Lamos M L, Walker G T, Krugh T R, Turner D H
Biochemistry. 1986 Feb 11;25(3):687-91. doi: 10.1021/bi00351a027.
The equilibrium binding of ethidium to poly(dG-dC) and poly(dG-m5dC) under conditions favoring B and Z forms was investigated with fluorescence-detected circular dichroism (FDCD) and optical titration methods. FDCD spectra indicate a similar geometry for the intercalated ethidium under both B- and Z-form conditions, even at low levels of bound ethidium. The magnitude of the 310-330-nm FDCD band as a function of the bound drug to base pair ratio (r) indicates ethidium binds to poly(dG-dC) in 4.4 M NaCl and to poly(dG-m5dC) in 25 mM MgCl2 by clustering. Under these conditions, circular dichroism spectra indicate the polymer is largely Z form. Thus, it appears ethidium clusters into regions it has induced into a right-handed form. For all conditions studied, the FDCD spectra provided no evidence for a left-handed binding site. Under B-form conditions, binding is random.
在有利于B型和Z型构象的条件下,利用荧光检测圆二色性(FDCD)和光学滴定法研究了溴化乙锭与聚(dG-dC)和聚(dG-m5dC)的平衡结合。FDCD光谱表明,即使在结合的溴化乙锭含量较低时,在B型和Z型条件下,插入的溴化乙锭具有相似的几何结构。310 - 330 nm处FDCD带的强度作为结合药物与碱基对比例(r)的函数表明,在4.4 M NaCl中溴化乙锭通过聚集与聚(dG-dC)结合,在25 mM MgCl2中与聚(dG-m5dC)结合。在这些条件下,圆二色性光谱表明聚合物主要为Z型构象。因此,似乎溴化乙锭聚集到它诱导形成右手螺旋构象的区域。对于所研究的所有条件,FDCD光谱均未提供左手结合位点的证据。在B型条件下,结合是随机的。