scAvd (single-chain avidin, where two dcAvd are joined in a single polypeptide chain), having four biotin-binding domains, was constructed by fusion of topologically modified avidin units. scAvd showed similar biotin binding and thermal stability properties as chicken avidin. The DNA construct encoding scAvd contains four circularly permuted avidin domains, plus short linkers connecting the four domains into a single polypeptide chain. In contrast with wild-type avidin, which contains four identical avidin monomers, scAvd enables each one of the four avidin domains to be independently modified by protein engineering. Therefore the scAvd scaffold can be used to construct spatially and stoichiometrically defined pseudotetrameric avidin molecules showing different domain characteristics. In addition, unmodified scAvd could be used as a fusion partner, since it provides a unique non-oligomeric structure, which is fully functional with four high-affinity biotin-binding sites. Furthermore, the subunit-to-domain strategy described in the present study could be applied to other proteins and protein complexes, facilitating the development of sophisticated protein tools for applications in nanotechnology and life sciences.
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December 2005
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Research Article|
December 06 2005
Tetravalent single-chain avidin: from subunits to protein domains via circularly permuted avidins
Henri R. Nordlund;
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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Vesa P. Hytönen;
Vesa P. Hytönen
1
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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Jarno Hörhä;
Jarno Hörhä
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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Juha A. E. Määttä;
Juha A. E. Määttä
2
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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Daniel J. White;
Daniel J. White
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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Katrin Halling;
Katrin Halling
†Department of Biochemistry and Pharmacy, Åbo Akademi University, P.O. Box 66, FIN-20521 Turku, Finland
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Eevaleena J. Porkka;
Eevaleena J. Porkka
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
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J. Peter Slotte;
J. Peter Slotte
†Department of Biochemistry and Pharmacy, Åbo Akademi University, P.O. Box 66, FIN-20521 Turku, Finland
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Olli H. Laitinen;
Olli H. Laitinen
‡A.I. Virtanen Institute, Department of Molecular Medicine, University of Kuopio, P.O. Box 1627, FIN-70211 Kuopio, Finland
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Markku S. Kulomaa
*Department of Biological and Environmental Science, NanoScience Center, P.O. Box 35 (YAB), FIN-40014 University of Jyväskylä, Finland
3To whom correspondence should be addressed (email [email protected]).
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Publisher: Portland Press Ltd
Received:
June 29 2005
Revision Received:
August 04 2005
Accepted:
August 10 2005
Accepted Manuscript online:
August 10 2005
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London
2005
Biochem J (2005) 392 (3): 485–491.
Article history
Received:
June 29 2005
Revision Received:
August 04 2005
Accepted:
August 10 2005
Accepted Manuscript online:
August 10 2005
Citation
Henri R. Nordlund, Vesa P. Hytönen, Jarno Hörhä, Juha A. E. Määttä, Daniel J. White, Katrin Halling, Eevaleena J. Porkka, J. Peter Slotte, Olli H. Laitinen, Markku S. Kulomaa; Tetravalent single-chain avidin: from subunits to protein domains via circularly permuted avidins. Biochem J 15 December 2005; 392 (3): 485–491. doi: https://doi.org/10.1042/BJ20051038
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