Okazaki Tsuneko
Nagoya University.
Proc Jpn Acad Ser B Phys Biol Sci. 2017;93(5):322-338. doi: 10.2183/pjab.93.020.
At DNA replication forks, the overall growth of the antiparallel two daughter DNA chains appears to occur 5'-to-3' direction in the leading-strand and 3'-to-5' direction in the lagging-strand using enzyme system only able to elongate 5'-to-3' direction, and I describe in this review how we have analyzed and proved the lagging strand multistep synthesis reactions, called Discontinuous Replication Mechanism, which involve short RNA primer synthesis, primer-dependent short DNA chains (Okazaki fragments) synthesis, primer removal from the Okazaki fragments and gap filling between Okazaki fragments by RNase H and DNA polymerase I, and long lagging strand formation by joining between Okazaki fragments with DNA ligase.
在DNA复制叉处,两条反向平行的子代DNA链的整体生长似乎是在前导链中按5'至3'方向进行,而在滞后链中按3'至5'方向进行,这是利用仅能沿5'至3'方向延伸的酶系统实现的。在这篇综述中,我将阐述我们是如何分析并证明滞后链的多步合成反应,即所谓的不连续复制机制,该机制涉及短RNA引物的合成、引物依赖性短DNA链(冈崎片段)的合成、从冈崎片段上移除引物以及通过核糖核酸酶H和DNA聚合酶I填补冈崎片段之间的缺口,以及通过DNA连接酶连接冈崎片段形成长的滞后链。