Department of Biochemical and Pharmaceutical Technology, School of Pharmaceutical Sciences, University of São Paulo, Av. Prof. Lineu Prestes, 580-Bloco 16, São Paulo, SP, 05508-900, Brazil.
N Biotechnol. 2011 Jul;28(4):391-5. doi: 10.1016/j.nbt.2011.02.003. Epub 2011 Feb 18.
Methods of stabilization and formulation of proteins are important in both biopharmaceutical and biocatalysis industries. Polymers are often used as modifiers of characteristics of biological macromolecules to improve the biochemical activity and stability of proteins or drug bioavailability. Green fluorescent protein (GFP) shows remarkable structural stability and high fluorescence; its stability can be directly related to its fluorescence output, among other characteristics. GFP is stable under increasing temperatures, and its thermal denaturation is highly reproducible. Relative thermal stability was undertaken by incubation of GFP at varying temperatures and GFP fluorescence was used as a reporter for unfolding. At 80°C, DEAE-dextran did not have any effect on GFP fluorescence, indicating that it does not confer stability.
蛋白质的稳定化和制剂方法在生物制药和生物催化行业都很重要。聚合物通常被用作生物大分子特性的修饰剂,以提高蛋白质或药物的生物利用度的生物化学活性和稳定性。绿色荧光蛋白(GFP)表现出显著的结构稳定性和高荧光;其稳定性可以直接与其荧光输出等特性相关。GFP 在温度升高的情况下稳定,其热变性高度可重复。通过在不同温度下孵育 GFP 来进行相对热稳定性研究,并用 GFP 荧光作为展开的报告。在 80°C 时,DEAE-葡聚糖对 GFP 荧光没有任何影响,表明它没有赋予稳定性。