Garel A, Kovacs A M, Champagne M, Daune M
Biochim Biophys Acta. 1975 Jun 2;395(1):16-27. doi: 10.1016/0005-2787(75)90229-4.
The conformation and stability of artificial complexes between chicken erythrocyte DNA and homologous histones FV and F2a2 was studied by circular dichroism (CD) and thermal denaturation followed by both absorbance and CD measurements. The complexes are made after a stepwise potassium fluoride gradient dialysis without urea and studied at low ionic strength (10-minus 3 M). 1) No structural changes of the DNA can be detected up to r equals 0.2 with FV and r equals 0.6 for F2a2. With FV at higher values of r the CD spectrum is altered, indicating the organization of DNA and histones in some kind of aggregate. 2) The conformation of histone molecules inside the complexes is not related to the ionic strength of the medium but to an effective ionic environment close to 0.1 M. This ionic strength would also correspond to the melting temperature of histone-covered DNA. 3) From the analysis of the absorbance melting profile the length of DNA covered with an histone molecule can be estimated. A good agreement is found between the negative charge of this piece of DNA and the net positive charge of the histone. 4) Since the CD transition at 227 nm occurs before the second absorbance transition at 280 nm, the DNA is stabilized no longer by native histone but partially or fully denatured histones. The helical regions of the histone molecule are not involved in the binding process, which appears to be almost purely coulombian and most likely related to some structural fit between the pattern of negative charges in the DNA helix and that of positive charges along the peptide chain.
通过圆二色性(CD)以及随后的吸光度和CD测量的热变性方法,研究了鸡红细胞DNA与同源组蛋白FV和F2a2之间人工复合物的构象和稳定性。这些复合物是在不使用尿素的情况下,通过逐步氟化钾梯度透析制备的,并在低离子强度(10的负3次方M)下进行研究。1)对于FV,在r等于0.2之前未检测到DNA的结构变化;对于F2a2,在r等于0.6之前未检测到。当r值较高时,FV的CD光谱发生改变,表明DNA和组蛋白以某种聚集体形式存在。2)复合物内部组蛋白分子的构象与介质的离子强度无关,而是与接近0.1 M的有效离子环境有关。这个离子强度也对应于组蛋白覆盖的DNA的解链温度。3)通过对吸光度解链曲线的分析,可以估算出被一个组蛋白分子覆盖的DNA长度。发现这段DNA的负电荷与组蛋白的净正电荷之间有很好的一致性。4)由于227 nm处的CD转变发生在280 nm处的第二次吸光度转变之前,DNA不再由天然组蛋白稳定,而是部分或完全由变性组蛋白稳定。组蛋白分子的螺旋区域不参与结合过程,结合过程似乎几乎完全是库仑力作用,很可能与DNA螺旋中的负电荷模式和肽链上的正电荷模式之间的某种结构匹配有关。