| Literature DB >> 30679383 |
Yang Gao1, Yanxiang Cui2, Tara Fox3,4, Shiqiang Lin1, Huaibin Wang1, Natalia de Val3,4, Z Hong Zhou2, Wei Yang5.
Abstract
Visualization in atomic detail of the replisome that performs concerted leading- and lagging-DNA strand synthesis at a replication fork has not been reported. Using bacteriophage T7 as a model system, we determined cryo-electron microscopy structures up to 3.2-angstroms resolution of helicase translocating along DNA and of helicase-polymerase-primase complexes engaging in synthesis of both DNA strands. Each domain of the spiral-shaped hexameric helicase translocates sequentially hand-over-hand along a single-stranded DNA coil, akin to the way AAA+ ATPases (adenosine triphosphatases) unfold peptides. Two lagging-strand polymerases are attached to the primase, ready for Okazaki fragment synthesis in tandem. A β hairpin from the leading-strand polymerase separates two parental DNA strands into a T-shaped fork, thus enabling the closely coupled helicase to advance perpendicular to the downstream DNA duplex. These structures reveal the molecular organization and operating principles of a replisome.Entities:
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Year: 2019 PMID: 30679383 PMCID: PMC6681829 DOI: 10.1126/science.aav7003
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728