Ceska T A, Sayers J R, Stier G, Suck D
EMBL, Structural Biology Programme, Heidelberg, Germany.
Nature. 1996 Jul 4;382(6586):90-3. doi: 10.1038/382090a0.
THE 5'-exonucleases are enzymes that are essential for DNA replication and repair. As well as their exonucleolytic action, removing nucleotides from the 5'-end of nucleic acid molecules such as Okazaki fragments, many 5'-3'-exonucleases have been shown to possess endonucleolytic activities. T5 5'-3'-exonuclease shares many similarities with the amino terminal of eubacterial DNA polymerases, although, unlike eubacteria, phages such as T5, T4 and T7 express polymerase and 5'-exonuclease proteins from separate genes. Here we report the 2.5-A crystal structure of the phage T5 5'-exonuclease, which reveals a helical arch for binding DNA. We propose a model consistent with a threading mechanism in which single-stranded DNA could slide through the arch, which is formed by two helices, one containing positively charged, and the other hydrophobic, residues. The active site is at the base of the arch, and contains two metal-binding sites.
5’-核酸外切酶是DNA复制和修复所必需的酶。除了具有核酸外切酶活性,能从核酸分子(如冈崎片段)的5’端去除核苷酸外,许多5’-3’-核酸外切酶还被证明具有核酸内切酶活性。T5 5’-3’-核酸外切酶与真细菌DNA聚合酶的氨基末端有许多相似之处,不过,与真细菌不同的是,诸如T5、T4和T7等噬菌体是从不同基因表达聚合酶和5’-核酸外切酶蛋白的。在此我们报道了噬菌体T5 5’-核酸外切酶的2.5埃晶体结构,该结构揭示了一个用于结合DNA的螺旋拱。我们提出了一个与穿线机制相符的模型,即单链DNA可以滑过由两条螺旋形成的拱,其中一条螺旋含有带正电荷的残基,另一条含有疏水残基。活性位点位于拱的底部,包含两个金属结合位点。