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t(8;21)融合蛋白AML-1/ETO的功能结构域

Functional domains of the t(8;21) fusion protein, AML-1/ETO.

作者信息

Lenny N, Meyers S, Hiebert S W

机构信息

Department of Tumor Cell Biology, St Jude Children's Research Hospital, Memphis, Tennessee 38101, USA.

出版信息

Oncogene. 1995 Nov 2;11(9):1761-9.

PMID:7478604
Abstract

The AML-1/ETO fusion protein is created by the (8;21) translocation, the second most frequent chromosomal abnormality associated with acute myeloid leukemia. In the fusion protein the AML-1 runt homology domain, which is responsible for DNA binding and CBF beta interaction, is linked to ETO, a gene of unknown function. The primary sequences of the runt homology domain indicates no known DNA binding motifs, but is predicted to contain six beta-strands, two alpha-helices and a nucleotide binding motif. Mutagenesis of AML-1/ETO was performed to delimit the functional domains of the chimeric protein. Most mutations in the runt homology domain that resulted in reduced CBF beta binding also inhibited DNA binding, indicating that the DNA and CBF beta binding sequences are tightly linked. However, these activities were separated by a point mutation of residue 144, within the putative ATP binding motif, which nearly eliminated DNA binding, but did not affect CBF beta binding. Random mutagenesis identified the hydrophobic face of the amphipathic fifth beta-strand, adjacent to the putative ATP binding motif, as critical for both DNA and CBF beta binding. C-terminal deletion mutants of AML-1/ETO indicated that ETO sequences are essential for interference with AML-1B-mediated transcriptional activation, and that residue 540 defines the C-terminal boundary of a potential repression domain. Thus, these mutational analyses define the regions of AML-1/ETO which regulate its function and that may be important in promoting leukemia.

摘要

AML-1/ETO融合蛋白由(8;21)易位产生,这是与急性髓系白血病相关的第二常见染色体异常。在融合蛋白中,负责DNA结合和CBFβ相互作用的AML-1 runt同源结构域与功能未知的基因ETO相连。runt同源结构域的一级序列未显示已知的DNA结合基序,但预计包含六条β链、两条α螺旋和一个核苷酸结合基序。对AML-1/ETO进行诱变以界定嵌合蛋白的功能结构域。runt同源结构域中大多数导致CBFβ结合减少的突变也抑制了DNA结合,这表明DNA和CBFβ结合序列紧密相连。然而,这些活性通过假定ATP结合基序内第144位残基的点突变而分离,该突变几乎消除了DNA结合,但不影响CBFβ结合。随机诱变确定,与假定ATP结合基序相邻的两亲性第五β链的疏水面对于DNA和CBFβ结合都至关重要。AML-1/ETO的C端缺失突变体表明,ETO序列对于干扰AML-1B介导的转录激活至关重要,并且第540位残基定义了潜在抑制结构域的C端边界。因此这些突变分析确定了AML-1/ETO中调节其功能且可能在促进白血病中起重要作用的区域。

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