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A general framework to characterize inhibitors of calmodulin: Use of calmodulin inhibitors to study the interaction between calmodulin and its calmodulin binding domains

机译:表征钙调蛋白抑制剂的一般框架:使用钙调蛋白抑制剂研究钙调蛋白与其钙调蛋白结合域之间的相互作用

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The prominent role of Ca2+ in cell physiology is mediated by a whole set of proteins involved in Ca2+-signal generation, deciphering and arrest. Among these intracellular proteins, calmodulin (CaM) known as a prototypical calcium sensor, serves as a ubiquitous carrier of the intracellular calcium signal in all eukaryotic cell types. CaM is assumed to be involved in many diseases including Parkinson, Alzheimer, and rheumatoid arthritis. Defects in some of many reaction partners of CaM might be responsible for disease symptoms. Several classes of drugs bind to CaM with unwanted side effects rather than specific therapeutic use. Thus, it may be more promising to concentrate at searching for pharmacological interferences with the CaM target proteins, in order to find tools for dissecting and investigating CaM-regulatory and modulatory functions in cells. In the present study, we have established a screening assay based on fluorescence polarization (FP) to identify a diverse set of small molecules that disrupt the regulatory function of CaM. The FP-based CaM assay consists in the competition of two fluorescent probes and a library of chemical compounds for binding to CaM. Screening of about 5300 compounds (Strasbourg Academic Library) by displacement of the probe yielded 39 compounds in a first step, from which 6 were selected. Those 6 compounds were characterized by means of calorimetry studies and by competitive displacement of two fluorescent probes interacting with CaM. Moreover, those small molecules were tested for their capability to displace 8 different CaM binding domains from CaM. Our results show that these CaM/small molecules interactions are not functionally equivalent. The strategy that has been set up for CaM is a general model for the development and validation of other CaM interactors, to decipher their mode of action, or rationally design more specific CaM antagonists. Moreover, this strategy may be used for other protein binding assays intended to screen for molecules with preferred binding activity. This article is part of a Special Issue entitled: 12th European Symposium on Calcium.
机译:Ca2 +在细胞生理中的重要作用是由参与Ca2 +信号生成,解密和停滞的整套蛋白质介导的。在这些细胞内蛋白质中,钙调蛋白(CaM)被称为原型钙传感器,在所有真核细胞类型中均作为细胞内钙信号的普遍载体。 CaM被认为与许多疾病有关,包括帕金森病,阿尔茨海默氏病和类风湿关节炎。 CaM的许多反应伴侣中的某些缺陷可能是造成疾病症状的原因。几类药物与CaM结合会产生不良副作用,而不是特定的治疗用途。因此,集中精力寻找与CaM靶蛋白的药理干扰,以找到用于解剖和研究细胞中CaM调节和调节功能的工具,可能会更有希望。在本研究中,我们已经建立了一种基于荧光偏振(FP)的筛选测定法,以鉴定破坏CaM调节功能的各种小分子。基于FP的CaM分析包括两个荧光探针和一个与CaM结合的化合物库的竞争。通过置换探针筛选约5300种化合物(斯特拉斯堡学术图书馆),第一步得到39种化合物,从中选择了6种。通过量热法研究和通过竞争性置换与CaM相互作用的两种荧光探针来表征这6种化合物。此外,测试了那些小分子从CaM置换8个不同CaM结合域的能力。我们的结果表明,这些CaM /小分子的相互作用在功能上并不相同。为CaM建立的策略是开发和验证其他CaM相互作用因子,破译其作用方式或合理设计更具体的CaM拮抗剂的通用模型。而且,该策略可用于旨在筛选具有优选结合活性的分子的其他蛋白质结合测定。本文是名为“第十二届欧洲钙研讨会”的特刊的一部分。

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