bioRxiv · 10.1101/2024.09.27.615541
Zebrafish Pol-Theta and Human Pol-Theta, Orthologues with Homologous Function
Abstract
DNA Polymerase Theta (Pol {theta}) 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 {theta} is inherently error-prone. Recently, key loop regions were identified to play an important role in key functions of Pol {theta}. Here we present a comparative structure-function study of the polymerase domain of zebrafish and human Pol {theta}. We show that these two proteins share a large amount of sequence and structural homology. However, we identify differences in the amino acid composition within the key loop areas shown to drive characteristic Pol {theta} functions. Despite these differences zebrafish Pol {theta} still displays characteristics identify in human Pol {theta}, 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 {theta} function on the basis of evolutionarily conserved features.
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Thomas, C., Green, S., Kimball, L., Schmidtke, I., Rothwell, L., Griffin, M., Par, I., Schobel, S., Palacio, Y., Towle-Weicksel, J. B., Weicksel, S.. 2024-09-28. Zebrafish Pol-Theta and Human Pol-Theta, Orthologues with Homologous Function. https://doi.org/10.1101/2024.09.27.615541
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