Department of Chemistry and Research Institute for Basic Sciences, Kyung Hee University, Seoul 130-701, Republic of Korea.
Department of Chemistry and Research Institute for Basic Sciences, Kyung Hee University, Seoul 130-701, Republic of Korea.
Anal Biochem. 2014 Feb 1;446:22-4. doi: 10.1016/j.ab.2013.10.013. Epub 2013 Oct 19.
Our objective was to create a novel fluorogenic substrate for efficient in vitro kinetic assays on caspase-3. We designed a TAMRA (5'-tetramethylrhodamine-5(6)-carboxamide)- and Cy5 (cyanine 5)-labeled probe that allowed us to evaluate the caspase-3 activity via the changes in fluorescence intensity and wavelength. The prepared probe was found to be an efficient and selective substrate of caspase-3, with V(max) of 41.4±3.3 nM/min and K(M) of 1.60±0.23 μM. The strategy used in the design of this fluorogenic substrate can be applied in future endeavors to development of substrates for caspase-3 inhibitor screening assays or for real-time detection of apoptosis in living cells.
我们的目标是创建一种新型荧光底物,以高效进行 caspase-3 的体外动力学分析。我们设计了一种 TAMRA(5'-四甲基罗丹明-5(6)-羧酰胺)和 Cy5(菁染料 5)标记的探针,可通过荧光强度和波长的变化来评估 caspase-3 的活性。研究发现,该探针是 caspase-3 的一种高效且选择性的底物,Vmax 为 41.4±3.3 nM/min,Km 为 1.60±0.23 μM。该荧光底物的设计策略可应用于 caspase-3 抑制剂筛选分析或活细胞中细胞凋亡的实时检测的底物开发。