Laboratory of Cell Biology, Research Institute for Biosciences, University of Mons, Place du Parc 23, 7000, Mons, Belgium.
Laboratory for Chemistry of Novel Materials, Center for Innovation and Research in Materials and Polymers (CIRMAP), Research Institute for Materials, University of Mons, 7000, Mons, Belgium.
Mar Biotechnol (NY). 2021 Oct;23(5):724-735. doi: 10.1007/s10126-021-10059-y. Epub 2021 Sep 15.
Sea stars can adhere to various underwater substrata using an adhesive secretion of which Sfp1 is a major component. Sfp1 is a multimodular protein composed of four subunits (Sfp1 Alpha, Beta, Delta, and Gamma) displaying different functional domains. We recombinantly produced two fragments of Sfp1 comprising most of its functional domains: the C-terminal part of the Beta subunit (rSfp1 Beta C-term) and the Delta subunit (rSfp1 Delta). Surface plasmon resonance analyses of protein adsorption onto different model surfaces showed that rSfp1 Beta C-term exhibits a significantly higher adsorption than the fibrinogen control on hydrophobic, hydrophilic protein-resistant, and charged self-assembled monolayers, while rSfp1 Delta adsorbed more on negatively charged and on protein-resistant surfaces compared to fibrinogen. Truncated recombinant rSfp1 Beta C-term proteins were produced in order to investigate the role of the different functional domains in the adsorption of this protein. The analysis of their adsorption capacities on glass showed that two mechanisms are involved in rSfp1 Beta C-term adsorption: (1) one mediated by the EGF-like domain and involving Ca and Mg ions, and (2) one mediated by the sequence of Sfp1 Beta with no homology with known functional domain in databases, in the presence of Na, Ca and Mg ions.
海星可以使用一种粘性分泌物附着在各种水下基底上,其中 Sfp1 是主要成分。Sfp1 是一种由四个亚基(Sfp1 Alpha、Beta、Delta 和 Gamma)组成的多模块蛋白,具有不同的功能域。我们重组生产了 Sfp1 的两个片段,这些片段包含了其大部分功能域:Beta 亚基的 C 端部分(rSfp1 Beta C-term)和 Delta 亚基(rSfp1 Delta)。蛋白质在不同模型表面上吸附的表面等离子体共振分析表明,与纤维蛋白原对照相比,rSfp1 Beta C-term 在疏水性、亲水性蛋白质抗性和带电自组装单层上的吸附显著更高,而 rSfp1 Delta 与纤维蛋白原相比,在带负电荷和蛋白质抗性表面上的吸附更多。为了研究不同功能域在该蛋白质吸附中的作用,我们生产了截短的重组 rSfp1 Beta C-term 蛋白。对其在玻璃上的吸附能力进行分析表明,rSfp1 Beta C-term 的吸附涉及两种机制:(1)一种由 EGF 样结构域介导,涉及 Ca 和 Mg 离子;(2)一种由 Sfp1 Beta 序列介导,与数据库中已知功能域无同源性,在 Na、Ca 和 Mg 离子存在下。