Sustained pigmentation causes DNA damage and invokes translesion polymerase Polκ for repair in melanocytes

Author:

Ghazi Madeeha12,Khanna Shivangi12,Subramaniam Yogaspoorthi12,Rengaraju Jeyashri12,Sultan Farina12,Gupta Iti12,Sharma Kanupriya3,Chandna Sudhir3,Gokhale Rajesh S14,Natarajan Vivek T12ORCID

Affiliation:

1. CSIR-Institute of Genomics and Integrative Biology , Mathura Road , New Delhi  110025, India

2. Academy of Scientific and Innovative Research (AcSIR) , Ghaziabad , Uttar Pradesh  201002, India

3. Institute of Nuclear Medicine and Allied Sciences, Defence Research and Development Organization , Delhi  110054, India

4. National Institute of Immunology , Aruna Asaf Ali Marg, New Delhi  110067 , India

Abstract

Abstract Melanin protects skin cells from ultraviolet radiation-induced DNA damage. However, intermediates of eumelanin are highly reactive quinones that are potentially genotoxic. In this study, we systematically investigate the effect of sustained elevation of melanogenesis and map the consequent cellular repair response of melanocytes. Pigmentation increases γH2AX foci, DNA abasic sites, causes replication stress and invokes translesion polymerase Polκ in primary human melanocytes, as well as mouse melanoma cells. Confirming the causal link, CRISPR-based genetic ablation of tyrosinase results in depigmented cells with low Polκ levels. During pigmentation, Polκ activates replication stress response and keeps a check on uncontrolled proliferation of cells harboring melanin-damaged DNA. The mutational landscape observed in human melanoma could in part explain the error-prone bypass of DNA lesions by Polκ, whose absence would lead to genome instability. Thereby, translesion polymerase Polκ is a critical response of pigmenting melanocytes to combat melanin-induced DNA alterations. Our study illuminates the dark side of melanin and identifies (eu)melanogenesis as a key missing link between tanning response and mutagenesis, mediated via the necessary evil translesion polymerase, Polκ.

Funder

Council for Scientific and Industrial Research

Department of Biotechnology

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference48 articles.

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