Bowater R, Aboul-ela F, Lilley D M
Department of Biochemistry, The University, Dundee, U.K.
Biochemistry. 1991 Dec 10;30(49):11495-506. doi: 10.1021/bi00113a003.
We have studied the properties of (A + T)-rich sequences derived from ColE1 that promote cruciform extrusion at low ionic strength in supercoiled plasmids. We compared the chemical reactivity of the sequences in negatively supercoiled DNA (using osmium tetroxide and bromoacetaldehyde) with the results of two-dimensional gel electrophoresis performed under the same conditions. Taken together, the results indicate the occurrence of cooperative helix-coil transitions in the (A + T)-rich DNA at low ionic strength, to form stable, denatured regions. The extent of the open region is a function of temperature and superhelix density, with an additional local destabilization brought about by the presence of cruciform structures. We present a simple statistical mechanical model of the helix-coil transition in the (A + T)-rich DNA, from which we have obtained estimates of the free energy for average base-pair opening of 0.31 kcal mol-1 and that for the formation of a helix-coil junction of 4.9 kcal mol-1, in 45 mM Tris-borate, pH 8.3, 0.5 mM EDTA. The results offer a model for the C-type mechanism of cruciform extrusion. Inverted repeats that are incorporated into the melted region undergo hairpin loop formation below 50 degrees C, and upon closure of the melted region, by reduction of temperature or increased ionic strength, they remain as a fully extruded cruciform structure.
我们研究了源自ColE1的富含(A + T)序列的特性,这些序列在低离子强度下能促进超螺旋质粒中的十字形结构挤出。我们将负超螺旋DNA中这些序列的化学反应性(使用四氧化锇和溴乙醛)与在相同条件下进行的二维凝胶电泳结果进行了比较。综合来看,结果表明在低离子强度下,富含(A + T)的DNA中发生了协同的螺旋-线圈转变,形成了稳定的变性区域。开放区域的范围是温度和超螺旋密度的函数,十字形结构的存在会导致额外的局部不稳定。我们提出了一个富含(A + T)的DNA中螺旋-线圈转变的简单统计力学模型,从中我们得到了在45 mM Tris-硼酸盐,pH 8.3,0.5 mM EDTA条件下,平均碱基对打开的自由能估计值为0.31 kcal mol-1,螺旋-线圈连接形成的自由能估计值为4.9 kcal mol-1。这些结果为十字形结构挤出的C型机制提供了一个模型。掺入熔化区域的反向重复序列在50摄氏度以下会形成发夹环,并且当通过降低温度或增加离子强度使熔化区域关闭时,它们会保留为完全挤出的十字形结构。