: Development of an efficacious system for surface display of antigenic determinants in Salmonella vaccine strains, Infect. Immun, 71,pp:1944–1952.##
23- Lattemann, C. T., J. Maurer, E. Gerland, and T. F. Meyer. (2000) Autodisplay: Functional display of active beta-lactamase on the surface of Escherichia coli by the AIDA-I autotransporter, J. Bacteriol, 182,pp:3726–3733.##
24- McBride, J. D., H. N. Freeman, and R. J. Leatherbarrow. (1999) Selection of human elastase inhibitors from a conformationally constrained combinatorial peptide library, Eur. J. Biochem, 266,pp:403–404 12.##
25- Maurer, J., J. Jose, and T. F. Meyer. (1997) Autodisplay: one-component system for efficient surface display and release of soluble recombinant proteins from Escherichia coli, J. Bacteriol, 179,pp:794–804.##
26- Maurer, J., J. Jose, and T. F. Meyer. (1999) Characterization of the essential transport function of the AIDA-I autotransporter and evidence supporting structural predictions, J. Bacteriol, 181,pp:7014–7020.##
27- Pikuleva, I. A., K. Tesh, M. R. Waterman, and Y. Kim. (2000) The tertiary structure of full-length bovine adrenodoxin suggests functional dimers, Arch. Biochem. Biophys, 373,pp:44–55.##
28- Philippsen, A., T. Schirmer, M. A. Stein, F. Giffhorn, and J. Stetefeld. (2005) Structure of zinc-independent sorbitol dehydrogenase from Rhodobacter sphaeroides at 2.4 A resolution, Acta Crystallogr, 61,pp:374–379.##
29- Pohlner, J., R. Halter, K. Beyreuther, and T. F. Meyer. (1987) Gene structure and extracellular secretion of Neisseria gonorrhoeae IgA protease, Nature, 325,pp:458–462.##
30- Pohlner, J., T. Klauser, E. Kuttler, and R. Halter. (1992) Sequence-specific cleavage of protein fusions using a recombinant Neisseria type 2 IgA protease, Biotechnology, 10,pp:799–804.##
31- Reetz, M. T. (2000) Evolution in the test tube as a means to create enantioselective enzymes for use in organic synthesis, Sci. Prog, 83,pp:157–172.##
32- Rizos, K., C. T. Lattemann, D. Bumann, T. F. Meyer, and T. Aebischer. (2003) Autodisplay: Efficacious surface exposure of antigenic UreA fragments from Helicobacter pylori in Salmonella vaccine strains, Infect. Immun,71,pp:6320–6328.##
33- Schmidt, M., M. Baumann, E. Henke, M. Konarzycka-Bessler, and U. T. Bornscheuer. (2004) Directed evolution of lipases and esterases, Methods Enzymol, 388,pp:199–207.##
34- Schultheiss, E., C. Paar, H. Schwab, and J. Jose. (2002) Functional esterase surface display by the autotransporter pathway in Escherichia coli, J. Mol.Catal, 18,pp:89–97.##
35- Smith, G. P. (1985) Filamentous fusion phage: Novel expression vectors thatdisplay cloned antigens on the virion surface, Science, 228,pp:1315–1317.##
36- Strauss, A., and F. Gotz. (1996) invivo immobilization of enzymatically active polypeptides on the cell surface of Staphylococcus carnosus, Mol. Microbiol. 21,pp:491–500.##
37- Wentzel, A., A. Christmann, R. Kratzner, and H. Kolmar. (1999) Sequence requirements of the GPNG beta-turn of the Ecballium elaterium trypsin inhibitor II explored by combinatorial library screening, J. Biol. Chem,274,pp:21037–21043.##
38- Wernerus, H., and S. Stahl. (2004) Biotechnological applications for surface engineered bacteria, Biotechnol, Appl. Biochem, 40,pp:209–228.##