Yeast DNA polymerase η utilizes an induced-fit mechanism of nucleotide incorporation

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Abstract

DNA polymerase η (Polη) is unique among eukaryotic DNA polymerases in its proficient ability to replicate through distorting DNA lesions, and Polη synthesizes DNA with a low fidelity. Here, we use pre-steady-state kinetics to investigate the mechanism of nucleotide incorporation by Polη and show that it utilizes an induced-fit mechanism to selectively incorporate the correct nucleotide. Polη discriminates poorly between the correct and incorrect nucleotide at both the initial nucleotide binding step and at the subsequent induced-fit conformational change step, which precedes the chemical step of phosphodiester bond formation. This property enables Polη to bypass lesions with distorted DNA geometries, and it bestows upon the enzyme a low fidelity.

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Washington, M. T., Prakash, L., & Prakash, S. (2001). Yeast DNA polymerase η utilizes an induced-fit mechanism of nucleotide incorporation. Cell, 107(7), 917–927. https://doi.org/10.1016/S0092-8674(01)00613-4

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