Literature DB >> 9202142

A natural motif approach to protein design: a synthetic leucine zipper peptide mimics the biological function of the platelet factor 4 protein.

D J Butcher1, M A Kowalska, S Li, Z Luo, S Shan, Z Lu, S Niewiarowski, Z Huang.   

Abstract

The design of smaller functional mimics of large proteins has long been an important challenge. In this study we use the natural leucine zipper as a structural template to design a 31-residue peptide analog that mimics the function of the larger platelet factor 4 (PF4) protein. The heparin binding activity of PF4 has been introduced into an unrelated leucine zipper sequence only by virtue of incorporating four lysines of PF4. Circular dichroism and binding experiments have shown that the designed leucine zipper peptide adopts a stable helical conformation and shows significant PF4-like heparin binding activity. These results strongly suggest that the lysine residues play an important role in the binding of PF4 to heparin. The de novo generation of the PF4 function in a designed leucine zipper peptide demonstrates that the leucine zipper motif is a useful scaffold for the design of functional peptides and proteins.

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Year:  1997        PMID: 9202142     DOI: 10.1016/s0014-5793(97)00504-8

Source DB:  PubMed          Journal:  FEBS Lett        ISSN: 0014-5793            Impact factor:   4.124


  4 in total

1.  Manipulation of hydrogel assembly and growth factor delivery via the use of peptide-polysaccharide interactions.

Authors:  Le Zhang; Eric M Furst; Kristi L Kiick
Journal:  J Control Release       Date:  2006-06-10       Impact factor: 9.776

Review 2.  Design of growth factor sequestering biomaterials.

Authors:  David G Belair; Ngoc Nhi Le; William L Murphy
Journal:  Chem Commun (Camb)       Date:  2014-09-03       Impact factor: 6.222

3.  Heparin-mimetic sulfated peptides with modulated affinities for heparin-binding peptides and growth factors.

Authors:  Sung Hye Kim; Kristi L Kiick
Journal:  Peptides       Date:  2007-08-19       Impact factor: 3.750

4.  Peptide-functionalized poly(ethylene glycol) star polymers: DNA delivery vehicles with multivalent molecular architecture.

Authors:  Katye M Fichter; Le Zhang; Kristi L Kiick; Theresa M Reineke
Journal:  Bioconjug Chem       Date:  2007-10-04       Impact factor: 4.774

  4 in total

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