Hoener B A, Sokoloski T D, Mitscher L A
Antimicrob Agents Chemother. 1973 Oct;4(4):455-8. doi: 10.1128/AAC.4.4.455.
Acridine orange decreases the amplitude of the 295-nm circular dichroism (CD) trough of ribosomal ribonucleic acid (rRNA) where the trough has been related to coil character. Since acridine orange is known from earlier work to intercalate between base pairs of nucleic acids, causing an unwinding of the coil, and our studies show a decrease in the 295-nm CD trough, it appears that CD measurements may be used to observe relative unwinding of rRNA. Under similar solution conditions, melting temperatures with acridine orange indicate no significant change in the stabilization of rRNA structure by acridine orange. Hypochromicity studies show no increase in the percent base pairing in rRNA when 0.1 M tris(hydroxymethyl)aminomethane (pH 7.6) with 1.35 M KCl is used. These results indicate that CD changes in the amplitude of the 295-nm trough of rRNA are related to helix winding in rRNA.
吖啶橙可降低核糖体核糖核酸(rRNA)在295纳米处圆二色性(CD)谷值的幅度,该谷值与卷曲特性有关。由于早期研究已知吖啶橙可插入核酸碱基对之间,导致卷曲解旋,而我们的研究显示295纳米处CD谷值降低,因此似乎CD测量可用于观察rRNA的相对解旋情况。在相似的溶液条件下,用吖啶橙测定的解链温度表明,吖啶橙对rRNA结构稳定性无显著影响。减色性研究表明,当使用含1.35 M氯化钾的0.1 M三(羟甲基)氨基甲烷(pH 7.6)时,rRNA中的碱基配对百分比没有增加。这些结果表明,rRNA在295纳米处谷值幅度的CD变化与rRNA中的螺旋缠绕有关。