From the Molecular Biology and.
Structural Biology Programs, Sloan Kettering Institute, New York, New York 10065.
J Biol Chem. 2019 May 10;294(19):7931-7941. doi: 10.1074/jbc.RA119.008049. Epub 2019 Mar 20.
A recently identified and widely prevalent prokaryal gene cluster encodes a suite of enzymes with imputed roles in nucleic acid repair. The enzymes are as follows: MPE, a DNA endonuclease; Lhr-Core, a 3'-5' DNA helicase; LIG, an ATP-dependent DNA ligase; and Exo, a metallo-β-lactamase-family nuclease. Bacterial and archaeal MPE proteins belong to the binuclear metallophosphoesterase superfamily that includes the well-studied DNA repair nucleases Mre11 and SbcD. Here, we report that the MPE protein is a manganese-dependent DNA endonuclease that incises either linear single strands or the single-strand loops of stem-loop DNA structures. MPE has feeble activity on duplex DNA. A crystal structure of MPE at 2.2 Å resolution revealed that the active site includes two octahedrally coordinated manganese ions. Seven signature amino acids of the binuclear metallophosphoesterase superfamily serve as the enzymic metal ligands in MPE: Asp, His, Asp, Asn, His, His, and His A swath of positive surface potential on either side of the active site pocket suggests a binding site for the single-strand DNA substrate. The structure of MPE differs from Mre11 and SbcD in several key respects: (i) MPE is a monomer, whereas Mre11 and SbcD are homodimers; (ii) MPE lacks the capping domain present in Mre11 and SbcD; and (iii) the topology of the β sandwich that comprises the core of the metallophosphoesterase fold differs in MPE Mre11 and SbcD. We surmise that MPE exemplifies a novel clade of DNA endonuclease within the binuclear metallophosphoesterase superfamily.
最近鉴定出一个广泛存在于原核生物中的基因簇,它编码了一系列推测在核酸修复中起作用的酶。这些酶包括:MPE,一种 DNA 内切酶;Lhr-Core,一种 3'-5' DNA 解旋酶;LIG,一种依赖 ATP 的 DNA 连接酶;和 Exo,一种金属β-内酰胺酶家族核酸酶。细菌和古菌 MPE 蛋白属于双核金属磷酸酯酶超家族,其中包括研究较为充分的 DNA 修复核酸酶 Mre11 和 SbcD。在这里,我们报告 MPE 蛋白是一种锰依赖性 DNA 内切酶,可切割线性单链或发夹 DNA 结构的单链环。MPE 对双链 DNA 的活性较弱。MPE 的 2.2 Å 分辨率晶体结构显示,活性位点包含两个八面体配位的锰离子。双核金属磷酸酯酶超家族的 7 个特征氨基酸作为 MPE 的酶金属配体:Asp、His、Asp、Asn、His、His 和 His。活性位点口袋两侧的正表面电势表明存在单链 DNA 底物的结合位点。MPE 的结构在几个关键方面与 Mre11 和 SbcD 不同:(i)MPE 是单体,而 Mre11 和 SbcD 是同源二聚体;(ii)MPE 缺乏 Mre11 和 SbcD 中存在的盖帽结构域;和(iii)构成金属磷酸酯酶折叠核心的β三明治拓扑结构在 MPE、Mre11 和 SbcD 中不同。我们推测 MPE 代表了双核金属磷酸酯酶超家族中 DNA 内切酶的一个新分支。