| Literature DB >> 28754021 |
Elizaveta O Boldinova1, Paulina H Wanrooij2, Evgeniy S Shilkin3, Sjoerd Wanrooij4, Alena V Makarova5.
Abstract
PrimPol is a human deoxyribonucleic acid (DNA) polymerase that also possesses primase activity and is involved in DNA damage tolerance, the prevention of genome instability and mitochondrial DNA maintenance. In this review, we focus on recent advances in biochemical and crystallographic studies of PrimPol, as well as in identification of new protein-protein interaction partners. Furthermore, we discuss the possible functions of PrimPol in both the nucleus and the mitochondria.Entities:
Keywords: DNA damage; PrimPol; mitochondria; replication
Mesh:
Substances:
Year: 2017 PMID: 28754021 PMCID: PMC5536071 DOI: 10.3390/ijms18071584
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
The translesion synthesis (TLS) activity of human PrimPol.
| DNA Damage | PrimPol TLS In Vitro | |
|---|---|---|
| oxidative lesions | 8-oxo-G | - bypasses 8-oxo-G incorporating dATP and dCTP with equal efficiency [ |
| TG (thymidine glycol) | - does not bypass TG [ | |
| photo-products | - bypasses CPD | |
| T–T (6–4) photoproducts | - bypasses T–T (6–4) photoproducts in error-prone manner incorporating dTTP opposite 3′Т and dGTP/dCTP opposite 5′Т [ | |
| abasic sites | - does not bypass lesion [ | |
| deoxyuracil | - bypasses as T and incorporates dATP opposite the lesion [ | |
Figure 1The schematic domain structure of human PrimPol. The N-helix, the Module N (ModN) and Module C (ModC) modules, the C-terminal zinc finger (ZnF) and replication protein A (RPA)-binding domains as well as conservative catalytic residues of I, II and III-motifs and Cys residues coordinating [Zn] are indicated.
Proteins interacting with PrimPol.
| ▪ Protein-Partner | Localization of Protein in DNA Compartment | Effect on PrimPol Activity |
|---|---|---|
| nuclear | inhibits primase and polymerase activities on short DNA templates [ | |
| mitochondrial | inhibits primase and polymerase activities on short DNA templates in vitro [ | |
| mitochondrial and possibly nuclear | stimulates DNA polymerase activity in vitro [ | |
| mitochondrial | stimulates DNA polymerase activity in vitro [ |