Stokke T, Steen H B
Biochim Biophys Acta. 1986 Oct 16;868(1):17-23. doi: 10.1016/0167-4781(86)90081-3.
Fluorescence spectra of Hoechst 33258 bound to rat thymocytes were measured by flow cytometry. At low dye concentrations (less than or equal to 2 micrograms/ml) the fluorescence maximum was situated at 460 nm irrespective of solvent composition. With higher dye concentrations the fluorescence maximum was shifted upwards, the intensity decreased and the width of the fluorescence peak increased. Linear combinations of a spectrum obtained at a low dye concentration (0.5 microgram/ml, type 1 binding) and one obtained at a high dye concentration (42.4 micrograms/ml, type 2 binding) failed to reproduce spectra measured at intermediate dye concentrations (0.15 M NaCl). Hence, Hoechst 33258 forms at least three different fluorescing complexes with DNA in chromatin. The shift in the fluorescence maximum of the Hoechst 33258/chromatin complex towards higher wavelengths decreased with ionic strength. 25% ethanol in the 0.15 M NaCl staining buffer reduced the wavelength shift at high dye concentrations, indicating that the strength of type 2 binding depends on DNA conformation in addition to ionic strength. The fluorescence spectrum was independent of whether DNA in chromatin was complexed with histones or not. However, histone-depleted thymocytes fluoresced more intensely than cells in which DNA was complexed with histones, the difference being greater at low concentrations of Hoechst 33258. Hence, type 2 binding to DNA in chromatin appears to be less restricted by histones than type 1 binding.
采用流式细胞术测量与大鼠胸腺细胞结合的Hoechst 33258的荧光光谱。在低染料浓度(小于或等于2微克/毫升)下,无论溶剂组成如何,荧光最大值均位于460纳米处。随着染料浓度升高,荧光最大值上移,强度降低,荧光峰宽度增加。低染料浓度(0.5微克/毫升,1型结合)和高染料浓度(42.4微克/毫升,2型结合)下获得的光谱的线性组合无法重现中间染料浓度(0.15M NaCl)下测量的光谱。因此,Hoechst 33258与染色质中的DNA形成至少三种不同的荧光复合物。Hoechst 33258/染色质复合物荧光最大值向更高波长的移动随离子强度降低。0.15M NaCl染色缓冲液中25%的乙醇降低了高染料浓度下的波长移动,表明2型结合的强度除了取决于离子强度外,还取决于DNA构象。荧光光谱与染色质中的DNA是否与组蛋白复合无关。然而,无组蛋白的胸腺细胞比DNA与组蛋白复合的细胞荧光更强,在低浓度的Hoechst 33258下差异更大。因此,染色质中DNA的2型结合似乎比1型结合受组蛋白的限制更少。