4.8 Article

Functional analysis of mutant and wild-type Drosophila origin recognition complex

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.211342798

Keywords

Drosophila ORC; DNA replication; ATPase activity; DNA binding

Funding

  1. NCI NIH HHS [R01 CA030490, R37 CA030490, CA-30490] Funding Source: Medline
  2. NIGMS NIH HHS [R01 GM097052] Funding Source: Medline

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The origin recognition complex (ORC) is the DNA replication initiator protein in eukaryotes. We have reconstituted a functional recombinant Drosophila ORC and compared activities of the wildtype and several mutant ORC variants. Drosophila ORC is an ATPase, and our studies show that the ORC1 subunit is essential for ATP hydrolysis and for ATP-dependent DNA binding. Moreover, DNA binding by ORC reduces its ATP hydrolysis activity. In vitro, ORC binds to chromatin in an ATP-dependent manner, and this process depends on the functional AAA(+) nucleotide-binding domain of ORC1. Mutations in the ATP-binding domain of ORC1 are unable to support cell-free DNA replication. However, mutations in the putative ATP-binding domain of either the ORC4 or ORC5 subunits do not affect either of these functions. We also provide evidence that the Drosophila ORC6 subunit is directly required for all of these activities and that a large pool of ORC6 is present in the cytoplasm, cytologically proximal to the cell membrane. Studies reported here provide the first functional dissection of a metazoan initiator and highlight the basic conserved and divergent features among Drosophila and budding yeast ORC complexes.

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