The capture spiral of web from N. clavipes spider consists of a single type of spidroin - the flagelliform silk protein, a natural material representing a combination of strength and high elasticity. Flagelliform spider silk is the most extensible silk fibre produced by orb weaver spiders and the structure of this remarkable material is still largely unknown. In the present study we used a proteomic approach to elucidate the complete sequence and the post-translational modifications of flagelliform silk proteins. The long sequence of flagelliform silk protein presents 45 hydroxylated proline residues, which may contribute to explain the mechanoelastic property of these fibres, since they are located in the GPGGX motif. The 3D-structure of the protein was modelled considering the three domains together, i.e., the N- and C-terminal non-repetitive domains, and the central repetitive domain. In the resulting molecular model there is a predominance of random structures in the solid fibres of the silk protein. The N-terminal domain is composed of three α-helices and the C-terminal domain is composed of one small helical section. Proteomic data reported herein may be relevant for the development of novel approaches for the synthetic or recombinant production of novel silk-based spider polymers.
Spider silk proteome provides insight into the structural characterization of Nephila clavipes flagelliform spidroin.
蜘蛛丝蛋白质组为金蛛鞭状丝蛋白的结构表征提供了见解
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作者:Dos Santos-Pinto José Roberto Aparecido, Arcuri Helen Andrade, Esteves Franciele Grego, Palma Mario Sergio, Lubec Gert
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2018 | 起止号: | 2018 Oct 2; 8(1):14674 |
| doi: | 10.1038/s41598-018-33068-9 | 研究方向: | 免疫/内分泌 |
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