ALKBH2 Activators belong to a distinctive chemical class that targets the AlkB homolog 2 (ALKBH2) protein, a member of the AlkB family of dioxygenases. These small molecules exert their modulatory effects by specifically interacting with the ALKBH2 enzyme, which plays a pivotal role in the repair of DNA alkylation damage. ALKBH2 is instrumental in the demethylation of alkylated DNA bases, contributing to the preservation of genomic integrity and stability. The activators operate through a mechanism that enhances the catalytic activity of ALKBH2, thereby facilitating its involvement in the reversal of DNA lesions induced by alkylating agents. This targeted activation of ALKBH2 underscores the significance of this chemical class in the cellular response to genotoxic stress, where efficient repair mechanisms are crucial for maintaining the fidelity of the genetic material.
Structurally, ALKBH2 Activators exhibit a unique configuration that allows for selective binding to the ALKBH2 active site, fostering an environment conducive to increased enzymatic activity. The intricate interplay between these activators and the ALKBH2 protein underscores their potential as tools for unraveling the molecular intricacies of DNA repair processes. The exploration of ALKBH2 Activators holds promise not only for advancing our understanding of cellular mechanisms involved in DNA repair but also for unveiling novel strategies to modulate these processes for various applications, with implications for fields ranging from basic biological research to biotechnological developments.
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Mitomycin C | 50-07-7 | sc-3514A sc-3514 sc-3514B | 2 mg 5 mg 10 mg | $65.00 $99.00 $140.00 | 85 | |
An antitumor antibiotic that cross-links DNA, leading to DNA damage. This could indirectly enhance the DNA repair activity of ALKBH2. | ||||||
Pyrimethamine | 58-14-0 | sc-208190 sc-208190A sc-208190B | 1 g 5 g 25 g | $78.00 $233.00 $809.00 | 5 | |
An antifolate that inhibits dihydrofolate reductase. This leads to DNA damage, potentially upregulating the repair function of ALKBH2. |