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Functional roles and cancer variants of the bifunctional glycosylase NEIL2

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WILEY
DOI: 10.1002/em.22555

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abasic sites; base excision repair; cancer; DNA glycosylase; inflammation; NEIL2; variants

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Over 70,000 DNA lesions occur in the cell every day, and the inability to properly repair them can lead to mutations and destabilize the genome, resulting in carcinogenesis. The base excision repair (BER) pathway plays a critical role in maintaining genomic integrity by repairing small base lesions. NEIL2 is a bifunctional DNA glycosylase in BER that is involved in multiple cellular functions and has been linked to cancer through various variants. This review provides an overview of NEIL2 cellular functions and summarizes current findings on NEIL2 variants and their relationship to cancer.
Over 70,000 DNA lesions occur in the cell every day, and the inability to properly repair them can lead to mutations and destabilize the genome, resulting in carcinogenesis. The base excision repair (BER) pathway is critical for maintaining genomic integrity by repairing small base lesions, abasic sites and single-stranded breaks. Monofunctional and bifunctional glycosylases initiate the first step of BER by recognizing and excising specific base lesions, followed by DNA end processing, gap filling, and finally nick sealing. The Nei-like 2 (NEIL2) enzyme is a critical bifunctional DNA glycosylase in BER that preferentially excises cytosine oxidation products and abasic sites from single-stranded, double-stranded, and bubble-structured DNA. NEIL2 has been implicated to have important roles in several cellular functions, including genome maintenance, participation in active demethylation, and modulation of the immune response. Several germline and somatic variants of NEIL2 with altered expression and enzymatic activity have been reported in the literature linking them to cancers. In this review, we provide an overview of NEIL2 cellular functions and summarize current findings on NEIL2 variants and their relationship to cancer.

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