Sha R, Liu F, Millar D P, Seeman N C
Department of Chemistry, New York University, New York, NY 10003, USA.
Chem Biol. 2000 Sep;7(9):743-51. doi: 10.1016/s1074-5521(00)00024-7.
The four arms of the Holliday junction are known to stack in pairs forming two helical domains whose orientations are antiparallel, but twisted positively by about 60 degrees, based on electrophoretic, FRET and AFM measurements. Recent gel retardation studies suggest that a bowtie junction (containing 5',5' and 3',3' linkages in its crossover strands) may adopt a parallel conformation.
An AFM study of two-dimensional arrays produced by parallelograms of bowtie junctions shows that the angle between helical domains is in the range of -68+/-2 degrees. We demonstrate by AFM that the domains are parallel by constructing V-shaped structures whose arms are separated by approximately 68 degrees and approximately 112 degrees.
The arms of the bowtie junction are parallel rather than antiparallel. The parallel or antiparallel nature of the junction apparently is determined by the local structure of the junction, but the sign of the angle appears to be a consequence of interarm electrostatic interactions.
基于电泳、荧光共振能量转移(FRET)和原子力显微镜(AFM)测量,已知霍利迪连接体的四条臂成对堆积形成两个螺旋结构域,其取向是反平行的,但正向扭曲约60度。最近的凝胶阻滞研究表明,领结型连接体(在其交叉链中含有5',5'和3',3'连接)可能采用平行构象。
对由领结型连接体平行四边形产生的二维阵列进行的原子力显微镜研究表明,螺旋结构域之间的角度在-68±2度范围内。我们通过原子力显微镜证明,通过构建臂间夹角约为68度和约112度的V形结构,这些结构域是平行的。
领结型连接体的臂是平行的而非反平行的。连接体的平行或反平行性质显然由连接体的局部结构决定,但角度的正负似乎是臂间静电相互作用的结果。