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Challenges in the Development of Functional Assays of Membrane Proteins

机译:膜蛋白功能测定发展中的挑战

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摘要

Lipid bilayers are natural barriers of biological cells and cellular compartments. Membrane proteins integrated in biological membranes enable vital cell functions such as signal transduction and the transport of ions or small molecules. In order to determine the activity of a protein of interest at defined conditions, the membrane protein has to be integrated into artificial lipid bilayers immobilized on a surface. For the fabrication of such biosensors expertise is required in material science, surface and analytical chemistry, molecular biology and biotechnology. Specifically, techniques are needed for structuring surfaces in the micro- and nanometer scale, chemical modification and analysis, lipid bilayer formation, protein expression, purification and solubilization, and most importantly, protein integration into engineered lipid bilayers. Electrochemical and optical methods are suitable to detect membrane activity-related signals. The importance of structural knowledge to understand membrane protein function is obvious. Presently only a few structures of membrane proteins are solved at atomic resolution. Functional assays together with known structures of individual membrane proteins will contribute to a better understanding of vital biological processes occurring at biological membranes. Such assays will be utilized in the discovery of drugs, since membrane proteins are major drug targets.
机译:脂质双层是生物细胞和细胞区室的天然屏障。整合在生物膜中的膜蛋白可实现重要的细胞功能,例如信号转导和离子或小分子的运输。为了确定目标蛋白在确定条件下的活性,必须将膜蛋白整合到固定在表面上的人工脂质双层中。为了制造这样的生物传感器,需要材料科学,表面和分析化学,分子生物学和生物技术方面的专业知识。特别地,需要用于在微米和纳米尺度上构建表面,化学修饰和分析,脂质双层形成,蛋白质表达,纯化和增溶,最重要的是蛋白质整合到工程脂质双层中的技术。电化学和光学方法适用于检测与膜活性相关的信号。结构知识对理解膜蛋白功能的重要性很明显。目前,仅膜蛋白的少数结构以原子分辨率被解析。功能测定以及单个膜蛋白的已知结构将有助于更好地理解生物膜上发生的重要生物学过程。由于膜蛋白是主要的药物靶标,因此这种测定法将用于发现药物。

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