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Protein-Binding Assays in Biological Liquids Using Microscale Thermophoresis

机译:使用微尺度热泳的生物液体中的蛋白质结合测定

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摘要

Protein interactions inside the human body are expected to differ from the situation in vitro. This is crucial when investigating protein functions or developing new drugs. In this study, we present a sample-efficient, free-solution method, termed Microscale Thermophoresis (MST), that is capable of analysing interactions of proteins or small molecules in biological liquids such as blood serum or cell lysate. The technique is based on the thermophoresis of molecules, which provides information about molecule size, charge and hydration shell. We validated the method using immunologically relevant systems including human interferon gamma and the interaction of calmodulin with calcium. The affinity of the small-molecule inhibitor quercetin to its kinase PKA was determined in buffer and human serum, revealing a 400-fold reduced affinity in serum. This information about the influence of the biological matrix may allow to make more reliable conclusions on protein functionality, will facilitate more efficient drug development, and may allow for sensitive diagnostics in complex biological samples.
机译:人体内部的蛋白质相互作用有望与体外情况有所不同。这在研究蛋白质功能或开发新药时至关重要。在这项研究中,我们提出了一种样品有效的自由溶液方法,称为微尺度热泳(MST),它能够分析蛋白质或小分子在诸如血清或细胞裂解液等生物液体中的相互作用。该技术基于分子的热泳,可提供有关分子大小,电荷和水合壳的信息。我们使用包括人干扰素γ在内的免疫学相关系统以及钙调蛋白与钙的相互作用验证了该方法。在缓冲液和人血清中测定了小分子抑制剂槲皮素对其激酶PKA的亲和力,揭示了血清中亲和力降低了400倍。有关生物基质影响的信息可能允许对蛋白质功能性做出更可靠的结论,将有助于更有效的药物开发,并且可能允许对复杂的生物样品进行敏感的诊断。

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