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首页> 外文期刊>Molecular and Cellular Biology >The extracellular signal-regulated kinase pathway phosphorylates AML1, an acute myeloid leukemia gene product, and potentially regulates its transactivation ability.
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The extracellular signal-regulated kinase pathway phosphorylates AML1, an acute myeloid leukemia gene product, and potentially regulates its transactivation ability.

机译:细胞外信号调节激酶途径使急性髓细胞白血病基因产物AML1磷酸化,并可能调节其反式激活能力。

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摘要

AML1 (also called PEBP2alphaB, CBFA2, or CBFalpha2) is one of the most frequently disrupted genes in chromosome abnormalities seen in human leukemias. It has been reported that AML1 plays several pivotal roles in myeloid hematopoietic differentiation and other biological phenomena, probably through the transcriptional regulation of various relevant genes. Here, we investigated the mechanism of regulation of AML1 functions through signal transduction pathways. The results showed that AML1 is phosphorylated in vivo on two serine residues within the proline-, serine-, and threonine-rich region, with dependence on the activation of extracellular signal-regulated kinase (ERK) and with interleukin-3 stimulation in a hematopoietic cell line. These in vivo phosphorylation sites of AML1 were phosphorylated directly in vitro by ERK. Although differences between wild-type AML1 and phosphorylation site mutants in DNA-binding affinity were not observed, we have shown that ERK-dependent phosphorylation potentiates the transactivation ability of AML1. Furthermore the phosphorylation site mutations reduced the transforming capacity of AML1 in fibroblast cells. These data indicate that AML1 functions are potentially regulated by ERK, which is activated by cytokine and growth factor stimuli. This study provides some important clues for clarifying unidentified facets of the regulatory mechanism of AML1 function.
机译:AML1(也称为PEBP2alphaB,CBFA2或CBFalpha2)是人类白血病中染色体异常中最常被破坏的基因之一。据报道,AML1可能通过各种相关基因的转录调控,在骨髓造血分化和其他生物学现象中起着关键作用。在这里,我们研究了通过信号转导途径调控AML1功能的机制。结果表明,AML1在体内富含脯氨酸,丝氨酸和苏氨酸的两个丝氨酸残基上被磷酸化,并依赖于细胞外信号调节激酶(ERK)的激活和造血细胞中白介素3的刺激。细胞系。 AML1的这些体内磷酸化位点通过ERK在体外直接磷酸化。尽管未观察到野生型AML1和磷酸化位点突变体在DNA结合亲和力方面的差异,但我们已经表明ERK依赖性磷酸化增强了AML1的反式激活能力。此外,磷酸化位点突变降低了成纤维细胞中AML1的转化能力。这些数据表明AML1功能可能受ERK调控,而ERK受细胞因子和生长因子刺激激活。这项研究为阐明AML1功能调节机制的未知方面提供了一些重要线索。

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