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The BCL11A binding site in the HBG1/2 promoter is a cis-regulatory DNA motif (TGACCA) present in the promoters of the human γ-globin genes. BCL11A, a transcriptional repressor, binds this motif in adult erythroid cells to silence γ-globin and thus suppress fetal hemoglobin (HbF) expression. Natural mutations or deletions at this site (e.g., HPFH mutations) disrupt BCL11A binding, leading to increased HbF—a therapeutic goal for sickle cell disease and β-thalassemia. Modern therapeutic strategies employ genome editing (especially CRISPR-Cas9) to selectively disrupt this motif, thereby derepressing HBG1/HBG2 and reactivating fetal hemoglobin, with ongoing research focused on optimizing efficiency and minimizing safety risks[1][2][3][4][5][6][7]. This target is not a protein, enzyme, or receptor, but a critical DNA element serving as a binding site for a transcription factor that is central to gene regulation and therapeutic intervention in hemoglobinopathies.
Gene editing to disrupt the BCL11A binding site, preventing BCL11A-mediated repression and reactivating γ-globin expression, thereby increasing fetal hemoglobin (HbF) levels
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