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特定的DNA识别和位点间间距对于双尾形态发生素的作用至关重要。

Specific DNA recognition and intersite spacing are critical for action of the bicoid morphogen.

作者信息

Hanes S D, Riddihough G, Ish-Horowicz D, Brent R

机构信息

Department of Molecular Biology, Massachusetts General Hospital, Boston.

出版信息

Mol Cell Biol. 1994 May;14(5):3364-75. doi: 10.1128/mcb.14.5.3364-3375.1994.

Abstract

We examined DNA site recognition by Bicoid and its importance for pattern formation in developing Drosophila embryos. Using altered DNA specificity Bicoid mutants and appropriate reporter genes, we show that Bicoid distinguishes among related DNA-binding sites in vivo by a specific contact between amino acid 9 of its recognition alpha-helix (lysine 50 of the homeodomain) and bp 7 of the site. This result is consistent with our earlier results using Saccharomyces cerevisiae but differs from that predicted by crystallographic analysis of another homeodomain-DNA interaction. Our results also demonstrate that Bicoid binds directly to those genes whose transcription it regulates and that the amino acid 9 contact is necessary for Bicoid to direct anterior pattern formation. In both Drosophila embryos and yeast cells, Bicoid requires multiple binding sites to activate transcription of target genes. We find that the distance between binding sites is critical for Bicoid activation but that, unexpectedly, this critical distance differs between Drosophila and S. cerevisiae. This result suggests that Bicoid activation in Drosophila might require an ancillary protein(s) not present in S. cerevisiae.

摘要

我们研究了双胸蛋白(Bicoid)对DNA位点的识别及其在果蝇胚胎发育过程中模式形成的重要性。利用改变DNA特异性的双胸蛋白突变体和合适的报告基因,我们发现双胸蛋白在体内通过其识别α-螺旋的第9位氨基酸(同源异型结构域的赖氨酸50)与位点的第7个碱基对之间的特异性接触来区分相关的DNA结合位点。这一结果与我们早期使用酿酒酵母的结果一致,但与另一种同源异型结构域 - DNA相互作用的晶体学分析所预测的结果不同。我们的结果还表明,双胸蛋白直接结合到其调控转录的那些基因上,并且第9位氨基酸的接触对于双胸蛋白指导前部模式形成是必需的。在果蝇胚胎和酵母细胞中,双胸蛋白都需要多个结合位点来激活靶基因的转录。我们发现结合位点之间的距离对双胸蛋白的激活至关重要,但出乎意料的是,果蝇和酿酒酵母中的这个关键距离不同。这一结果表明,果蝇中的双胸蛋白激活可能需要酿酒酵母中不存在的辅助蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddeb/358702/252c895ca82c/molcellb00005-0539-a.jpg

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