Symplectic ID:
322945
Source:
PubMed
This is the preferred source?:
1
Last Synced with Symplectic:
Saturday, 25 July, 2026 - 18:27
DOI:
10.1016/j.cub.2012.02.070
Publication Date:
Tuesday, 24 April, 2012
First Page:
720
Last Page:
726
Keywords:
Adaptor Proteins, Signal Transducing
Amino Acid Sequence
Cell Cycle Proteins
Chromatin
DNA, Fungal
Molecular Sequence Data
Mutation
Proliferating Cell Nuclear Antigen
Ribonucleotide Reductases
Schizosaccharomyces
Schizosaccharomyces pombe Proteins
Editors list has been truncated:
Abstract:
Synthesis of deoxynucleoside triphosphates (dNTPs) is required for both DNA replication and DNA repair and is catalyzed by ribonucleotide reductases (RNR), which convert ribonucleotides to their deoxy forms [1, 2]. Maintaining the correct levels of dNTPs for DNA synthesis is important for minimizing the mutation rate [3-7], and this is achieved by tight regulation of RNR [2, 8, 9]. In fission yeast, RNR is regulated in part by a small protein inhibitor, Spd1, which is degraded in S phase and after DNA damage to allow upregulation of dNTP supply [10-12]. Spd1 degradation is mediated by the activity of the CRL4(Cdt2) ubiquitin ligase complex [5, 13, 14]. This has been reported to be dependent on modulation of Cdt2 levels, which are cell cycle regulated, peaking in S phase, and which also increase after DNA damage in a checkpoint-dependent manner [7, 13]. We show here that Cdt2 level fluctuations are not sufficient to regulate Spd1 proteolysis and that the key step in this event is the interaction of Spd1 with the polymerase processivity factor proliferating cell nuclear antigen (PCNA), complexed onto DNA. This mechanism thus provides a direct link between DNA synthesis and RNR regulation.
Journal Title:
Curr Biol
eISSN:
1879-0445
Volume:
22
Issue:
8
ID at Source:
22464192
Publication Status:
Published
Open access:
Publication Date - Display month part?:
Publication Date - Display day part?:
SSO preference:
kearsey