Várkonyi Z, Bálint E, Szalay L
Acta Biochim Biophys Acad Sci Hung. 1979;14(4):285-91.
The absorption spectra of fluram, lysozyme, horse-radish peroxidase, and mixtures of lysozyme + fluram and peroxidase + fluram and the fluorescence and fluorescence excitation spectra of the mixtures in 0.05 M phosphate buffer with 1 per cent dioxane are determined. Due to formation of a protein-fluram compound, the absorption spectra of the mixtures are not algebraic sums of the components. From the fluorescence intensities the number of bonding sites is found 6 in both cases. The fluorescence spectrum of the peroxidase-fluram compound has maxima at 305, 350, 400, 450 nm due to peroxidase and at 480 nm originating from fluram. In mixtures of 10(-5) M lysozyme + 10(-4) M fluram, 3/4 of the excitation energy is transferred from lysozyme to fluram within the compound under 280 nm excitation. Under similar conditions 4/5 of the excitation energy is transferred from peroxidase to fluram.
测定了氟乐灵、溶菌酶、辣根过氧化物酶以及溶菌酶 + 氟乐灵和过氧化物酶 + 氟乐灵混合物在含1%二氧六环的0.05 M磷酸盐缓冲液中的吸收光谱,以及这些混合物的荧光光谱和荧光激发光谱。由于形成了蛋白质 - 氟乐灵化合物,混合物的吸收光谱并非各组分的代数和。从荧光强度可知,两种情况下结合位点的数量均为6个。过氧化物酶 - 氟乐灵化合物的荧光光谱在305、350、400、450 nm处有源于过氧化物酶的最大值,在480 nm处有源于氟乐灵的最大值。在10⁻⁵ M溶菌酶 + 10⁻⁴ M氟乐灵的混合物中,在280 nm激发下,化合物内3/4的激发能量从溶菌酶转移至氟乐灵。在类似条件下,4/5的激发能量从过氧化物酶转移至氟乐灵。