Peroxidase-catalysed interfacial adhesion of aquatic caddisworm silk

被引:17
|
作者
Wang, Ching-Shuen [1 ]
Pan, Huaizhong [1 ]
Weerasekare, G. Mahika [1 ]
Stewart, Russell J. [1 ]
机构
[1] Univ Utah, Dept Bioengn, Salt Lake City, UT 84112 USA
关键词
bioadhesive; silk; caddisworms; peroxinectin; dityrosine cross-linking; TRICHOPTERA F-LIMNEPHILIDAE; CROSS-LINKING; SUBSTRATUM ADHESION; CATECHOL OXIDASE; SANDCASTLE WORM; BARNACLE CEMENT; SINGLET OXYGEN; ECHINODERMATA; MECHANISMS; SECRETION;
D O I
10.1098/rsif.2015.0710
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Casemaker caddisfly (Hesperophylax occidentalis) larvae use adhesive silk fibres to construct protective shelters underwater. The silk comprises a distinct peripheral coating on a viscoelastic fibre core. Caddisworm silk peroxinectin (csPxt), a haem-peroxidase, was shown to be glycosylated by lectin affinity chromatography and tandem mass spectrometry. Using high-resolution H2O2 and peroxidase-dependent silver ion reduction and nanoparticle deposition, imaged by electron microscopy, csPxt activity was shown to be localized in the peripheral layer of drawn silk fibres. CsPxt catalyses dityrosine cross-linking within the adhesive peripheral layer post-draw, initiated perhaps by H2O2 generated by a silk gland-specific superoxide dismutase 3 (csSOD3) from environmental reactive oxygen species present in natural water. CsSOD3 was also shown to be a glycoprotein and is likely localized in the peripheral layer. Using a synthetic fluorescent phenolic copolymer and confocal microscopy, it was shown that csPxt catalyses oxidative cross-linking to external polyphenolic compounds capable of diffusive interpenetration into the fuzzy peripheral coating, including humic acid, a natural surface-active polyphenol. The results provide evidence of enzyme-mediated covalent cross-linking of a natural bioadhesive to polyphenol conditioned interfaces as a mechanism of permanent adhesion underwater.
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页数:11
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