<i>N</i> <sup>6</sup>-methyladenosine binding induces a metal-centered rearrangement that activates the human RNA demethylase Alkbh5.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34407931.
- Also identified by DOI 10.1126/sciadv.abi8215 and PMC identifier 8373141.
- Licence recorded as CC BY-NC.
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Abstract
Alkbh5 catalyzes demethylation of the <i>N</i> <sup>6</sup>-methyladenosine (m<sup>6</sup>A), an epigenetic mark that controls several physiological processes including carcinogenesis and stem cell differentiation. The activity of Alkbh5 comprises two coupled reactions. The first reaction involves decarboxylation of α-ketoglutarate (αKG) and formation of a Fe<sup>4+</sup>═O species. This oxyferryl intermediate oxidizes the m<sup>6</sup>A to reestablish the canonical base. Despite coupling between the two reactions being required for the correct Alkbh5 functioning, the mechanisms linking dioxygen activation to m<sup>6</sup>A binding are not fully understood. Here, we use solution NMR to investigate the structure and dynamics of apo and holo Alkbh5. We show that binding of m<sup>6</sup>A to Alkbh5 induces a metal-centered rearrangement of αKG that increases the exposed area of the metal, making it available for binding O<sub>2</sub> Our study reveals the molecular mechanisms underlying activation of Alkbh5, therefore opening new perspectives for the design of novel strategies to control gene expression and cancer progression.
Medical subject headings
- AlkB Homolog 5, RNA Demethylase
- Neoplasms