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A homogeneous cell-based assay to measure nuclear translocation using beta-galactosidase enzyme fragment complementation.

机译:一种基于均质细胞的测定法,使用β-半乳糖苷酶片段互补来测量核转运。

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摘要

Positional complementation describes the use of homogeneous assays using beta- galactosidase (beta gal) enzyme fragment complementation to detect cellular protein translocation. This phenomenon occurs when the protein of interest, recombinantly expressed as a fusion protein with a modified alpha fragment of beta gal, translocates to a cellular compartment expressing an enzyme acceptor fragment of the enzyme. When these fragments interact, high-affinity complementation occurs, and a signal is generated that is then detected upon cell lysis. In the present paper the use of positional complementation is exemplified by measuring nuclear translocation of the glucocorticoid receptor in Chinese hamster ovary-K1 cells. The approach thus provides for homogeneous protocols, in an endpoint microtiter plate assay format, without the use of either imaging or reporter gene techniques. Consequently, these characteristics suggest that the technique is suitable for automated instrumentation protocols used in high throughput screening campaigns designed to identify activators or inhibitors of nuclear translocation.
机译:位置互补描述了使用均相测定的方法,该方法使用β-半乳糖苷酶(βgal)酶片段互补来检测细胞蛋白易位。当重组表达为具有修饰的βgalα片段的融合蛋白的目的蛋白转移到表达该酶的酶受体片段的细胞区室时,就会发生这种现象。当这些片段相互作用时,发生高亲和力互补,并产生信号,然后在细胞裂解时检测到。在本文中,通过测量中国仓鼠卵巢-K1细胞中糖皮质激素受体的核易位来举例说明位置互补的用途。该方法因此以终点微量滴定板测定形式提供了均质的方案,而无需使用成像或报道基因技术。因此,这些特征表明该技术适用于高通量筛选活动中使用的自动化仪器规程,旨在确定核易位的激活剂或抑制剂。

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