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Expression of the human acute myeloid leukemia gene AML1 is regulated by two promoter regions.

机译:人类急性髓细胞白血病基因AML1的表达受两个启动子区域的调节。

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摘要

The human chromosome 21 AML1 gene is expressed predominantly in the hematopoietic system. In several leukemia-associated translocations AML1 is fused to other genes and transcription of the fused regions is mediated by upstream sequences that normally regulate the expression of AML1. The 5' genomic region of AML1 was cloned and sequenced. The two 5' untranslated regions (UTRs) previously identified in AML1 cDNAs were located in this region and the distance between them was established. The distal 5' UTR maps over 7 kb upstream of the proximal one. Using primer extension with mRNA, transcription start sites were identified at two distinct sites above these 5' uTRs. Sequence analysis revealed the absence of a TATA motif and the presence of Sp1, PU.1, Oct, CRE, Myb, Ets, and Ets-like binding sites in both upstream regions. Several initiator elements (Inr) that overlap the transcription start sites were also identified. These proximal and distal upstream regions and their deletion mutants were cloned in front of a luciferase reporter gene and used in transfection assays. We demonstrate that both upstream regions function as promoters in hematopoietic (Jurkat) and nonhematopoietic (HEK) cell lines. The activity of both promoters was orientation dependent and was enhanced, in a cell-type specific manner, by a heterologous enhancer sequence. These results indicate that additional control elements, either negative or positive, regulate the tissue-specific expression of AML1.
机译:人21号染色体AML1基因主要在造血系统中表达。在几种与白血病相关的易位中,AML1与其他基因融合,融合区的转录由通常调节AML1表达的上游序列介导。克隆并测序了AML1的5'基因组区域。先前在AML1 cDNA中鉴定出的两个5'非翻译区(UTR)位于该区域,并确定了它们之间的距离。远端的5'UTR在近端的上游7 kb处作图。使用带有mRNA的引物延伸,在这些5'uTR上方的两个不同位点鉴定了转录起始位点。序列分析揭示了在两个上游区域中都没有TATA基序以及Sp1,PU.1,Oct,CRE,Myb,Ets和Ets样结合位点的存在。还确定了与转录起始位点重叠的几个启动子元件(Inr)。将这些近端和远端上游区域及其缺失突变体克隆到荧光素酶报道基因的前面,并用于转染测定。我们证明这两个上游区域在造血(Jurkat)和非造血(HEK)细胞系中起启动子的作用。两种启动子的活性都是方向依赖性的,并且通过细胞类型特异性方式被异源增强子序列增强。这些结果表明,阴性或阳性的其他控制元件调节AML1的组织特异性表达。

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