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October 16, 20250 citationsOpen Access

Balancing Activation and Repression: CoREST-p300 Antagonism Controls Retinoic Acid-Driven Differentiation in AML

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MTMina M. TayariUniversity of MiamiHSHelena G. Dos SantosUniversity of MiamiSDSadat DokaneheifardUniversity of Miami

Key Points

  • Inhibition of LSD1 promotes only partial differentiation, while Corin synergizes with retinoic acid for robust myeloid differentiation.
  • Corin disrupts CoREST-RAR/RXR complexes and enhances H3K4me3 levels when combined with ATRA, facilitating transcriptional activation.
  • The findings reveal a critical regulatory axis between CoREST and p300 that mediates retinoic acid signaling in acute myeloid leukemia.
  • This study suggests that combining Corin and ATRA may help overcome resistance in ATRA-refractory leukemia patients.

Abstract

The histone demethylase KDM1A (LSD1), a component of the CoREST corepressor complex, is highly expressed in hematologic malignancies and regulates hematopoietic differentiation. Despite its essential developmental role, LSD1 inhibition has emerged as a promising strategy to enhance retinoic acid (RA)-responsive gene expression in subsets of acute myeloid leukemia (AML). Here, we show that LSD1 physically interacts with RAR/RXR heterodimers at specific genomic loci, restricting chromatin accessibility and transcriptional activation of differentiation programs. Single-agent inhibition of LSD1 or HDACs promotes only partial differentiation. In contrast, Corin, a dual LSD1/CoREST inhibitor, synergizes with all-trans retinoic acid (ATRA) to induce robust myeloid differentiation and apoptosis. Corin treatment alone does not significantly increase H3K4me3 levels; however, in combination with ATRA, it disrupts CoREST-RAR/RXR complexes and facilitates the recruitment of the coactivator p300. Together, they shift chromatin to an active state, enhancing H3K4me3 via increased transcriptional engagement and coactivator recruitment. Our findings identify the functional antagonism between CoREST and p300 as a regulatory axis of RA signaling in AML. Targeting this mechanism with Corin and ATRA re-sensitizes non-APL AML cells to RA-induced differentiation, suggesting a broader therapeutic approach for overcoming resistance in ATRA-refractory leukemias.

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Cite This Study

Tayari et al. (2025) studied this question.

synapsesocial.com/papers/68f0ba59c50c73ebef9fa9a6https://doi.org/10.1101/2025.10.13.682235
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