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Heterogeneous and Cooperative Rupture of Histidine-Ni Metal-Coordination Bonds on Rationally Designed Protein Templates

ACS Biomater Sci Eng. 2024-04; 
Eesha Khare, Constancio Gonzalez Obeso, Zaira Martín-Moldes, Ayesha Talib, David L Kaplan, Niels Holten-Andersen, Kerstin G Blank, Markus J Buehler
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Gene Synthesis … by GenScript (Piscataway, NJ). The genes flanked by NheI and SpeI restriction sites were obtained in a pUC57 vector. Using standard molecular biology protocols, the genes were … Get A Quote

摘要

Metal-coordination bonds, a highly tunable class of dynamic noncovalent interactions, are pivotal to the function of a variety of protein-based natural materials and have emerged as binding motifs to produce strong, tough, and self-healing bioinspired materials. While natural proteins use clusters of metal-coordination bonds, synthetic materials frequently employ individual bonds, resulting in mechanically weak materials. To overcome this current limitation, we rationally designed a series of elastin-like polypeptide templates with the capability of forming an increasing number of intermolecular histidine-Ni metal-coordination bonds. Using single-molecule force spectroscopy and steered molecular dynamics simula... More

关键词

bond rupture, histidine, metal-coordination, molecular dynamics simulations, single-molecule force spectroscopy