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Structural requirements essential for elastin coacervation: favorable spatial arrangements of valine ridges on the three‐dimensional structure of elastin‐derived polypeptide (VPGVG)n
Authors:Iori Maeda  Yoshiteru Fukumoto  Takeru Nose  Yasuyuki Shimohigashi  Takashi Nezu  Yoshihiro Terada  Hiroaki Kodama  Kozue Kaibara  Kouji Okamoto
Affiliation:1. Department of Bioscience and Bioinformatics, Kyushu Institute of Technology, Iizuka, Fukuoka 820‐8502, Japan;2. Department of Chemistry, Faculty of Sciences, Kyushu University, Fukuoka 812‐8581, Japan;3. Division of Dental Bioengineering, Department of Pathogenesis and Control of Oral Diseases, Iwate Medical University School of Dentistry, Morioka 020‐8505, Japan;4. Department of Fixed Prosthodontics, Faculty of Dental Science, Kyushu University, Fukuoka 812‐8582, Japan;5. Department of Chemistry, Faculty of Science and Engineering, Saga University, Saga 840‐8502, Japan;6. Department of Biological Substances and Life Science, Faculty of Engineering, Kyushu Kyoritsu University, Kitakyushu, Fukuoka 807‐8585, Japan
Abstract:The elastin precursor tropoelastin possesses a number of polymeric peptides with repeating 3–9 mer sequences. One of these is the pentapeptide Val‐Pro‐Gly‐Val‐Gly (VPGVG) present in almost all animal species, and its polymer (VPGVG)n coacervates just as does tropoelastin. In the present study, in order to explore the structural requirements essential for coacervation, (VPGVG)n and its shortened repeat analogs (VPGV)n, (VPG)n, and (PGVG)n were synthesized and their structural properties were investigated. In our turbidity measurements, (VPGVG)n demonstrated complete reversible coacervation in agreement with previous findings. The Gly5‐deleted polymer (VPGV)n also achieved self‐association, though the onset of self‐association occurred at a lower temperature. However, the dissociation of (VPGV)n upon temperature lowering was found to occur in a three‐step process; the Vali4‐Vali+11 structure arising in the VPGV polypeptide appeared to perturb the dissociation. No self‐association was observed for (VPG)n or (PGVG)n repeats. Spectroscopic measurements by CD, FT‐IR, and 1H‐NMR showed that the (VPGV)n and (VPG)n both assumed ordered structures similar to that of (VPGVG)n. These results demonstrated that VPGVG is a structural element essential to achieving the β‐spiral structure required for self‐association followed by coacervation, probably due to the ideal spatial arrangement of the hydrophobic Val residues. Copyright © 2011 European Peptide Society and John Wiley & Sons, Ltd.
Keywords:coacervation  elastin  repeat structure  self‐association  spiral structure
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