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Genome maintenance functions of a putative Trypanosoma brucei translesion DNA polymerase include telomere association and a role in antigenic variation. | LitMetric

AI Article Synopsis

  • Maintenance of genome integrity is essential for accurate DNA transfer during cell division, with DNA polymerases (Pols) playing key roles in both genome replication and DNA damage repair.* -
  • This study focuses on a specific translesion DNA polymerase, named TbPolIE, in African trypanosomes, revealing that its depletion causes slowed growth, altered DNA structure, and increased sensitivity to DNA damage.* -
  • Additionally, the localization of TbPolIE at the nuclear periphery is linked to chromosome segregation issues and suggests its role in helping the parasite evade host immune responses through changes in surface protein gene regulation.*

Article Abstract

Maintenance of genome integrity is critical to guarantee transfer of an intact genome from parent to offspring during cell division. DNA polymerases (Pols) provide roles in both replication of the genome and the repair of a wide range of lesions. Amongst replicative DNA Pols, translesion DNA Pols play a particular role: replication to bypass DNA damage. All cells express a range of translesion Pols, but little work has examined their function in parasites, including whether the enzymes might contribute to host-parasite interactions. Here, we describe a dual function of one putative translesion Pol in African trypanosomes, which we now name TbPolIE. Previously, we demonstrated that TbPolIE is associated with telomeric sequences and here we show that RNAi-mediated depletion of TbPolIE transcripts results in slowed growth, altered DNA content, changes in cell morphology, and increased sensitivity to DNA damaging agents. We also show that TbPolIE displays pronounced localization at the nuclear periphery, and that its depletion leads to chromosome segregation defects and increased levels of endogenous DNA damage. Finally, we demonstrate that TbPolIE depletion leads to deregulation of telomeric variant surface glycoprotein genes, linking the function of this putative translesion DNA polymerase to host immune evasion by antigenic variation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515707PMC
http://dx.doi.org/10.1093/nar/gkaa686DOI Listing

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