Zebrafish Polymerase Theta and human Polymerase Theta: Orthologues with homologous function

C Corey Thomas S Sydney Green L Lily Kimball I Isaiah R. Schmidtke L Lauren Rothwell M Makayla Griffin I Ivy Par S Sophia Schobel Y Yayleene Palacio J Jamie B. Towle-Weicksel S Steven E. Weicksel

Abstract

DNA Polymerase Theta (Pol θ) is a conserved an A-family polymerase that plays an essential role in repairing double strand breaks, through micro-homology end joining, and bypassing DNA lesions, through translesion synthesis, to protect genome integrity. Despite its essential role in DNA repair, Pol θ is inherently error-prone. Recently, key loop regions were identified to play an important role in key functions of Pol θ. Here we present a comparative structure-function study of the polymerase domain of zebrafish and human Pol θ. We show that these two proteins share a large amount of sequence and structural homology. Using a classical biochemical approach we observe that zebrafish Pol θ displays behavior characteristic of human Pol θ, including DNA template extension in the presence of different divalent metals, microhomology-mediated end joining, and translesion synthesis. These results will support future studies looking to gain insight into Pol θ function on the basis of evolutionarily conserved features.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 4
Published April 29, 2025
Pages e0321886
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (11)

C

Corey Thomas

S

Sydney Green

L

Lily Kimball

I

Isaiah R. Schmidtke

L

Lauren Rothwell

M

Makayla Griffin

I

Ivy Par

S

Sophia Schobel

Y

Yayleene Palacio

J

Jamie B. Towle-Weicksel

S

Steven E. Weicksel