Department of Pharmaceutical Sciences, University of Bologna, via Belmeloro 6, 40126-Bologna, Italy.
Curr Pharm Biotechnol. 2011 Oct;12(10):1508-16. doi: 10.2174/138920111798357276.
Most of the protein therapeutics are now produced by recombinant DNA technology. The advantages of recombinant proteins are related to their higher specificity and to their safety as exposure to animal or human diseases. However, several problems are still present in development of recombinant proteins as therapeutics, such as low bioavailability, short serum half-life, and immune response. Their successful application hinges on the protein stereochemical stability, and on the folding and the tendency to aggregate induced by purification steps and storage. All these aspects determine the failure of many potential protein therapies, and limitations in the development of the formulation. The application of multiple analytical techniques is important in order to obtain a detailed product profile and to understand how manufacturing can influence product structure and activity. Surely the protein conformation is a key aspect to be assessed, because a specific conformation is often essential for the biological function of the protein. Thus, there is a growing need to perform structural studies under the conditions in which the proteins operate, and to monitor the structural changes of the protein. Circular dichroism has been increasingly recognised as a valuable and reliable technique to get this information. In particular, examples will be here reported on the use of circular dichroism spectroscopy in the structural characterization of free and formulated recombinant proteins, looking at the prediction of the secondary structure, propensity to conformational changes, stability, and tendency to aggregate.
现在,大多数蛋白质治疗药物都是通过重组 DNA 技术生产的。重组蛋白的优势与其更高的特异性以及其安全性有关,因为它们不会接触到动物或人类疾病。然而,在开发作为治疗药物的重组蛋白时,仍然存在一些问题,例如生物利用度低、血清半衰期短和免疫反应。它们的成功应用取决于蛋白质的立体化学稳定性,以及在纯化步骤和储存过程中引起的折叠和聚集倾向。所有这些方面都决定了许多潜在蛋白质治疗方法的失败,并限制了制剂的开发。应用多种分析技术对于获得详细的产品概况以及了解制造过程如何影响产品结构和活性非常重要。蛋白质构象肯定是一个需要评估的关键方面,因为特定的构象通常是蛋白质生物功能所必需的。因此,人们越来越需要在蛋白质发挥作用的条件下进行结构研究,并监测蛋白质的结构变化。圆二色性已被越来越多地认为是获取此信息的一种有价值且可靠的技术。本文将特别介绍圆二色性光谱在游离和配方重组蛋白结构特征中的应用,探讨二级结构预测、构象变化倾向、稳定性和聚集倾向。