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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The expression and characterization of recombinant cp19k barnacle cement protein from Pollicipes pollicipes
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The expression and characterization of recombinant cp19k barnacle cement protein from Pollicipes pollicipes

机译:来自POLLICIPES POLLICIP的重组CP19K晶粒水泥蛋白的表达与表征

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摘要

Adhesive proteins of barnacle cement have potential as environmentally friendly adhesives owing to their ability to adhere to various substrates in aqueous environments. By understanding the taxonomic breath of barnacles with different lifestyles, we may uncover commonalities in adhesives produced by these specialized organisms. The 19 kDa cement protein (cp19k) of the stalked barnacle Pollicipes pollicipes was expressed in Escherichia coli BL21 to investigate its adhesive properties. Initial expression of hexahistidine-tagged protein (rPpolcp19k-his) yielded low levels of insoluble protein. Co-overproduction of E. coli molecular chaperones GroEL-GroES and trigger factor (TF) increased soluble protein yields, although TF co-purified with the target protein (TF-rPpolcp19k-his). Surface coat analysis revealed high levels of adsorption of the TF-rPpolcp19k-his complex and of purified E. coli TF on both hydrophobic and hydrophilic surfaces, while low levels of adsorption were observed for rPpolcp19k-his. Tag-free rPpolcp19k protein also exhibited low adsorption compared to fibrinogen and Cell-Tak controls on hydrophobic, neutral hydrophilic and charged self-assembled monolayers under surface plasmon resonance assay conditions designed to mimic the barnacle cement gland or seawater. Because rPpolcp19k protein displays low adhesive capability, this protein is suggested to confer the ability to self-assemble into a plaque within the barnacle cement complex.
机译:由于它们在水性环境中粘附到各种基材的能力,晶片水泥的粘合剂蛋白质具有作为环保粘合剂。通过了解不同的生活方式的藤壶的分类呼吸,我们可能发现这些专业生物产生的粘合剂中的共性。在大肠杆菌BL21中表达了19 kDa水泥蛋白(CP19K),在大肠杆菌BL21中表达,以研究其粘合性能。六三氨酸标记蛋白(RPPOLCP19K-HIS)的初始表达产生低水平的不溶性蛋白质。 E. Coli分子伴侣的共同制储和触发因子(TF)增加可溶性蛋白质产量,尽管TF与靶蛋白(TF-RPPOLCP19K-HI)共纯化。表面涂层分析显示TF-RPPOLCP19K-His络合物和纯化的大肠杆菌TF在疏水性和亲水性表面上的高水平吸附,而RPPOLCP19K-HI-HI-HI-HI-HI-HI-HI-HI-HI-HI-HI-HI-His的综合性和纯化的大肠杆菌TF。无标签的RPPOLCP19K蛋白也与纤维蛋白原和细胞-AK对表面等离子体共振测定条件下的纤维蛋白原和CELL-型自组装单层进行纤维蛋白原和细胞-AK控制而表现出低吸附。由于RPPOLCP19K蛋白显示出低粘合剂能力,因此建议该蛋白质赋予晶格水泥复合物内自组装成斑块的能力。

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