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果蝇触角足复合体Scr-Antp区间中的远程增强子-启动子相互作用。

Long-range enhancer-promoter interactions in the Scr-Antp interval of the Drosophila Antennapedia complex.

作者信息

Calhoun Vincent C, Levine Michael

机构信息

Department of Molecular and Cell Biology, Division of Genetics and Development, University of California, Berkeley, CA 94720, USA.

出版信息

Proc Natl Acad Sci U S A. 2003 Aug 19;100(17):9878-83. doi: 10.1073/pnas.1233791100. Epub 2003 Aug 8.

Abstract

Long-range enhancer-promoter interactions are commonly seen in complex genetic loci such as Hox genes and globin genes. In the case of the Drosophila Antennapedia complex, the T1 enhancer bypasses the neighboring ftz gene and interacts with the distant Scr promoter to activate expression in posterior head segments. Previous studies identified a 450-bp promoter-proximal sequence, the tethering element, which is essential for T1-Scr interactions. To obtain a more comprehensive view of how individual enhancers selectively interact with appropriate target genes, we used bioinformatic methods to identify new cis-regulatory DNAs in the approximately 50-kb Scr-Antp interval. Three previously uncharacterized regulatory elements were identified: a distal T1 tethering sequence mapping >40 kb from the proximal tethering sequence, a repressor element that excludes activation of Scr by inappropriate enhancers, and a new ftz enhancer that directs expression within the limits of stripes 1 and 5. Many of the regulatory DNAs in the Scr-Antp interval are transcribed, including the proximal and distal tethering elements. We suggest that homotypic interactions between the tethering elements stabilize long-range T1-Scr interactions during development.

摘要

长程增强子-启动子相互作用常见于复杂的基因位点,如Hox基因和珠蛋白基因。在果蝇触角足复合体的例子中,T1增强子绕过相邻的ftz基因,与远处的Scr启动子相互作用,以激活后头节中的表达。先前的研究确定了一个450bp的启动子近端序列,即拴系元件,它对T1-Scr相互作用至关重要。为了更全面地了解单个增强子如何选择性地与合适的靶基因相互作用,我们使用生物信息学方法在大约50kb的Scr-Antp区间内鉴定新的顺式调控DNA。鉴定出三个先前未表征的调控元件:一个距近端拴系序列>40kb的远端T1拴系序列、一个排除不适当增强子对Scr激活作用的抑制元件,以及一个在条纹1和5范围内指导表达的新ftz增强子。Scr-Antp区间内的许多调控DNA都被转录,包括近端和远端拴系元件。我们认为,拴系元件之间的同型相互作用在发育过程中稳定了长程T1-Scr相互作用。

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Proc Natl Acad Sci U S A. 2002 Dec 24;99(26):16847-52. doi: 10.1073/pnas.222671299. Epub 2002 Dec 12.
3
fushi tarazu: a Hox gene changes its role.
Bioessays. 2002 Nov;24(11):992-5. doi: 10.1002/bies.10180.
4
The RNA polymerase II core promoter: a key component in the regulation of gene expression.
Genes Dev. 2002 Oct 15;16(20):2583-92. doi: 10.1101/gad.1026202.
5
Promoter-proximal tethering elements regulate enhancer-promoter specificity in the Drosophila Antennapedia complex.
Proc Natl Acad Sci U S A. 2002 Jul 9;99(14):9243-7. doi: 10.1073/pnas.142291299. Epub 2002 Jul 1.
7
Genome-wide analysis of clustered Dorsal binding sites identifies putative target genes in the Drosophila embryo.
Proc Natl Acad Sci U S A. 2002 Jan 22;99(2):763-8. doi: 10.1073/pnas.012591199. Epub 2001 Dec 18.
8
Drosophila fushi tarazu. a gene on the border of homeotic function.
Curr Biol. 2001 Sep 18;11(18):1403-12. doi: 10.1016/s0960-9822(01)00443-2.
9
Dosage compensation rox!
Curr Opin Cell Biol. 2000 Jun;12(3):351-4. doi: 10.1016/s0955-0674(00)00099-5.

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