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  4. Design and synthesis of a chimeric TASP molecule as potential inhibitor in cell adhesion processes
 
conference paper

Design and synthesis of a chimeric TASP molecule as potential inhibitor in cell adhesion processes

Tuchscherer, Gabriele  
•
Grell, Daniel
•
Fernandez, Jimenaz
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2000
Peptides for the New Millennium, Proceedings of the American Peptide Symposium, 16th

The construction of protein-like folding motifs as structurally stable scaffolds for the introduction of function represents a major goal in protein design. The use of topol. templates allows the bypass of the well-known folding problem of linear polypeptides and offers a way to mimic native packing topologies by the template directed self-assembly of helical and/or b-sheeted peptide blocks. In conceptually sepg. structure from function, a chimeric 4-helix bundle TASP (Template Assembled Synthetic Protein) derived from the ROP protein and the cell adhesion glycoprotein E-selectin has been designed and synthesized, aimed at inhibiting an early stage in cell adhesion processes, in particular leukocyte adhesion. [on SciFinder (R)]

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Type
conference paper
Author(s)
Tuchscherer, Gabriele  
Grell, Daniel
Fernandez, Jimenaz
Durieux, Patricia
Giraud, Sylvain
Schapira, Marc
Spertini, Olivier
Date Issued

2000

Published in
Peptides for the New Millennium, Proceedings of the American Peptide Symposium, 16th
Start page

519

End page

520

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCBP  
Available on Infoscience
February 9, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/222268
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