Literature DB >> 20583973

Molecular targeting of aberrant transcription factors in leukemia: strategies for RUNX1/ETO.

Christian Wichmann1, Manuel Grez, Jörn Lausen.   

Abstract

Malignant cell transformation is caused by mutations in distinct key regulatory genes involved in cell growth, apoptosis, senescence and differentiation. Particularly in human leukemia, chromosomal translocations involving crucial hematopoietic transcription factors are frequently causally linked to the disease. Transcription factors commonly have a modular structure, comprising distinct domains for DNA- binding, dimerization and protein-protein interaction. Each domain is functionally important and in principle accessible for a molecular-based therapeutic intervention. Uncovering the molecular structure of critical domains will allow the rational development of therapeutic agents that inhibit particular functions of leukemogenic transcription factors. However, so far most approaches are in the experimental stage. Among others, the RUNX1/ETO fusion protein, commonly found within acute myeloid leukemia cells carrying the translocation t(8;21), is currently intensively studied at the functional and structural level as well as in animal models. This combined effort has allowed the development of specific targeting approaches addressing different functional domains of the fusion protein. With a special focus on RUNX1/ETO we will discuss recent strategies to directly interfere with aberrant transcription factors to block their leukemogenic function.

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Year:  2010        PMID: 20583973     DOI: 10.2174/138945010792006744

Source DB:  PubMed          Journal:  Curr Drug Targets        ISSN: 1389-4501            Impact factor:   3.465


  2 in total

1.  Instruction of haematopoietic lineage choices, evolution of transcriptional landscapes and cancer stem cell hierarchies derived from an AML1-ETO mouse model.

Authors:  Nina Cabezas-Wallscheid; Victoria Eichwald; Jos de Graaf; Martin Löwer; Hans-Anton Lehr; Andreas Kreft; Leonid Eshkind; Andreas Hildebrandt; Yasmin Abassi; Rosario Heck; Anna Katharina Dehof; Svetlana Ohngemach; Rolf Sprengel; Simone Wörtge; Steffen Schmitt; Johannes Lotz; Claudius Meyer; Thomas Kindler; Dong-Er Zhang; Bernd Kaina; John C Castle; Andreas Trumpp; Ugur Sahin; Ernesto Bockamp
Journal:  EMBO Mol Med       Date:  2013-10-04       Impact factor: 12.137

2.  MiR144/451 Expression Is Repressed by RUNX1 During Megakaryopoiesis and Disturbed by RUNX1/ETO.

Authors:  Nicole Kohrs; Stephan Kolodziej; Olga N Kuvardina; Julia Herglotz; Jasmin Yillah; Stefanie Herkt; Alexander Piechatzek; Gabriela Salinas Riester; Thomas Lingner; Christian Wichmann; Halvard Bonig; Erhard Seifried; Uwe Platzbecker; Hind Medyouf; Manuel Grez; Jörn Lausen
Journal:  PLoS Genet       Date:  2016-03-18       Impact factor: 5.917

  2 in total

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