Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford OX3 7BN, UK.
Nucleic Acids Res. 2011 May;39(9):3652-66. doi: 10.1093/nar/gkq980. Epub 2011 Jan 17.
Ribonuclease H2 is the major nuclear enzyme degrading cellular RNA/DNA hybrids in eukaryotes and the sole nuclease known to be able to hydrolyze ribonucleotides misincorporated during genomic replication. Mutation in RNASEH2 causes Aicardi-Goutières syndrome, an auto-inflammatory disorder that may arise from nucleic acid byproducts generated during DNA replication. Here, we report the crystal structures of Archaeoglobus fulgidus RNase HII in complex with PCNA, and human PCNA bound to a C-terminal peptide of RNASEH2B. In the archaeal structure, three binding modes are observed as the enzyme rotates about a flexible hinge while anchored to PCNA by its PIP-box motif. PCNA binding promotes RNase HII activity in a hinge-dependent manner. It enhances both cleavage of ribonucleotides misincorporated in DNA duplexes, and the comprehensive hydrolysis of RNA primers formed during Okazaki fragment maturation. In addition, PCNA imposes strand specificity on enzyme function, and by localizing RNase H2 and not RNase H1 to nuclear replication foci in vivo it ensures that RNase H2 is the dominant RNase H activity during nuclear replication. Our findings provide insights into how type 2 RNase H activity is directed during genome replication and repair, and suggest a mechanism by which RNase H2 may suppress generation of immunostimulatory nucleic acids.
核糖核酸酶 H2 是真核生物中主要的核酶,可降解细胞内的 RNA/DNA 杂交体,也是唯一已知能够水解基因组复制过程中错配的核糖核苷酸的核酸酶。RNASEH2 基因突变会导致 Aicardi-Goutières 综合征,这是一种自身炎症性疾病,可能是由 DNA 复制过程中产生的核酸副产物引起的。在这里,我们报告了古菌嗜热脂肪芽孢杆菌核糖核酸酶 HII 与 PCNA 复合物的晶体结构,以及人 PCNA 与 RNASEH2B 的 C 末端肽结合的结构。在古菌结构中,当酶围绕其柔性铰链旋转并通过其 PIP 盒基序锚定在 PCNA 上时,观察到三种结合模式。PCNA 结合以铰链依赖的方式促进核糖核酸酶 HII 的活性。它增强了 DNA 双链中错配核糖核苷酸的切割,以及在冈崎片段成熟过程中形成的 RNA 引物的全面水解。此外,PCNA 对酶功能具有链特异性,并通过将 RNase H2 而不是 RNase H1 定位在体内核复制焦点,确保 RNase H2 是核复制过程中主要的 RNase H 活性。我们的发现提供了关于 2 型核糖核酸酶 H 活性如何在基因组复制和修复过程中被定向的见解,并提出了一种机制,通过该机制,RNase H2 可能抑制免疫刺激性核酸的产生。