AML1/ETO induces self-renewal in hematopoietic progenitor cells via the Groucho-related amino-terminal AES protein.

Steffen B, Knop M, Bergholz U, Vakhrusheva O, Rode M, Köhler G, Henrichs MP, Bulk E, Hehn S, Stehling M, Dugas M, Bäumer N, Tschanter P, Brandts C, Koschmieder S, Berdel WE, Serve H, Stocking C, Müller-Tidow C

Forschungsartikel (Zeitschrift) | Peer reviewed

Zusammenfassung

The most frequent translocation t(8;21) in acute myeloid leukemia (AML) generates the chimeric AML1/ETO protein, which blocks differentiation and induces self-renewal in hematopoietic progenitor cells. The underlying mechanisms mediating AML1/ETO-induced self-renewal are largely unknown. Using expression microarray analysis, we identified the Groucho-related amino-terminal enhancer of split (AES) as a consistently up-regulated AML1/ETO target. Elevated levels of AES mRNA and protein were confirmed in AML1/ETO-expressing leukemia cells, as well as in other AML specimens. High expression of AES mRNA or protein was associated with improved survival of AML patients, even in the absence of t(8;21). On a functional level, knockdown of AES by RNAi in AML1/ETO-expressing cell lines inhibited colony formation. Similarly, self-renewal induced by AML1/ETO in primary murine progenitors was inhibited when AES was decreased or absent. High levels of AES expression enhanced formation of immature colonies, serial replating capacity of primary cells, and colony formation in colony-forming unit-spleen assays. These findings establish AES as a novel AML1/ETO-induced target gene that plays an important role in the self-renewal phenotype of t(8;21)-positive AML.

Details zur Publikation

FachzeitschriftBlood (Blood)
Jahrgang / Bandnr. / Volume117
Ausgabe / Heftnr. / Issue16
Seitenbereich4328-4337
StatusVeröffentlicht
Veröffentlichungsjahr2011
Sprache, in der die Publikation verfasst istEnglisch
DOI10.1182/blood-2009-09-242545
StichwörterHematopoietic Stem Cells; Mice Inbred C57BL. Cells Cultured; Humans; Mice; Proto-Oncogene Proteins; Cell Line Tumor; Transcription Factors; Leukemia Myeloid Acute; Animals; Gene Expression Regulation Neoplastic; Repressor Proteins; Mice Inbred BALB C. HeLa Cells; Hematopoietic Stem Cells; Mice Inbred C57BL. Cells Cultured; Humans; Mice; Proto-Oncogene Proteins; Cell Line Tumor; Transcription Factors; Leukemia Myeloid Acute; Animals; Gene Expression Regulation Neoplastic; Repressor Proteins; Mice Inbred BALB C. HeLa Cells

Autor*innen der Universität Münster

Bäumer, Nicole
Medizinische Klinik A (Med A)
Dugas, Martin
Institut für Medizinische Informatik
Köhler, Gabriele
Gerhard-Domagk-Institut für Pathologie