Date published: 2025-9-12

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ELOF1 Activators

ELOF1 encompass a range of molecules that can enhance the protein's role in DNA repair and maintenance of genomic stability. 6-benzylaminopurine, a plant hormone, can support the function of ELOF1 by bolstering DNA repair pathways, particularly those involved in the DNA damage response and lesion bypass, essential for genomic fidelity. Resveratrol, a polyphenol found in grapes, activates ELOF1 by upregulating antioxidative stress responses that can fortify the protein's activity, especially under oxidative stress conditions. Similarly, the plant-derived polyamine spermidine can activate ELOF1 by inducing autophagy, which aids in recycling cellular components and may enhance the turnover and functionality of DNA repair proteins, including ELOF1. Curcumin, a component of turmeric, can activate ELOF1 through modulation of the cellular redox state, contributing to the transcription-coupled DNA damage repair processes in which ELOF1 is engaged.

Epigallocatechin gallate, a catechin in green tea, can activate ELOF1 by impacting cellular pathways that guard against DNA damage, thereby supporting ELOF1's role in DNA damage tolerance. Sulforaphane, a compound in cruciferous vegetables, can activate ELOF1 by upregulating the expression of detoxifying enzymes, which improves cellular defenses and potentially assists ELOF1 in bypassing damage during DNA replication. The flavonoid quercetin can activate ELOF1 by serving as an antioxidant and modulating stress response pathways, aiding ELOF1's involvement in DNA repair. Similarly, genistein can activate ELOF1 by influencing DNA damage response mechanisms, thereby increasing ELOF1's activity against replication stress. Antioxidant compounds such as lycopene, ellagic acid, zeaxanthin, and astaxanthin can also activate ELOF1 by bolstering cellular antioxidant defenses and promoting DNA repair pathways, which may correlate with an increase in ELOF1's functional efficiency during processes of DNA replication and repair. These chemicals collectively support the activation of ELOF1's DNA repair functions by enhancing the protein's ability to manage and respond to DNA damage and stress.

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