Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge, UK.
Molecular and Cellular Biochemistry Department, Indiana University, Bloomington, 47405, USA.
Nat Commun. 2017 Nov 23;8(1):1718. doi: 10.1038/s41467-017-01707-w.
DNA replication depends on primase, the specialised polymerase responsible for synthesis of the RNA primers that are elongated by the replicative DNA polymerases. In eukaryotic and archaeal replication, primase is a heterodimer of two subunits, PriS and PriL. Recently, a third primase subunit named PriX was identified in the archaeon Sulfolobus solfataricus. PriX is essential for primer synthesis and is structurally related to the Fe-S cluster domain of eukaryotic PriL. Here we show that PriX contains a nucleotide-binding site required for primer synthesis, and demonstrate equivalence of nucleotide-binding residues in PriX with eukaryotic PriL residues that are known to be important for primer synthesis. A primase chimera, where PriX is fused to a truncated version of PriL lacking the Fe-S cluster domain retains wild-type levels of primer synthesis. Our evidence shows that PriX has replaced PriL as the subunit that endows primase with the unique ability to initiate nucleic acid synthesis. Importantly, our findings reveal that the Fe-S cluster is not required for primer synthesis.
DNA 复制依赖于引物酶,这是一种专门的聚合酶,负责合成由复制 DNA 聚合酶延伸的 RNA 引物。在真核生物和古菌的复制中,引物酶是由两个亚基 PriS 和 PriL 组成的异二聚体。最近,在古菌 Sulfolobus solfataricus 中发现了第三种引物酶亚基 PriX。PriX 对于引物合成是必需的,并且在结构上与真核生物 PriL 的 Fe-S 簇结构域相关。在这里,我们表明 PriX 包含一个核苷酸结合位点,该位点对于引物合成是必需的,并证明了 PriX 中的核苷酸结合残基与已知对于引物合成很重要的真核 PriL 残基等效。一种引物酶嵌合体,其中 PriX 融合到缺乏 Fe-S 簇结构域的 PriL 的截断版本,保留了野生型水平的引物合成。我们的证据表明,PriX 已经取代了 PriL,成为赋予引物酶独特的起始核酸合成能力的亚基。重要的是,我们的发现表明 Fe-S 簇对于引物合成不是必需的。