Small Molecules Co-targeting CKIα and the Transcriptional Kinases CDK7/9 Control AML in Preclinical Models

Waleed Minzel1, Avanthika Venkatachalam1, Avner Fink1

  • 1The Lautenberg Center for Immunology and Cancer Research, Institute of Medical Research Israel-Canada, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

Cell
|August 28, 2018
PubMed

Insights

New inhibitors targeting casein kinase I alpha (CKIα), CDK7, and CDK9 activate p53 and suppress leukemia by targeting super-enhancers. These agents show promise for curing acute myeloid leukemia (AML) while preserving normal blood cell development.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Development

Background:

  • Casein kinase I alpha (CKIα) ablation activates p53, and its degradation is key to lenalidomide's efficacy in pre-leukemia.
  • Acute myeloid leukemia (AML) is driven by oncogenes regulated by super-enhancers (SEs).

Purpose of the Study:

  • To develop novel inhibitors targeting CKIα, CDK7, and CDK9 for enhanced anti-leukemic activity.
  • To investigate the mechanism of action of these inhibitors on SEs and p53 activation in AML.

Main Methods:

  • Development of dual inhibitors targeting CKIα and transcriptional kinases CDK7/9.
  • Analysis of SEs in primary mouse AML cells and patient-derived xenografts.
  • Assessment of p53 stabilization, gene transcription suppression, and apoptosis induction.
  • Evaluation of therapeutic efficacy in AML mouse models and xenografts.

Main Results:

  • The developed inhibitors co-target CKIα, CDK7, and CDK9, augmenting p53 activation.
  • Inhibitors abolish newly gained SEs in AML cells and suppress SE-driven oncogene transcription.
  • Combined inhibition synergistically stabilizes p53, induces apoptosis, and selectively eliminates leukemia progenitors.
  • Therapeutic efficacy demonstrated in multiple AML models, including MLL-AF9 and patient-derived xenografts.

Conclusions:

  • Dual CKIα/CDK7/9 inhibition represents a promising therapeutic strategy for AML.
  • The inhibitors selectively target leukemia cells by disrupting SE-driven oncogene addiction.
  • This approach offers potential for leukemia cure with preserved hematopoiesis.

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