Lee, B. P., Messersmith, P. B., Israelachvili, J. N. & Waite, J. H. Mussel-inspired adhesives and coatings. Annu. Rev. Mater. Res., 41, 99–132 (2011). ArticleCAS Google Scholar
Brubaker, C. E. & Messersmith, P. B. The present and future of biologically inspired adhesive interfaces and materials. Langmuir28, 2200–2205 (2012). ArticleCAS Google Scholar
Stewart, R. J., Ransom, T. C. & Hlady, V. Natural underwater adhesives. J. Polym. Sci. B49, 757–771 (2011). ArticleCAS Google Scholar
Stewart, R. J. Protein-based underwater adhesives and the prospects for their biotechnological production. Appl. Microbiol. Biotechnol.89, 27–33 (2011). ArticleCAS Google Scholar
Yin, M., Yuan, Y., Liu, C. S. & Wang, J. Development of mussel adhesive polypeptide mimics coating for in-situ inducing re-endothelialization of intravascular stent devices. Biomaterials30, 2764–2773 (2009). ArticleCAS Google Scholar
Brubaker, C. E., Kissler, H., Wang, L. J., Kaufman, D. B. & Messersmith, P. B. Biological performance of mussel-inspired adhesive in extrahepatic islet transplantation. Biomaterials31, 420–427 (2010). ArticleCAS Google Scholar
Matos-Perez, C. R., White, J. D. & Wilker, J. J. Polymer composition and substrate influences on the adhesive bonding of a biomimetic, cross-linking polymer. J. Am. Chem. Soc.134, 9498–9505 (2012). ArticleCAS Google Scholar
Hwang, D. S., Yoo, H. J., Jun, J. H., Moon, W. K. & Cha, H. J. Expression of functional recombinant mussel adhesive protein Mgfp-5 in Escherichia coli. Appl. Environ. Microbiol.70, 3352–3359 (2004). ArticleCAS Google Scholar
Kamino, K., Nakano, M. & Kanai, S. Significance of the conformation of building blocks in curing of barnacle underwater adhesive. FEBS J.279, 1750–1760 (2012). ArticleCAS Google Scholar
Kamino, K. Underwater adhesive of marine organisms as the vital link between biological science and material science. Marine Biotechnol.10, 111–121 (2008). ArticleCAS Google Scholar
Anika, S. in The Functional Fold: Amyloid Structures in Nature (ed. Mostaert, S. J. A.) 131–146 (Pan Stanford, 2012). Google Scholar
Barlow, D. E. et al. Characterization of the adhesive plaque of the barnacle Balanus amphitrite: amyloid-like nanofibrils are a major component. Langmuir26, 6549–6556 (2010). ArticleCAS Google Scholar
Wasmer, C. et al. Amyloid fibrils of the HET-s(218–289) prion form a beta solenoid with a triangular hydrophobic core. Science319, 1523–1526 (2008). ArticleCAS Google Scholar
Sawaya, M. R. et al. Atomic structures of amyloid cross-beta spines reveal varied steric zippers. Nature447, 453–457 (2007). ArticleCAS Google Scholar
Knowles, T. P. J. & Buehler, M. J. Nanomechanics of functional and pathological amyloid materials. Nature Nanotech.6, 469–479 (2011). ArticleCAS Google Scholar
Knowles, T. P. et al. Role of intermolecular forces in defining material properties of protein nanofibrils. Science318, 1900–1903 (2007). ArticleCAS Google Scholar
Chapman, M. R. et al. Role of Escherichia coli curli operons in directing amyloid fiber formation. Science295, 851–855 (2002). ArticleCAS Google Scholar
Knowles, T. P. J., Oppenheim, T. W., Buell, A. K., Chirgadze, D. Y. & Welland, M. E. Nanostructured films from hierarchical self-assembly of amyloidogenic proteins. Nature Nanotech.5, 204–207 (2010). ArticleCAS Google Scholar
Li, C. X., Adamcik, J. & Mezzenga, R. Biodegradable nanocomposites of amyloid fibrils and graphene with shape-memory and enzyme-sensing properties. Nature Nanotech.7, 421–427 (2012). ArticleCAS Google Scholar
Waite, J. H. & Benedict, C. V. Assay of dihydroxyphenylalanine (dopa) in invertebrate structural proteins. Methods Enzymol.107, 397–413 (1983). Article Google Scholar
Paz, M., Flückiger, R., Boak, A., Kagan, H. & Gallop, P. M. Specific detection of quinoproteins by redox-cycling staining. J. Biol. Chem.266, 689–692 (1991). CAS Google Scholar
Wang, X., Zhou, Y., Ren, J-J., Hammer, N. D. & Chapman, M. R. Gatekeeper residues in the major curlin subunit modulate bacterial amyloid fiber biogenesis. Proc. Natl Acad. Sci. USA107, 163–168 (2010). ArticleCAS Google Scholar
Sugase, K., Dyson, H. J. & Wright, P. E. Mechanism of coupled folding and binding of an intrinsically disordered protein. Nature447, 1021–1025 (2007). ArticleCAS Google Scholar
Yang, J. et al. Development of aliphatic biodegradable photoluminescent polymers. Proc. Natl Acad. Sci. USA106, 10086–10091 (2009). ArticleCAS Google Scholar
Williams, A. T. R., Winfield, S. A. & Miller, J. N. Relative fluorescence quantum yields using a computer-controlled luminescence spectrometer. Analyst108, 1067–1071 (1983). ArticleCAS Google Scholar
Del Mercato, L. L. et al. Charge transport and intrinsic fluorescence in amyloid-like fibrils. Proc. Natl Acad. Sci. USA104, 18019–18024 (2007). ArticleCAS Google Scholar
Smith, G. J. The fluorescence of dihydroxyphenylalanine: the effects of protonation–deprotonation. Color. Technol.115, 346–349 (1999). ArticleCAS Google Scholar
Chen, R. F. Fluorescence quantum yields of tryptophan and tyrosine. Anal. Lett.1, 35–42 (1967). ArticleCAS Google Scholar
Al-Hilaly, Y. K. et al. A central role for dityrosine crosslinking of amyloid-β in Alzheimer's disease. Acta Neuropathol. Commun.1, 83 (2013). Article Google Scholar
Leite, F. & Herrmann, P. Application of atomic force spectroscopy (AFS) to studies of adhesion phenomena: a review. J. Adhes. Sci. Technol.19, 365–405 (2005). ArticleCAS Google Scholar
Danner, E. W., Kan, Y. J., Hammer, M. U., Israelachvili, J. N. & Waite, J. H. Adhesion of mussel foot protein Mefp-5 to mica: an underwater superglue. Biochemistry51, 6511–6518 (2012). ArticleCAS Google Scholar
Wei, W., Yu, J., Broomell, C., Israelachvili, J. N. & Waite, J. H. Hydrophobic enhancement of dopa-mediated adhesion in a mussel foot protein. J. Am. Chem. Soc.135, 377–383 (2012). Article Google Scholar
Wu, C., Lim, J. Y., Fuller, G. G. & Cegelski, L. Quantitative analysis of amyloid-integrated biofilms formed by uropathogenic Escherichia coli at the air–liquid interface. Biophys. J.103, 464–471 (2012). ArticleCAS Google Scholar
Goulter-Thorsen, R., Taran, E., Gentle, I., Gobius, K. & Dykes, G. CsgA production by Escherichia coli O157: H7 alters attachment to abiotic surfaces in some growth environments. Appl. Environ. Microbiol.77, 7339–7344 (2011). ArticleCAS Google Scholar
Lu, Q. et al. Adhesion of mussel foot proteins to different substrate surfaces. J. R. Soc. Interface10, 20120759 (2013). Article Google Scholar
Yu, J. et al. Adaptive hydrophobic and hydrophilic interactions of mussel foot proteins with organic thin films. Proc. Natl Acad. Sci. USA110, 15680–15685 (2013). ArticleCAS Google Scholar
Li, Y., Qin, M., Li, Y., Cao, Y. & Wang, W. Single molecule evidences for the adaptive binding of DOPA to different wet surfaces. Langmuir30, 4358–4366 (2014). ArticleCAS Google Scholar
Fowler, D. M., Koulov, A. V., Balch, W. E. & Kelly, J. W. Functional amyloid—from bacteria to humans. Trends Biochem. Sci.32, 217–224 (2007). ArticleCAS Google Scholar
Weber, W. & Fussenegger, M. Emerging biomedical applications of synthetic biology. Nature Rev. Genet.13, 21–35 (2012). ArticleCAS Google Scholar
Chen, A. Y. et al. Synthesis and patterning of tunable multiscale materials with engineered cells. Nature Mater.13, 515–523 (2014). ArticleCAS Google Scholar
Sinclair, J. C., Davies, K. M., Venien-Bryan, C. & Noble, M. E. M. Generation of protein lattices by fusing proteins with matching rotational symmetry. Nature Nanotech.6, 558–562 (2011). ArticleCAS Google Scholar
Lv, S. et al. Designed biomaterials to mimic the mechanical properties of muscles. Nature465, 69–73 (2010). ArticleCAS Google Scholar
Qian, L. & Winfree, E. Scaling up digital circuit computation with DNA strand displacement cascades. Science332, 1196–1201 (2011). ArticleCAS Google Scholar
Auslander, S., Auslander, D., Muller, M., Wieland, M. & Fussenegger, M. Programmable single-cell mammalian biocomputers. Nature487, 123–127 (2012). Article Google Scholar
Hong, S. H. et al. Cell-free protein synthesis from a release factor 1 deficient Escherichia coli activates efficient and multiple site-specific non-standard amino acid incorporation. ACS Synth. Biol.3, 398–409 (2014). ArticleCAS Google Scholar
Lajoie, M. J. et al. Genomically recoded organisms expand biological functions. Science342, 357–360 (2013). ArticleCAS Google Scholar
Eswar, N. et al. Comparative protein structure modeling using Modeller. Curr. Protoc. Bioinf. 5.6.1–5.6.30 (2006).
Hwang, D. S. & Waite, J. H. Three intrinsically unstructured mussel adhesive proteins, mfp-1, mfp-2, and mfp-3: analysis by circular dichroism. Protein Sci.21, 1689–1695 (2012). ArticleCAS Google Scholar
Lakowicz, J. R. Principles of Fluorescence Spectroscopy (Springer, 2009). Google Scholar