Liu-Johnson H N, Gartenberg M R, Crothers D M
Cell. 1986 Dec 26;47(6):995-1005. doi: 10.1016/0092-8674(86)90814-7.
We use a new gel electrophoretic analysis to map the thermodynamically defined DNA binding domain of Escherichia coli CAP protein in the lac promoter. Strong binding interactions span a 28-30 bp duplex DNA region, substantially larger than that found for typical repressors. Sequence changes outside the central 28 bp of the binding site are found to affect the electrophoretically observed extent of bending. We also report a study of the DNA bending induced at a symmetrized CAP binding site, compared with the wild-type site; binding and bending are stronger at the upstream than at the downstream half of the wild-type site. Bends of the estimated 90 degrees - 180 degrees magnitude could play a vital regulatory role by producing tertiary structure in a local DNA domain, and by storing elastic energy for subsequent use in transcription or replication.
我们采用一种新的凝胶电泳分析方法来绘制大肠杆菌CAP蛋白在乳糖启动子中热力学定义的DNA结合结构域图谱。强结合相互作用跨越一个28 - 30 bp的双链DNA区域,比典型阻遏物的结合区域大得多。发现结合位点中央28 bp以外的序列变化会影响电泳观察到的弯曲程度。我们还报告了一项关于对称化CAP结合位点与野生型位点相比诱导的DNA弯曲的研究;在野生型位点的上游,结合和弯曲比下游更强。估计幅度为90度 - 180度的弯曲可能通过在局部DNA结构域中产生三级结构以及储存弹性能量以供后续转录或复制使用而发挥重要的调节作用。