| Literature DB >> 30183309 |
Linnea Nilebäck1, Suvi Arola2, Mathias Kvick3, Arja Paananen4, Markus B Linder2, My Hedhammar1.
Abstract
The mechanism of silk assembly, and thus the cues for the extraordinary properties of silk, can be explored by studying the simplest protein parts needed for the formation of silk-like materials. The recombinant spider silk protein 4RepCT, consisting of four repeats of polyalanine and glycine-rich segments (4Rep) and a globular C-terminal domain (CT), has previously been shown to assemble into silk-like fibers at the liquid-air interface. Herein, we study the interfacial behavior of the two parts of 4RepCT, revealing new details on how each protein part is crucial for the silk assembly. Interfacial rheology and quartz crystal microbalance with dissipation show that 4Rep interacts readily at the interfaces. However, organized nanofibrillar structures are formed only when 4Rep is fused to CT. A strong interplay between the parts to direct the assembly is demonstrated. The presence of either a liquid-air or a liquid-solid interface had a surprisingly similar influence on the assembly.Entities:
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Year: 2018 PMID: 30183309 DOI: 10.1021/acs.langmuir.8b02381
Source DB: PubMed Journal: Langmuir ISSN: 0743-7463 Impact factor: 3.882