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果蝇engrailed基因调控DNA的异常特性:1.6千碱基区域内的三个“配对敏感”位点。

Unusual properties of regulatory DNA from the Drosophila engrailed gene: three "pairing-sensitive" sites within a 1.6-kb region.

作者信息

Kassis J A

机构信息

Laboratory of Developmental Biology, Food and Drug Administration, Bethesda, Maryland 20892.

出版信息

Genetics. 1994 Mar;136(3):1025-38. doi: 10.1093/genetics/136.3.1025.

Abstract

We have previously shown that a 2-kb fragment of engrailed DNA can suppress expression of a linked marker gene, white, in the P element vector CaSpeR. This suppression is dependent on the presence of two copies of engrailed DNA-containing P elements (P[en]) in proximity in the Drosophila genome (either in cis or in trans). In this study, the 2-kb fragment was dissected and found to contain three fragments of DNA which could mediate white suppression [called "pairing-sensitive sites" (PS)]. A PS site was also identified in regulatory DNA from the Drosophila escargot gene. The eye colors of six different P[en] insertions in the escargot gene suggest an interaction between P[en]-encoded and genome-encoded PS sites. I hypothesize that white gene expression from P[en] is repressed by the formation of a protein complex which is initiated at the engrailed PS sites and also requires interactions with flanking genomic DNA. Genes were sought which influence the function of PS sites. Mutations in some Polycomb and trithorax group genes were found to affect the eye color from some P[en] insertion sites. However, different mutations affected expression from different P[en] insertion sites and no one mutation was found to affect expression from all P[en] insertion sites examined. These results suggest that white expression from P[en] is not directly regulated by members of the Polycomb and trithorax group genes, but in some cases can be influenced by them. I propose that engrailed PS sites normally act to promote interactions between distantly located engrailed regulatory sites and the engrailed promoter.

摘要

我们之前已经表明,在P因子载体CaSpeR中,一段2kb的engrailed基因DNA片段能够抑制与之相连的标记基因white的表达。这种抑制作用取决于果蝇基因组中两个相邻的含engrailed基因DNA的P因子(P[en])拷贝的存在(无论是顺式还是反式)。在本研究中,对这段2kb的片段进行了切割,发现它包含三个能够介导white基因抑制作用的DNA片段[称为“配对敏感位点”(PS)]。在果蝇蜗牛基因的调控DNA中也鉴定出了一个PS位点。蜗牛基因中六个不同的P[en]插入位点的眼色表明,P[en]编码的PS位点与基因组编码的PS位点之间存在相互作用。我推测,P[en]中white基因的表达受到一种蛋白质复合物形成的抑制,这种复合物在engrailed基因的PS位点起始形成,并且还需要与侧翼基因组DNA相互作用。我们寻找了影响PS位点功能的基因。发现一些多梳蛋白和三胸节基因的突变会影响某些P[en]插入位点的眼色。然而,不同的突变影响不同P[en]插入位点的表达,没有发现一个突变会影响所有检测的P[en]插入位点的表达。这些结果表明,P[en]中white基因的表达不是直接受多梳蛋白和三胸节基因成员调控的,但在某些情况下会受到它们的影响。我提出,engrailed基因的PS位点通常起到促进远距离的engrailed基因调控位点与engrailed基因启动子之间相互作用的作用。

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本文引用的文献

4
Transvection, nuclear structure, and chromatin proteins.
J Cell Biol. 1993 Feb;120(3):587-90. doi: 10.1083/jcb.120.3.587.
5
Control of imaginal cell development by the escargot gene of Drosophila.
Development. 1993 May;118(1):105-15. doi: 10.1242/dev.118.1.105.
7
Transcriptional activation of Drosophila homeotic genes from distant regulatory elements.
Trends Genet. 1993 Mar;9(3):75-9. doi: 10.1016/0168-9525(93)90227-9.
9
Analysis of P transposable element functions in Drosophila.
Cell. 1984 Aug;38(1):135-46. doi: 10.1016/0092-8674(84)90534-8.
10
A germline transformation analysis reveals flexibility in the organization of heat shock consensus elements.
Nucleic Acids Res. 1987 Apr 10;15(7):2971-88. doi: 10.1093/nar/15.7.2971.

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