小鼠Hox-b3 (Hox-2.7)基因的5′序列及其内含子包含多个转录调控元件

William M. Brown , Gareth R. Taylor
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引用次数: 9

摘要

我们试图克隆和表征小鼠Hox-b3基因。在爪蟾胚胎中,同源基因已被证明对视黄酸有反应,视黄酸是一种对组织生长发育有深远影响的物质。通过斑块杂交,使用部分小鼠Hox-b3 cDNA作为探针,我们筛选了基因组文库并分离出一系列重叠克隆。阳性克隆的限制性内切酶片段在自动DNA测序仪上用双脱氧法测序。我们报道了小鼠Hox-b3基因的基因组序列。序列已提交到GenBank数据库(登录号U02278)。我们的序列从P1启动子通过基因的编码序列延伸到3'-非翻译区。与其他同型盒基因一样,在保守的六肽和同型盒之间有一个内含子。它有866 bp长,3'和5'的剪接位点非常相似,有一个长聚嘧啶束,在3'剪接位点附近有一个潜在的分支点。我们分析了起始密码子和内含子的5'序列,并确定了P1启动子和内含子的一系列转录因子结合位点,包括两个类视黄醇X受体-β。讨论了它们可能的意义。我们已经确定的序列可能是观察到的基因表达模式的原因。该序列及其克隆将使P1启动子区域的分子解剖成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The 5'-sequence of the murine Hox-b3 (Hox-2.7) gene and its intron contain multiple transcription-regulatory elements

We sought to clone and characterize the murine Hox-b3 gene. In Xenopus embryos, the homologous gene has been shown to be responsive to retinoic acid, an agent which has profound effects on tissue growth and development. By plaque hybridization, using a partial, murine Hox-b3 cDNA as a probe, we screened a genomic library and isolated a series of overlapping clones. Restriction fragments from positive clones were sequenced by the dideoxy method on an automated DNA sequencer.

We report the genomic sequence of the murine Hox-b3 gene. The sequence has been submitted to the GenBank database (accession number U02278). Our sequence extends from the P1 promoter through the coding sequence of the gene to the 3'-untranslated region. In common with other homeobox genes, there is an intron between the conserved hexapeptide and the homeobox. It is 866 bp long and has 3'- and 5'-splice sites very similar to the consensus, a long polypyrimidine tract and a potential branch point near the 3'-splice site. We have analyzed the sequence 5' to the initiation codon and the intron for putative control elements, and have identified a series of putative transcription factor binding sites in the P1 promoter and intron, including two for the retinoid X receptor-β. Their possible significance is discussed.

The sequences we have identified may be responsible for the observed pattern of expression of the gene. This sequence and the clones from which it is derived will enable a molecular dissection of the P1 promoter region.

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