核激素受体的一种改进的高通量蛋白相互作用测定方法。

Michael L Goodson, Behnom Farboud, Martin L Privalsky
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引用次数: 19

摘要

谷胱甘肽s转移酶(GST)“拉下”法已广泛用于测定蛋白质在体外的相互作用。这种方法对于研究核激素受体与各种相互作用伙伴和协调节蛋白的相互作用特别有用。不幸的是,最初的gst -pull - down技术依赖于在单个微管中进行的多个结合、洗涤和洗脱步骤,并且需要反复离心、抽吸和悬浮步骤。这种类型的批处理产生了显著的液体处理瓶颈,限制了可以纳入一个实验的样品点的数量,并且产生固有的比流式方法更低效率的洗涤和洗脱。在这份手稿中,我们描述了这种gst下拉分析的96孔滤板格式的适应。与传统的单管分析相比,多孔滤板的使用可以在更短的时间内使用更少的试剂和更有效的样品处理来分析更多的样品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An improved high throughput protein-protein interaction assay for nuclear hormone receptors.

An improved high throughput protein-protein interaction assay for nuclear hormone receptors.

An improved high throughput protein-protein interaction assay for nuclear hormone receptors.

An improved high throughput protein-protein interaction assay for nuclear hormone receptors.

The Glutathione-S-Transferase (GST) "pulldown" assay has been used extensively to assay protein interactions in vitro. This methodology has been especially useful for investigating the interactions of nuclear hormone receptors with a wide variety of their interacting partners and coregulatory proteins. Unfortunately, the original GST-pulldown technique relies on multiple binding, washing and elution steps performed in individual microfuge tubes, and requires repeated centrifugation, aspiration, and suspension steps. This type of batch processing creates a significant liquid handling bottleneck, limiting the number of sample points that can be incorporated into one experiment and producing inherently less efficient washing and elution than would a flow-through methodology. In this manuscript, we describe the adaptation of this GST-pulldown assay to a 96-well filter plate format. The use of a multi-well filter plate makes it possible to assay more samples in significantly less time using less reagents and more efficient sample processing than does the traditional single tube assay.

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