Naqvi Tabassum, Singh Rajendra
DiscoveRx Corporation, 42501 Albrae Street, Fremont, CA 94538, USA.
Mol Biosyst. 2007 Jun;3(6):431-8. doi: 10.1039/b705898p. Epub 2007 May 1.
Beta-lactamase is a well established reporter for monitoring cellular events while chemiluminescence is the preferred read-out mode in high throughput screens. Here, we report the first chemiluminescent assay for beta-lactamase using beta-galactosidase based enzyme fragment complementation technology. The enzyme fragment complementation technology employs a large protein fragment called the enzyme acceptor and a small peptidic fragment called an enzyme donor. These fragments are inactive separately but recombine rapidly in solution to yield active beta-galactosidase detected by chemiluminescence or fluorescence. A cyclic enzyme donor comprising a substituted cephalosporin moiety is used as the lactamase substrate. The cyclic substrate does not complement with enzyme acceptor to yield active beta-galactosidase, but upon cleavage with lactamase yields the linear enzyme donor which complements readily with enzyme acceptor. This methodology has been exploited in a simple, sensitive, homogeneous cell based reporter gene assay to monitor G-protein coupled receptor activation in a microtitre plate with a chemiluminescent read out.
β-内酰胺酶是一种用于监测细胞事件的成熟报告基因,而化学发光是高通量筛选中首选的读出模式。在此,我们报告了首个使用基于β-半乳糖苷酶的酶片段互补技术对β-内酰胺酶进行的化学发光检测。酶片段互补技术采用一种称为酶受体的大蛋白质片段和一种称为酶供体的小肽片段。这些片段单独无活性,但在溶液中迅速重组以产生可通过化学发光或荧光检测到的活性β-半乳糖苷酶。一种包含取代头孢菌素部分的环状酶供体用作内酰胺酶底物。环状底物不会与酶受体互补产生活性β-半乳糖苷酶,但在用内酰胺酶切割后会产生线性酶供体,该线性酶供体可轻松与酶受体互补。这种方法已被用于一种简单、灵敏、基于细胞的均相报告基因检测中,以通过化学发光读出在微量滴定板中监测G蛋白偶联受体的激活。