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Two crystal forms of the restriction enzyme MspI–DNA complex show the same novel structure

机译:限制酶MspI–DNA复合物的两种晶体形式显示相同的新结构

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摘要

The crystal structure of the Type IIP restriction endonuclease MspI bound to DNA containing its cognate recognition sequence has been determined in both monoclinic and orthorhombic space groups. Significantly, these two independent crystal forms present an identical structure of a novel monomer–DNA complex, suggesting a functional role for this novel enzyme–DNA complex. In both crystals, MspI interacts with the CCGG DNA recognition sequence as a monomer, using an asymmetric mode of recognition by two different structural motifs in a single polypeptide. In the crystallographic asymmetric unit, the two DNA molecules in the two MspI–DNA complexes appear to stack with each other forming an end-to-end pseudo-continuous 19-mer duplex. They are primarily B-form and no major bends or kinks are observed. For DNA recognition, most of the specific contacts between the enzyme and the DNA are preserved in the orthorhombic structure compared with the monoclinic structure. A cation is observed near the catalytic center in the monoclinic structure at a position homologous to the 74/45 metal site of EcoRV, and the orthorhombic structure also shows signs of this same cation. However, the coordination ligands of the metal are somewhat different from those of the 74/45 metal site of EcoRV. Combined with structural information from other solved structures of Type II restriction enzymes, the possible relationship between the structures of the enzymes and their cleavage behaviors is discussed.
机译:已在单斜和正交空间组中确定了与包含其同源识别序列的DNA结合的IIP型限制性核酸内切酶MspI的晶体结构。重要的是,这两个独立的晶体形式呈现出新型单体-DNA复合物的相同结构,表明该新型酶-DNA复合物的功能性作用。在两个晶体中,MspI均以单个多肽中两个不同结构基序的不对称识别方式与CCGG DNA识别序列作为单体相互作用。在晶体不对称单元中,两个MspI-DNA复合物中的两个DNA分子似乎相互堆叠,形成了一个端对端的伪连续19-mer双链体。它们主要是B型的,没有观察到大的弯曲或扭结。对于DNA识别,与单斜晶结构相比,酶和DNA之间的大多数特定接触都保留在正交结构中。在单斜晶结构的催化中心附近与EcoRV的74/45金属位点同源的位置处观察到阳离子,而正交晶结构也显示出相同阳离子的迹象。但是,金属的配位配体与EcoRV的74/45金属位的配位体有些不同。结合来自其他已解决的II型限制酶结构的结构信息,讨论了酶结构与其裂解行为之间的可能关系。

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