TY - JOUR
T1 - Designing stable, hierarchical peptide fibers from block co-polypeptide sequences
AU - Van Rijt, Mark M.J.
AU - Ciaffoni, Adriano
AU - Ianiro, Alessandro
AU - Moradi, Mohammad Amin
AU - Boyle, Aimee L.
AU - Kros, Alexander
AU - Friedrich, Heiner
AU - Sommerdijk, Nico A.J.M.
AU - Patterson, Joseph P.
N1 - Publisher Copyright:
© 2019 The Royal Society of Chemistry.
PY - 2019
Y1 - 2019
N2 - Natural materials, such as collagen, can assemble with multiple levels of organization in solution. Achieving a similar degree of control over morphology, stability and hierarchical organization with equilibrium synthetic materials remains elusive. For the assembly of peptidic materials the process is controlled by a complex interplay between hydrophobic interactions, electrostatics and secondary structure formation. Consequently, fine tuning the thermodynamics and kinetics of assembly remains extremely challenging. Here, we synthesized a set of block co polypeptides with varying hydrophobicity and ability to form secondary structure. From this set we select a sequence with balanced interactions that results in the formation of high-aspect ratio thermodynamically favored nanotubes, stable between pH 2 and 12 and up to 80 °C. This stability permits their hierarchical assembly into bundled nanotube fibers by directing the pH and inducing complementary zwitterionic charge behavior. This block co-polypeptide design strategy, using defined sequences, provides a straightforward approach to creating complex hierarchical peptide-based assemblies with tunable interactions.
AB - Natural materials, such as collagen, can assemble with multiple levels of organization in solution. Achieving a similar degree of control over morphology, stability and hierarchical organization with equilibrium synthetic materials remains elusive. For the assembly of peptidic materials the process is controlled by a complex interplay between hydrophobic interactions, electrostatics and secondary structure formation. Consequently, fine tuning the thermodynamics and kinetics of assembly remains extremely challenging. Here, we synthesized a set of block co polypeptides with varying hydrophobicity and ability to form secondary structure. From this set we select a sequence with balanced interactions that results in the formation of high-aspect ratio thermodynamically favored nanotubes, stable between pH 2 and 12 and up to 80 °C. This stability permits their hierarchical assembly into bundled nanotube fibers by directing the pH and inducing complementary zwitterionic charge behavior. This block co-polypeptide design strategy, using defined sequences, provides a straightforward approach to creating complex hierarchical peptide-based assemblies with tunable interactions.
UR - http://www.scopus.com/inward/record.url?scp=85073449222&partnerID=8YFLogxK
U2 - 10.1039/c9sc00800d
DO - 10.1039/c9sc00800d
M3 - Article (Academic Journal)
C2 - 32874486
AN - SCOPUS:85073449222
SN - 2041-6520
VL - 10
SP - 9001
EP - 9008
JO - Chemical Science
JF - Chemical Science
IS - 39
ER -