Spider silk proteome provides insight into the structural characterization of Nephila clavipes flagelliform spidroin
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-018-33068-9.pdf
Reference77 articles.
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2. Lefèvre, T., Boudreault, S., Cloutier, C. & Pézolet, M. Diversity of molecular transformations involved in the formation of spider silks. J. Mol. Biol. 405, 238–253 (2011).
3. Becker, N. et al. Molecular nanosprings in spider capture-silk threads. Nature Materials 2(4), 278–283 (2003).
4. Adrianos, S. L. et al. Nephila clavipes flagelliform silk-like GGX motifs contribute to extensibility and spacer motifs contribute to strength in synthetic spider silk fibers. Biomacromolecules 14(6), 1751–1760 (2013).
5. Craig, C. L. & Riekel, C. Comparative architecture of silks, fibrous proteins and their encoding genes in insects and spiders. Comp. Biochem. Physiol. 133, 493–507 (2002).
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