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Published on: May 3, 2018
Identification of novel human Cdt1-binding proteins by a proteomics approach: proteolytic regulation by APC/CCdh1
Nozomi Sugimoto1, Issay Kitabayashi, Satoko Osano
1Virology Division, National Cancer Center Research Institute, 5-1-1 Tsukiji, Chuohku, Tokyo 104-0045, Japan.
Abstract:
In mammalian cells, Cdt1 activity is strictly controlled by multiple independent mechanisms, implying that it is central to the regulation of DNA replication during the cell cycle. In fact, unscheduled Cdt1 hyperfunction results in rereplication and/or chromosomal damage. Thus, it is important to understand its function and regulations precisely. We sought to comprehensively identify human Cdt1-binding proteins by a combination of Cdt1 affinity chromatography and liquid chromatography and tandem mass spectrometry analysis. Through this approach, we could newly identify 11 proteins, including subunits of anaphase-promoting complex/cyclosome (APC/C), SNF2H and WSTF, topoisomerase I and IIalpha, GRWD1/WDR28, nucleophosmin/nucleoplasmin, and importins. In vivo interactions of Cdt1 with APC/C(Cdh1), SNF2H, topoisomerase I and IIalpha, and GRWD1/WDR28 were confirmed by coimmunoprecipitation assays. A further focus on APC/C(Cdh1) indicated that this ubiquitin ligase controls the levels of Cdt1 during the cell cycle via three destruction boxes in the Cdt1 N-terminus. Notably, elimination of these destruction boxes resulted in induction of strong rereplication and chromosomal damage. Thus, in addition to SCF(Skp2) and cullin4-based ubiquitin ligases, APC/C(Cdh1) is a third ubiquitin ligase that plays a crucial role in proteolytic regulation of Cdt1 in mammalian cells.
Insights
The anaphase-promoting complex/cyclosome (APC/C) ubiquitin ligase targets Cdt1 for degradation, preventing DNA replication errors. Disrupting this regulation causes rereplication and chromosomal damage in mammalian cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Cdt1 is crucial for regulating DNA replication in mammalian cells.
- Uncontrolled Cdt1 activity leads to rereplication and chromosomal damage.
- Precise understanding of Cdt1 function and regulation is essential.
Purpose of the Study:
- To comprehensively identify human Cdt1-binding proteins.
- To elucidate the regulatory mechanisms controlling Cdt1 levels during the cell cycle.
Main Methods:
- Cdt1 affinity chromatography coupled with liquid chromatography-tandem mass spectrometry.
- Coimmunoprecipitation assays to confirm in vivo interactions.
- Analysis of Cdt1 destruction boxes and their role in protein degradation.
Main Results:
- Identified 11 novel Cdt1-binding proteins, including APC/C subunits, SNF2H, WSTF, topoisomerases, GRWD1/WDR28, nucleophosmin, and importins.
- Confirmed in vivo interactions of Cdt1 with APC/C(Cdh1), SNF2H, topoisomerase I/IIalpha, and GRWD1/WDR28.
- Demonstrated that APC/C(Cdh1) targets Cdt1 for degradation via three N-terminal destruction boxes, and its elimination induces rereplication and chromosomal damage.
Conclusions:
- APC/C(Cdh1) acts as a third ubiquitin ligase, alongside SCF(Skp2) and cullin4-based ligases, in the proteolytic regulation of Cdt1 in mammalian cells.
- APC/C(Cdh1)-mediated degradation of Cdt1 is critical for preventing DNA rereplication and maintaining genomic stability.
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