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在用于药物筛选的阵列装置中进行可溶性和膜蛋白的无细胞表达。

Cell-free expression of soluble and membrane proteins in an array device for drug screening.

机构信息

Department of Biomedical Engineering, University of Florida, P.O. Box 116131, Gainesville, Florida 32611, USA.

出版信息

Anal Chem. 2010 Aug 15;82(16):7021-6. doi: 10.1021/ac1015479.

Abstract

Enzymes and membrane protein receptors represent almost three-quarters of all current drug targets. As a result, it would be beneficial to have a platform to produce them in a high-throughput format for drug screening. We have developed a miniaturized fluid array device for cell-free protein synthesis, and the device was exploited to produce both soluble and membrane proteins. Two membrane-associated proteins, bacteriorhodopsin and ApoA lipoprotein, were coexpressed in an expression medium in the presence of lipids. Simultaneous expression of ApoA lipoprotein enhanced the solubility of bacteriorhodopsin and would facilitate functional studies. In addition, the device was employed to produce two enzymes, luciferase and beta-lactamase, both of which were demonstrated to be compatible with enzyme inhibition assays. Beta-lactamase, a drug target associated with antibiotic resistance, was further used to show the capability of the device for drug screening. Beta-lactamase was synthesized in the 96 units of the device and then assayed by a range of concentrations of four mock drug compounds without harvesting and purification. The inhibitory effects of these compounds on beta-lactamase were measured in a parallel format, and the degree in their drug effectiveness agreed well with the data in the literature. This work demonstrated the feasibility of the use of the fluid array device and cell-free protein expression for drug screening, with advantages in less reagent consumption, shorter analysis time, and higher throughput.

摘要

酶和膜蛋白受体几乎占所有当前药物靶点的四分之三。因此,拥有一个能够以高通量格式生产它们的平台,用于药物筛选将是有益的。我们已经开发出一种用于无细胞蛋白质合成的微型化流体阵列设备,并且该设备被用于生产可溶性和膜蛋白。两种膜相关蛋白,菌紫质和载脂蛋白脂蛋白,在存在脂质的情况下在表达培养基中共表达。载脂蛋白脂蛋白的同时表达增强了菌紫质的可溶性,并将有助于功能研究。此外,该设备还用于生产两种酶,荧光素酶和β-内酰胺酶,这两种酶都被证明与酶抑制测定兼容。β-内酰胺酶是一种与抗生素耐药性相关的药物靶点,进一步用于展示该设备进行药物筛选的能力。β-内酰胺酶在设备的 96 个单元中合成,然后通过一系列浓度的四种模拟药物化合物进行测定,而无需收获和纯化。这些化合物对β-内酰胺酶的抑制作用以平行格式进行测量,它们的药物有效性程度与文献中的数据非常吻合。这项工作证明了使用流体阵列设备和无细胞蛋白质表达进行药物筛选的可行性,具有试剂消耗少、分析时间短、高通量等优点。

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