To achieve self-assembled collagen mimetic fibrils using designed peptides. 2018

Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
SGS, 606 Brandywine Pkwy, West Chester, Pennsylvania 19380, U.S.A.

It has proven challenging to obtain collagen-mimetic fibrils by protein design. We recently reported the self-assembly of a mini-fibril showing a 35 nm, D-period like, axially repeating structure using the designed triple helix Col108. Peptide Col108 was made by bacterial expression using a synthetic gene; its triple helix domain consists of three pseudo-identical units of amino acid sequence arranged in tandem. It was postulated that the 35 nm d-period of Col108 mini-fibrils originates from the periodicity of the Col108 primary structure. A mutual staggering of one sequence unit of the associating Col108 triple helices can maximize the inter-helical interactions and produce the observed 35 nm d-period. Based on this unit-staggered model, a triple helix consisting of only two sequence units is expected to have the potential to form the same d-periodic mini-fibrils. Indeed, when such a peptide, peptide 2U108, was made it was found to self-assemble into mini-fibrils having the same d-period of 35 nm. In contrast, no d-periodic mini-fibrils were observed for peptide 1U108, which does not have long-range repeating sequences in its primary structure. The findings of the periodic mini-fibrils of Col108 and 2U108 suggest a way forward to create collagen-mimetic fibrils for biomedical and industrial applications.

UI MeSH Term Description Entries
D010455 Peptides Members of the class of compounds composed of AMINO ACIDS joined together by peptide bonds between adjacent amino acids into linear, branched or cyclical structures. OLIGOPEPTIDES are composed of approximately 2-12 amino acids. Polypeptides are composed of approximately 13 or more amino acids. PROTEINS are considered to be larger versions of peptides that can form into complex structures such as ENZYMES and RECEPTORS. Peptide,Polypeptide,Polypeptides
D003094 Collagen A polypeptide substance comprising about one third of the total protein in mammalian organisms. It is the main constituent of SKIN; CONNECTIVE TISSUE; and the organic substance of bones (BONE AND BONES) and teeth (TOOTH). Avicon,Avitene,Collagen Felt,Collagen Fleece,Collagenfleece,Collastat,Dermodress,Microfibril Collagen Hemostat,Pangen,Zyderm,alpha-Collagen,Collagen Hemostat, Microfibril,alpha Collagen
D032701 Biomimetics An interdisciplinary field in materials science, ENGINEERING, and BIOLOGY, studying the use of biological principles for synthesis or fabrication of BIOMIMETIC MATERIALS. Mimetics, Biological,Bio-inspired Engineering,Biomimicry Engineering,Biomimicry Science,Bio inspired Engineering,Bio-inspired Engineerings,Biological Mimetic,Biological Mimetics,Biomimetic,Biomimicry Engineerings,Biomimicry Sciences,Engineering, Bio-inspired,Engineering, Biomimicry,Engineerings, Bio-inspired,Engineerings, Biomimicry,Mimetic, Biological,Science, Biomimicry,Sciences, Biomimicry

Related Publications

Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
January 2018, Methods in molecular biology (Clifton, N.J.),
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
June 2008, Proceedings of the National Academy of Sciences of the United States of America,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
August 2015, Biochemistry,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
February 2024, Nature communications,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
January 2021, Bioengineering (Basel, Switzerland),
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
June 2020, ACS applied bio materials,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
February 2024, Nature communications,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
March 2021, Nature materials,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
November 2017, Journal of the American Chemical Society,
Rebecca Strawn, and FangFang Chen, and Parminder Jeet Haven, and Sam Wong, and Anne Park-Arias, and Monique De Leeuw, and Yujia Xu
March 2014, Journal of the American Chemical Society,
Copied contents to your clipboard!