To prevent duplication or loss of genomic regions during DNA replication, it is essential that the entire genome is copied precisely once every S phase. Cells achieve this by mutually exclusive regulation of origin firing and licensing. A crucial protein that is involved in origin licensing is chromatin licensing and DNA replication factor 1 (CDT1) and, therefore, activity of this protein must be strictly controlled. Four recent articles have demonstrated that proliferating cell nuclear antigen (PCNA), an essential sliding clamp used in replication and DNA repair, has a crucial role in this process by mediating the proteasomal degradation of CDT1
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
Cdt1 is a conserved and essential eukaryotic protein that is required for the licensing step of DNA ...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
To prevent duplication or loss of genomic regions during DNA replication, it is essential that the e...
In eukaryotic cells, DNA replication licensing is precisely regulated to ensure that the initiation ...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
During DNA replication or repair, the DNA polymerase cofactor, proliferating cell nuclear antigen (P...
During cell division, genome integrity is maintained by faithful DNA replication during S phase, fol...
During cell division, genome integrity is maintained by faithful DNA replication during S phase, fol...
Timely ubiquitin-mediated protein degradation is fundamental to cell cycle control, but the precise ...
Timely ubiquitin-mediated protein degradation is fundamental to cell cycle control, but the precise ...
Cdt1 is a conserved and essential eukaryotic protein that is required for the licensing step of DNA ...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
Cdt1 is a conserved and essential eukaryotic protein that is required for the licensing step of DNA ...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
To prevent duplication or loss of genomic regions during DNA replication, it is essential that the e...
In eukaryotic cells, DNA replication licensing is precisely regulated to ensure that the initiation ...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
DNA replication and repair are essential cellular processes that ensure genome duplication and safeg...
During DNA replication or repair, the DNA polymerase cofactor, proliferating cell nuclear antigen (P...
During cell division, genome integrity is maintained by faithful DNA replication during S phase, fol...
During cell division, genome integrity is maintained by faithful DNA replication during S phase, fol...
Timely ubiquitin-mediated protein degradation is fundamental to cell cycle control, but the precise ...
Timely ubiquitin-mediated protein degradation is fundamental to cell cycle control, but the precise ...
Cdt1 is a conserved and essential eukaryotic protein that is required for the licensing step of DNA ...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...
Cdt1 is a conserved and essential eukaryotic protein that is required for the licensing step of DNA ...
Replication-coupled destruction of a cohort of cell cycle proteins ensures efficient and precise gen...