Craig F F, Simmonds A C, Watmore D, McCapra F, White M R
Amersham International plc, Little Chalfont, Bucks, U.K.
Biochem J. 1991 Jun 15;276 ( Pt 3)(Pt 3):637-41. doi: 10.1042/bj2760637.
Five esters of luciferin were synthesized and compared with native luciferin as substrates for firefly luciferase expressed in live intact mammalian cells. The esters themselves were not substrates for purified luciferase, but four were substrates for a purified esterase and all appeared to be hydrolysed to luciferin within mammalian cells. At a substrate concentration of 0.01 mM, the peak luminescence from the cos cells expressing luciferase was up to 6-fold greater with the esters than with unmodified luciferin. At 0.1 mM, the difference between luciferin and the esters was decreased. The kinetics of the luminescent signal with the different luciferin esters varied significantly, indicating possible differences in the rates of uptake, breakdown and enzyme inhibition. The esters did not support luminescence from Escherichia coli cells expressing firefly luciferase, suggesting a lack of appropriate esterase activity in this particular strain. The esters could be useful for the assay of luciferase expression in intact mammalian cells when luciferin levels are limiting, for example in tissues, and in plants. Alternative luciferin derivatives may allow further improvements in sensitivity.
合成了五种荧光素酯,并将其与天然荧光素作为活体完整哺乳动物细胞中表达的萤火虫荧光素酶的底物进行比较。这些酯本身不是纯化荧光素酶的底物,但其中四种是纯化酯酶的底物,并且在哺乳动物细胞内似乎都被水解为荧光素。在底物浓度为0.01 mM时,表达荧光素酶的cos细胞中,酯产生的峰值发光比未修饰的荧光素高6倍。在0.1 mM时,荧光素与酯之间的差异减小。不同荧光素酯的发光信号动力学有显著差异,表明在摄取、分解和酶抑制速率方面可能存在差异。这些酯不支持表达萤火虫荧光素酶的大肠杆菌细胞发光,表明该特定菌株缺乏适当的酯酶活性。当荧光素水平有限时,例如在组织和植物中,这些酯可用于检测完整哺乳动物细胞中荧光素酶的表达。其他荧光素衍生物可能会进一步提高灵敏度。