Eichman Brandt F, Ortiz-Lombardía Miguel, Aymamí Joan, Coll Miquel, Ho Pui Shing
Department of Biochemistry and Biophysics, ALS 2011, Oregon State University, Corvallis, OR 97331-7305, USA.
J Mol Biol. 2002 Jul 26;320(5):1037-51. doi: 10.1016/s0022-2836(02)00540-5.
Holliday junctions are four-stranded DNA complexes that are formed during recombination and related DNA repair events. Much work has focused on the overall structure and properties of four-way junctions in solution, but we are just now beginning to understand these complexes at the atomic level. The crystal structures of two all-DNA Holliday junctions have been determined recently from the sequences d(CCGGGACCGG) and d(CCGGTACCGG). A detailed comparison of the two structures helps to distinguish distortions of the DNA conformation that are inherent to the cross-overs of the junctions in this crystal system from those that are consequences of the mismatched dG.dA base-pair in the d(CCGGGACCGG) structure. This analysis shows that the junction itself perturbs the sequence-dependent conformational features of the B-DNA duplexes and the associated patterns of hydration in the major and minor grooves only minimally. This supports the idea that a DNA four-way junction can be assembled at relatively low energetic cost. Both structures show a concerted rotation of the adjacent duplex arms relative to B-DNA, and this is discussed in terms of the conserved interactions between the duplexes at the junctions and further down the helical arms. The interactions distant from the strand cross-overs of the junction appear to be significant in defining its macroscopic properties, including the angle relating the stacked duplexes across the junction.
霍利迪连接体是在重组及相关DNA修复事件中形成的四链DNA复合物。许多研究工作聚焦于溶液中四向连接体的整体结构和性质,但我们直到现在才开始在原子水平上理解这些复合物。最近已从序列d(CCGGGACCGG)和d(CCGGTACCGG)确定了两种全DNA霍利迪连接体的晶体结构。对这两种结构的详细比较有助于区分在该晶体系统中连接体交叉固有的DNA构象扭曲与d(CCGGGACCGG)结构中错配的dG·dA碱基对所导致的构象扭曲。该分析表明,连接体本身对B-DNA双链体的序列依赖性构象特征以及大沟和小沟中相关的水化模式的扰动极小。这支持了DNA四向连接体可以以相对较低的能量成本组装的观点。两种结构均显示相邻双链臂相对于B-DNA的协同旋转,并根据连接体处双链体之间以及沿螺旋臂更远位置的保守相互作用进行了讨论。远离连接体链交叉处的相互作用在定义其宏观性质(包括连接体两侧堆叠双链体之间的角度)方面似乎很重要。