4.8 Article

Cross-Linked Collagen Triple Helices by Oxime Ligation

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 139, 期 36, 页码 12815-12820

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.7b07498

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资金

  1. Fonds National de la Recherche Luxembourg (FNR)
  2. Swiss National Science Foundation [SNF 200021_159858, 200021_159713]
  3. Swiss National Science Foundation (SNF) [200021_159858, 200021_159713] Funding Source: Swiss National Science Foundation (SNF)

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Covalent cross-links are crucial for the folding and stability of triple-helical collagen, the most abundant protein in nature. Cross-linking is also an attractive strategy for the development of synthetic collagen-based biocompatible materials. Nature uses interchain disulfide bridges to stabilize collagen trimers. However, their implementation into synthetic collagen is difficult and requires the replacement of the canonical amino acids (4R)-hydroxyproline and proline by cysteine or homocysteine, which reduces the preorganization and thereby stability of collagen triple explored alternative covalent cross-links that allow for connecting triple-helical collagen via proline residues. Here, we present collagen model peptides that are cross-linked by oxime bonds between 4-aminooxyproline (Aop) and 4-oxoacetamidoproline placed in coplanar Xaa and Yaa positions of neighboring strands. The covalently connected strands folded into hyperstable collagen triple helices (T-m approximate to 80 degrees C). The design of the cross-links was guided by an analysis of the conformational properties of Aop, studies on the stability and functionalization of Aop-containing collagen triple helices, and molecular dynamics simulations. The studies also show that the aminooxy group exerts a stereoelectronic effect comparable to fluorine and introduce codme ligation as a tool for the functionalization of synthetic collagen.

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