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首页> 外文期刊>Protein Science: A Publication of the Protein Society >A universal method for fishing target proteins from mixtures of biomolecules using isothermal titration calorimetry.
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A universal method for fishing target proteins from mixtures of biomolecules using isothermal titration calorimetry.

机译:一种使用等温滴定量热法从生物分子混合物中捕捞目标蛋白的通用方法。

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摘要

The most challenging tasks in biology include the identification of (1) the orphan receptor for a ligand, (2) the ligand for an orphan receptor protein, and (3) the target protein(s) for a given drug or a lead compound that are critical for the pharmacological or side effects. At present, several approaches are available, including cell- or animal-based assays, affinity labeling, solid-phase binding assays, surface plasmon resonance, and nuclear magnetic resonance. Most of these techniques are not easy to apply when the target protein is unknown and the compound is not amenable to labeling, chemical modification, or immobilization. Here we demonstrate a new universal method for fishing orphan target proteins from a complex mixture of biomolecules using isothermal titration calorimetry (ITC) as a tracking tool. We took snake venom, a crude mixture of several hundred proteins/peptides, as a model to demonstrate our proposed ITC method in tracking the isolation and purification of two distinct target proteins, a major component and a minor component. Identities of fished out target proteins were confirmed by amino acid sequencing and inhibition assays. This method has the potential to make a significant advancement in the area of identifying orphan target proteins and inhibitor screening in drug discovery and characterization.
机译:生物学上最具挑战性的任务包括鉴定(1)配体的孤儿受体,(2)孤儿受体蛋白的配体和(3)给定药物或先导化合物的靶蛋白对于药理或副作用至关重要。目前,有几种方法可用,包括基于细胞或动物的测定,亲和标记,固相结合测定,表面等离振子共振和核磁共振。当目标蛋白未知并且该化合物不适合标记,化学修饰或固定化时,这些技术中的大多数都不容易应用。在这里,我们演示了一种新的通用方法,该方法使用等温滴定量热法(ITC)作为跟踪工具,从生物分子的复杂混合物中捕获孤儿目标蛋白。我们以蛇毒(一种数百种蛋白质/肽的粗混合物)作为模型,来证明我们提出的ITC方法跟踪两种不同靶蛋白(主要成分和次要成分)的分离和纯化。通过氨基酸测序和抑制测定法确认了捕获的靶蛋白的身份。这种方法有可能在鉴定孤儿靶蛋白和在药物发现和表征中进行抑制剂筛选方面取得重大进展。

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