Hyperstable, Minimal‐Length, and Blunt‐Ended Collagen Heterotrimers
Abstract
Abstract Most natural collagens are heterotrimers—triple helices formed from three non‐identical peptide strands. The design of synthetic heterotrimeric collagen is challenging since a mixture of three different peptides can form as many as 27 unique triple helices. Here, we present a general method for the assembly of collagen heterotrimers with a wide range of lengths, thermal stabilities, and strand arrangements driven by complementary interstrand salt bridges between (2 S ,4 S )‐4‐aminoproline and aspartate residues. We show how kinetic trapping of undesired trimers can be overcome by adjusting the annealing conditions to obtain the target heterotrimeric helix selectively under thermodynamic control. The design rules and annealing methods allowed the creation of the most stable supramolecular heterotrimer (32 residues, T m = 76 °C) and the shortest stable heterotrimer (17 residues, T m = 19 °C) to date. Furthermore, frame‐shifting enabled, for the first time, the creation of a collagen triple helix with blunt ends.
Article Details
Authors (8)
Tomas Fiala
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Philipp Bittner
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Rahel Heeb
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Valdrin Islami
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Carolina Söll
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Adam Pruška
Laboratory of Organic Chemistry ETH Zürich Vladimir‐Prelog‐Weg 3 Zürich 8093 Switzerland
Renato Zenobi
Department of Chemistry and Applied Biosciences
Helma Wennemers
Laboratorium für Organische Chemie