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果蝇63F早期胀泡含有E63 - 1,这是一种蜕皮激素诱导基因,编码一种新型钙结合蛋白。

The Drosophila 63F early puff contains E63-1, an ecdysone-inducible gene that encodes a novel Ca(2+)-binding protein.

作者信息

Andres A J, Thummel C S

机构信息

Howard Hughes Medical Institute, Department of Human Genetics, Eccles Institute of Human Genetics, University of Utah, Salt Lake City 84112, USA.

出版信息

Development. 1995 Aug;121(8):2667-79. doi: 10.1242/dev.121.8.2667.

Abstract

Pulses of ecdysone at the end of Drosophila larval development dramatically reprogram gene expression as they signal the onset of metamorphosis. Ecdysone directly induces several early puffs in the salivary gland polytene chromosomes that, in turn, activate many late puffs. Three early puffs, at 2B5, 74EF, and 75B, have been studied at the molecular level. Each contains a single ecdysone primary-response gene that encodes a family of widely expressed transcription factors. We report here a molecular characterization of the 63F early puff. Unexpectedly, we have found this locus to be significantly different from the previously characterized early puff loci. First, the 63F puff contains a pair of ecdysone-inducible genes that are transcribed in the larval salivary glands: E63-1 and E63-2. Second, E63-1 induction in late third instar larvae appears to be highly tissue-specific, restricted to the salivary gland. Third, E63-1 encodes a novel Ca(2+)-binding protein related to calmodulin. The discovery of an ecdysone-inducible Ca(2+)-binding protein provides a foundation for integrating steroid hormone and calcium second messenger signaling pathways and generates an additional level for potential regulation of the ecdysone response.

摘要

在果蝇幼虫发育末期,蜕皮激素脉冲显著地重新编程基因表达,标志着变态发育的开始。蜕皮激素直接诱导唾液腺多线染色体上的几个早期胀泡,这些早期胀泡又激活许多晚期胀泡。已在分子水平上对位于2B5、74EF和75B的三个早期胀泡进行了研究。每个胀泡都包含一个单一的蜕皮激素初级反应基因,该基因编码一族广泛表达的转录因子。我们在此报告63F早期胀泡的分子特征。出乎意料的是,我们发现这个位点与先前表征的早期胀泡位点有显著差异。首先,63F胀泡包含一对在幼虫唾液腺中转录的蜕皮激素诱导基因:E63 - 1和E63 - 2。其次,在三龄幼虫后期,E63 - 1的诱导似乎具有高度的组织特异性,仅限于唾液腺。第三,E63 - 1编码一种与钙调蛋白相关的新型钙结合蛋白。蜕皮激素诱导的钙结合蛋白的发现为整合类固醇激素和钙第二信使信号通路奠定了基础,并为蜕皮激素反应的潜在调控增加了一个层面。

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