Stevens Raymond C, Sancho Javier, Martinez Aurora
Methods Mol Biol. 2010;648:313-24. doi: 10.1007/978-1-60761-756-3_22.
Increasing stability of functional proteins by binding small compounds and ions has long been used to extend shelf-life of protein formulations in the pharmacological and biotechnological industry. Likewise, the therapeutic application of small molecules for in vivo recovery and maintenance of structure and function of proteins is steadily increasing. Compounds that can rescue misfolded proteins by stimulating their correct folding and/or the stabilization of native-like conformations in vivo are referred to as pharmacological chaperones. Here we present thermal-shift and isothermal methods for the high-throughput screening of stabilizing pharmacological chaperones for soluble and membrane proteins. The effect of selected hit compounds on the kinetics of protein synthesis is further evaluated by an in vitro transcription-translation rapid translation system. These procedures can be integrated in an interdisciplinary and translational approach for the search of personalized pharmacological chaperones in genetic misfolding diseases.
通过结合小分子化合物和离子来提高功能蛋白的稳定性,长期以来一直被用于延长制药和生物技术行业中蛋白质制剂的保质期。同样,小分子在体内恢复和维持蛋白质结构与功能的治疗应用也在稳步增加。能够通过刺激蛋白质正确折叠和/或在体内稳定类似天然构象来挽救错误折叠蛋白质的化合物被称为药理伴侣。在此,我们介绍用于高通量筛选可溶性和膜蛋白稳定药理伴侣的热迁移和等温方法。通过体外转录-翻译快速翻译系统进一步评估所选命中化合物对蛋白质合成动力学的影响。这些程序可以整合到一种跨学科的转化方法中,用于在遗传性错误折叠疾病中寻找个性化的药理伴侣。