Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona, United States of America.
PLoS Biol. 2010 Dec 7;8(12):e1000554. doi: 10.1371/journal.pbio.1000554.
SgrAI is a type IIF restriction endonuclease that cuts an unusually long recognition sequence and exhibits allosteric self-modulation of cleavage activity and sequence specificity. Previous studies have shown that DNA bound dimers of SgrAI oligomerize into an activated form with higher DNA cleavage rates, although previously determined crystal structures of SgrAI bound to DNA show only the DNA bound dimer. A new crystal structure of the type II restriction endonuclease SgrAI bound to DNA and Ca(2+) is now presented, which shows the close association of two DNA bound SgrAI dimers. This tetrameric form is unlike those of the homologous enzymes Cfr10I and NgoMIV and is formed by the swapping of the amino-terminal 24 amino acid residues. Two mutations predicted to destabilize the swapped form of SgrAI, P27W and P27G, have been made and shown to eliminate both the oligomerization of the DNA bound SgrAI dimers as well as the allosteric stimulation of DNA cleavage by SgrAI. A mechanism involving domain swapping is proposed to explain the unusual allosteric properties of SgrAI via association of the domain swapped tetramer of SgrAI bound to DNA into higher order oligomers.
SgrAI 是一种 IIF 型限制内切酶,可切割异常长的识别序列,并表现出变构自我调节切割活性和序列特异性。先前的研究表明,SgrAI 的 DNA 结合二聚体寡聚化为具有更高 DNA 切割速率的激活形式,尽管先前确定的 SgrAI 与 DNA 结合的晶体结构仅显示 DNA 结合二聚体。现在提出了一种新的 II 型限制内切酶 SgrAI 与 DNA 和 Ca(2+)结合的晶体结构,该结构显示了两个 DNA 结合 SgrAI 二聚体的紧密关联。这种四聚体形式不同于同源酶 Cfr10I 和 NgoMIV,是由氨基末端 24 个氨基酸残基的交换形成的。已经进行了两项突变预测,以破坏 SgrAI 的交换形式,P27W 和 P27G,并证明这两种突变消除了 DNA 结合的 SgrAI 二聚体的寡聚化以及 SgrAI 对 DNA 切割的变构刺激。提出了一种涉及结构域交换的机制,通过将结合 DNA 的 SgrAI 结构域交换四聚体与更高阶寡聚体关联,来解释 SgrAI 异常变构特性。