Hoffmann Celine, Leroy-Dudal Johanne, Patel Salima, Gallet Olivier, Pauthe Emmanuel
Equipe de Recherche sur les Relations Matrice Extracellulaire-Cellules (ERRMECe), University of Cergy-Pontoise, 95302 Pontoise Cedex, France.
Anal Biochem. 2008 Jan 1;372(1):62-71. doi: 10.1016/j.ab.2007.07.027. Epub 2007 Aug 7.
Fluorescein isothiocyanate (FITC) is a well-known probe for labeling biologically relevant proteins. However, the impact of the labeling procedure on protein structure and biological activities remains unclear. In this work, FITC-labeled human plasma fibronectin (Fn) was developed to gain insight into the dynamic relationship between cells and Fn. The similarities and differences concerning the structure and function between Fn-FITC and standard Fn were evaluated using biochemical as well as cellular approaches. By varying the FITC/Fn ratio, we demonstrated that overlabeling (>10 FITC molecules/Fn molecule) induces probe fluorescence quenching, protein aggregation, and cell growth modifications. A correct balance between reliable fluorescence for detection and no significant modifications to structure and biological function compared with standard Fn was obtained with a final ratio of 3 FITC molecules per Fn molecule (Fn-FITC3). Fn-FITC3, similar to standard Fn, is correctly recruited into the cell matrix network. Also, Fn-FITC3 is proposed to be a powerful molecular tool to investigate Fn organization and cellular behavior concomitantly.
异硫氰酸荧光素(FITC)是一种用于标记生物相关蛋白质的知名探针。然而,标记过程对蛋白质结构和生物活性的影响仍不清楚。在这项工作中,开发了FITC标记的人血浆纤连蛋白(Fn),以深入了解细胞与Fn之间的动态关系。使用生化和细胞方法评估了Fn-FITC与标准Fn在结构和功能方面的异同。通过改变FITC/Fn比例,我们证明过度标记(>10个FITC分子/Fn分子)会导致探针荧光猝灭、蛋白质聚集和细胞生长改变。当最终比例为每个Fn分子3个FITC分子(Fn-FITC3)时,在检测的可靠荧光与相比标准Fn对结构和生物学功能无显著修饰之间获得了正确的平衡。Fn-FITC3与标准Fn类似,能正确地募集到细胞基质网络中。此外,Fn-FITC3被认为是一种强大的分子工具,可同时研究Fn的组织和细胞行为。