Langston Lance D, Zhang Dan, Yurieva Olga, Georgescu Roxana E, Finkelstein Jeff, Yao Nina Y, Indiani Chiara, O'Donnell Mike E
The Rockefeller University, Howard Hughes Medical Institute, New York, NY 10065; and.
Manhattan College, Riverdale, NY 10471.
Proc Natl Acad Sci U S A. 2014 Oct 28;111(43):15390-5. doi: 10.1073/pnas.1418334111. Epub 2014 Oct 13.
DNA replication in eukaryotes is asymmetric, with separate DNA polymerases (Pol) dedicated to bulk synthesis of the leading and lagging strands. Pol α/primase initiates primers on both strands that are extended by Pol ε on the leading strand and by Pol δ on the lagging strand. The CMG (Cdc45-MCM-GINS) helicase surrounds the leading strand and is proposed to recruit Pol ε for leading-strand synthesis, but to date a direct interaction between CMG and Pol ε has not been demonstrated. While purifying CMG helicase overexpressed in yeast, we detected a functional complex between CMG and native Pol ε. Using pure CMG and Pol ε, we reconstituted a stable 15-subunit CMG-Pol ε complex and showed that it is a functional polymerase-helicase on a model replication fork in vitro. On its own, the Pol2 catalytic subunit of Pol ε is inefficient in CMG-dependent replication, but addition of the Dpb2 protein subunit of Pol ε, known to bind the Psf1 protein subunit of CMG, allows stable synthesis with CMG. Dpb2 does not affect Pol δ function with CMG, and thus we propose that the connection between Dpb2 and CMG helps to stabilize Pol ε on the leading strand as part of a 15-subunit leading-strand holoenzyme we refer to as CMGE. Direct binding between Pol ε and CMG provides an explanation for specific targeting of Pol ε to the leading strand and provides clear mechanistic evidence for how strand asymmetry is maintained in eukaryotes.
真核生物中的DNA复制是不对称的,有不同的DNA聚合酶(Pol)专门负责前导链和后随链的大量合成。Pol α/引物酶在两条链上起始引物,前导链上由Pol ε延伸,后随链上由Pol δ延伸。CMG(Cdc45-MCM-GINS)解旋酶围绕前导链,并被认为募集Pol ε进行前导链合成,但迄今为止,CMG与Pol ε之间的直接相互作用尚未得到证实。在纯化酵母中过表达的CMG解旋酶时,我们检测到CMG与天然Pol ε之间存在功能复合物。使用纯的CMG和Pol ε,我们重建了一个稳定的15亚基CMG-Pol ε复合物,并表明它在体外模型复制叉上是一种功能性的聚合酶-解旋酶。单独存在时,Pol ε的Pol2催化亚基在依赖CMG的复制中效率低下,但添加已知与CMG的Psf1蛋白亚基结合的Pol ε的Dpb2蛋白亚基后,可与CMG进行稳定合成。Dpb2不影响Pol δ与CMG的功能,因此我们提出Dpb2与CMG之间的连接有助于将Pol ε稳定在前导链上,作为我们称为CMGE的15亚基前导链全酶的一部分。Pol ε与CMG之间的直接结合为将Pol ε特异性靶向到前导链提供了解释,并为真核生物中如何维持链不对称性提供了明确的机制证据。