نتایج جستجو برای: aml1

تعداد نتایج: 978  

Journal: :The Journal of biological chemistry 2008
Yusuke Satoh Itaru Matsumura Hirokazu Tanaka Sachiko Ezoe Kentaro Fukushima Masahiro Tokunaga Masato Yasumi Hirohiko Shibayama Masao Mizuki Takumi Era Tsukasa Okuda Yuzuru Kanakura

In this study, we analyzed the roles for AML1/RUNX1 in the regulation of the c-mpl promoter. Wild-type AML1 activated the c-mpl promoter through the proximal AML-binding site in luciferase assays using 293T and HeLa cells. In accord with this result, electrophoretic mobility shift assay and chromatin immunoprecipitation assays demonstrated that AML1 bound to this site. Next, we analyzed the fun...

2013
Y Linka S Ginzel M Krüger A Novosel M Gombert E Kremmer J Harbott R Thiele A Borkhardt P Landgraf

The reciprocal translocation t(12;21)(p13;q22), the most common structural genomic alteration in B-cell precursor acute lymphoblastic leukaemia in children, results in a chimeric transcription factor TEL-AML1 (ETV6-RUNX1). We identified directly and indirectly regulated target genes utilizing an inducible TEL-AML1 system derived from the murine pro B-cell line BA/F3 and a monoclonal antibody di...

Journal: :Blood 1996
D H Kim R L Moldwin C Vignon S K Bohlander Y Suto L Giordano R Gupta S Fears G Nucifora J D Rowley

The t(12;21) (p 13; q22) results in the fusion of the TEL gene located on chromosome 12 with the AML1 gene located on the derivative chromosome 21. Because this translocation is difficult to detect using standard cytogenetic techniques, 27 previously karyotyped B-lineage acute lymphoblastic leukemia (ALL) cell lines were evaluated for the presence of the TEL-AML1 fusion using the reverse transc...

Journal: :Blood 2000
C Preudhomme D Warot-Loze C Roumier N Grardel-Duflos R Garand J L Lai N Dastugue E Macintyre C Denis F Bauters J P Kerckaert A Cosson P Fenaux

The AML1 gene, situated in 21q22, is often rearranged in acute leukemias through t(8;21) translocation, t(12;21) translocation, or less often t(3;21) translocation. Recently, point mutations in the Runt domain of the AML1 gene have also been reported in leukemia patients. Observations for mutations of the Runt domain of the AML1 gene in bone marrow cells were made in 300 patients, including 131...

2003
Eun Kyung Cho Soo Mee Bang Jeong Yeal Ahn Seung Min Yoo Pil Whan Park Yieh Hea Seo Dong Bok Shin Jae Hoon Lee

BACKGROUND The t (8;21) (q22;q22), which produces the fusion gene AML1/ETO, is associated with relatively good prognosis and, in particular, with a good response to cytosine arabinoside. Analysis of t (8;21) positive leukemic blasts has shown characteristic morphological and immunological features. We performed this study to investigate the incidence of AML1/ETO rearrangement in adult acute mye...

Journal: :Blood 2006
Virginie Hamelin Claire Letourneux Paul-Henri Romeo Françoise Porteu Murielle Gaudry

The extracellular signal-regulated kinases (ERKs) are required for thrombopoietin (TPO) functions on hematopoietic cells, but the ERKs targets involved remain unknown. Here we show that the regulation of the immediate early gene X-1 (IEX-1), identified as an ERK substrate in response to TPO, was mediated by an ERK-dependent phosphorylation of AML1. The addition of TPO to UT7-Mpl cells and prima...

Journal: :The EMBO journal 2006
Yukiko Aikawa Lan Anh Nguyen Kyoichi Isono Nobuyuki Takakura Yusuke Tagata M Lienhard Schmitz Haruhiko Koseki Issay Kitabayashi

Histone acetyltransferases (HATs) p300 and CREB-binding protein (CBP) function as co-activators for a variety of sequence-specific transcription factors, including AML1. Here, we report that homeodomain-interacting protein kinase-2 (HIPK2) forms a complex with AML1 and p300, and phosphorylates both AML1 and p300 to stimulate transcription activation as well as HAT activities. Phosphorylation of...

Journal: :Molecular and cellular biology 1996
D E Zhang C J Hetherington S Meyers K L Rhoades C J Larson H M Chen S W Hiebert D G Tenen

Transcription factors play a key role in the development and differentiation of specific lineages from multipotential progenitors. Identification of these regulators and determining the mechanism of how they activate their target genes are important for understanding normal development of monocytes and macrophages and the pathogenesis of a common form of adult acute leukemia, in which the diffe...

Journal: :The Journal of biological chemistry 2004
Je-Yoel Cho Yasmin Akbarali Luiz F Zerbini Xuesong Gu Jay Boltax Yihong Wang Peter Oettgen Dong-Er Zhang Towia A Libermann

We previously isolated different isoforms of a new Ets transcription factor family member, NERF/ELF-2, NERF-2, NERF-1a, and NERF-1b. In contrast to the inhibitory isoforms NERF-1a and NERF-1b, NERF-2 acts as a transactivator of the B cell-specific blk promoter. We now report that NERF-2 and NERF-1 physically interact with AML1 (RUNX1), a frequent target for chromosomal translocations in leukemi...

Journal: :Cancer research 2006
Youngjin Choi Kamaleldin E Elagib Lorrie L Delehanty Adam N Goldfarb

Human acute myeloid leukemias with the t(8;21) translocation express the AML1-ETO fusion protein in the hematopoietic stem cell compartment and show impairment in erythroid differentiation. This clinical finding is reproduced in multiple murine and cell culture model systems in which AML1-ETO specifically interferes with erythroid maturation. Using purified normal human early hematopoietic prog...

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