Abstract
Solid-state NMR and molecular dynamics (MD) simulations are presented to help elucidate the molecular secondary structure of poly(Gly-Gly-X), which is one of the most common structural repetitive motifs found in orb-weaving dragline spider silk proteins. The combination of NMR and computational experiments provides insight into the molecular secondary structure of poly(Gly-Gly-X) segments and provides further support that these regions are disordered and primarily non- β-sheet. Furthermore, the combination of NMR and MD simulations illustrate the possibility for several secondary structural elements in the poly(Gly-Gly-X) regions of dragline silks, including β-turns, 310-helicies, and coil structures with a negligible population of β-helix observed.
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Gray, G. M., van der Vaart, A., Guo, C., Jones, J., Onofrei, D., Cherry, B. R., … Holland, G. P. (2016). Secondary structure adopted by the Gly-Gly-X repetitive regions of dragline spider silk. International Journal of Molecular Sciences, 17(12). https://doi.org/10.3390/ijms17122023
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