Université Bordeaux 1, CNRS UPR 8641, Centre de Recherche Paul Pascal, 115 Avenue Dr Schweitzer, 33600 Pessac, France.
Langmuir. 2010 Sep 21;26(18):14707-15. doi: 10.1021/la103086b.
This manuscript describes a novel method for the biofunctionalization of glass surfaces with polyhistidine-tagged proteins. The main innovation of this methodology consists of the covalent binding between the nitrilotriacetic acid (NTA) moiety and the proteins, ensuring not only orientation, but also stability of the recombinant proteins on NTA-covered surfaces. In this work, as C-terminal polyhistidine tagged cadherin extracellular fragments have been used, this methodology guarantees the proper orientation of these proteins, by mimicking their insertion into cell plasma membranes. These biofunctionalized surfaces have been characterized by confocal microscopy, X-ray photoelectron spectroscopy, contact angle, and atomic force microscopy, showing a high density of cadherins on the glass surfaces and the stability of the linkage. The prepared materials exhibited a high tendency to promote cell spreading, demonstrating the functionality of the protein and the high utility of these biomaterials to promote cell adhesion events. Interestingly, differences in the cytoskeleton organization have been observed in cells adhering to surfaces with no cadherins or with nonoriented cadherins, in comparison to surfaces functionalized with well-oriented cadherins. This method, which allows the robust immobilization of polyhistidine tagged proteins due to their covalent binding and with a defined orientation, may also find particular usefulness in the making of protein biochips, for analysis of protein-protein interactions, as well as structural and single-molecule studies.
这篇手稿描述了一种将带有组氨酸标签的蛋白质生物功能化到玻璃表面的新方法。该方法的主要创新之处在于将亚氨二乙酸(NTA)部分与蛋白质进行共价结合,不仅确保了重组蛋白在 NTA 覆盖表面上的定向,而且还确保了其稳定性。在这项工作中,由于使用了 C 末端带有组氨酸标签的钙黏蛋白细胞外片段,这种方法通过模拟其插入到细胞质膜中来保证这些蛋白质的正确定向。通过共焦显微镜、X 射线光电子能谱、接触角和原子力显微镜对这些生物功能化表面进行了表征,结果表明玻璃表面上钙黏蛋白的密度很高,并且键合很稳定。所制备的材料表现出促进细胞铺展的高倾向,证明了蛋白质的功能性以及这些生物材料在促进细胞黏附事件中的高实用性。有趣的是,与用定向良好的钙黏蛋白功能化的表面相比,在没有钙黏蛋白或非定向钙黏蛋白的表面上黏附的细胞中观察到细胞骨架组织的差异。由于其共价结合和确定的定向,该方法允许将带有组氨酸标签的蛋白质进行稳健的固定,因此它在蛋白质生物芯片的制造、蛋白质-蛋白质相互作用的分析以及结构和单分子研究中可能具有特殊的用途。