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Formation of Two-Dimensional Crystals of Membrane-Anchored and Water-Soluble Proteins

Published online by Cambridge University Press:  15 February 2011

Harald Engelhardt
Affiliation:
Max-Planck-Institut für Biochemie, D-82152 Martinsried, Germany
T. Scheybani
Affiliation:
Max-Planck-Institut für Biochemie, D-82152 Martinsried, Germany
W. Von Gustedt
Affiliation:
Max-Planck-Institut für Biochemie, D-82152 Martinsried, Germany
W. Baumeister
Affiliation:
Max-Planck-Institut für Biochemie, D-82152 Martinsried, Germany
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Abstract

The formation of two-dimensional (2-D) crystals of biological macromolecules is of interest for nanotechnological applications. Protein 2-D crystals may be used as molecular sieves and/or support devices as components of biosensors etc. [1]. Functionally specialized 2-D crystals, containing transport or catalytic proteins, provide a certain function in a highly efficient and vectorial manner. Future developments may allow the design of more complex structures such as multilayers made from different proteins or arrays of functionally linked oligo- or multimeric complexes consisting of multiple protein species [2]. Regular 2-D arrays, either truely crystalline or densely packed molecules, are one of the basic structures taht might be used to construct more sophisticated protein-based devices. 2-D crystals have some interesting features:

Type
Research Article
Copyright
Copyright © Materials Research Society 1994

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References

REFERENCES

1. Neubauer, A., Pum, D. and Sleytr, U.B., Anal. Lett. 26, 1347 (1993).Google Scholar
2. Drexler, K.E., in Nanotechnology, Research and Perspectives, edited by Crandall, B.C. and Lewis, J. (The MIT Press, Cambridge, Massachusetts, 1992), p. 325.Google Scholar
3. Jap, B.K, Zulauf, M., Scheybani, T., Hefti, A., Baumeister, W., Aebi, U. and Engel, A., Ultramicroscopy 46, 45 (1992).Google Scholar
4. Engel, A., Hoenger, A., Hefti, A., Henn, C., Ford, R.C., Kistler, J. and Zulauf, M., J. Struct. Biol. 109, 219 (1992).Google Scholar
5. Kühlbrandt, W., Quart. Rev. Biophys. 25, 1 (1992).Google Scholar
6. Kornberg, R.D. and Darst, S.A., Curr. Opinion Struct. Biol. 1, 642 (1991).Google Scholar
7. Engelhardt, H., in Fungal Cell Wall and Immune Response, edited by Latgé, J.P. and Boucias, D. (NATO ASI Series H53, Springer-Verlag, Berlin, 1991), p. 11.Google Scholar
8. Boekema, E.J., Electron Microsc. Rev. 3, 87 (1990).Google Scholar
9. Paul, A., Engelhardt, H., Jakubowski, U. and Baumeister, W., Biophys. J. 61, 172 (1992).CrossRefGoogle Scholar
10. Brunen, M., Engelhardt, H., Schmid, A. and Benz, R., J. Bacteriol. 173, 4182 (1991).Google Scholar
11. Brunen, M. and Engelhardt, H., Eur. J. Biochem. 212, 129 (1993).Google Scholar
12. Engelhardt, H., Gerbl-Rieger, S., Santarius, U. and Baumeister, W., Mol. Microbiol. 5, 1695 (1991).Google Scholar
13. Cross, G.A.M., Annu. Rev. Cell Biol. 6, 1 (1990).Google Scholar
14. Furuno, T. and Sasabe, H., Biophys. J. 65, 1714 (1993).Google Scholar
15. Yoshimura, H., Matsumoto, M., Endo, S. and Nagayama, K., Ultramicroscopy 32, 265 (1990).Google Scholar
16. Yoshimura, H., Scheybani, T., Baumeister, W. and Nagayama, K., in preparation.Google Scholar
17. Kilpatrick, J. M. and Volanakis, J.E., Immunol. Res. 10, 43 (1991).Google Scholar
18. Engelhardt, H., unpublished results.Google Scholar
19. Darst, S.A., Ahlers, M., Meller, P.H., Kubalek, E.W., Blankenburg, R., Ribi, H.O., Ringsdorf, H. and Komberg, R.D., Biophys. J. 59, 387 (1991).CrossRefGoogle Scholar
20. Hönig, D. and Möbius, D., J. Phys. Chem. 95, 4590 (1991).CrossRefGoogle Scholar
21. Hartmann, T., Gatz, R., Wiegräbe, W., Kramer, A., Hillebrand, A., Liebermann, K., Baumeister, W. and Guckenberger, R., in Near Field Optics edited by Pohl, D.W. and Courjon, D. (Kluwer Acad. Publ., 1993), p. 35.Google Scholar