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果蝇发育中偶数缺口突变体的分子分析。

Molecular analysis of even-skipped mutants in Drosophila development.

作者信息

Frasch M, Warrior R, Tugwood J, Levine M

机构信息

Department of Biological Sciences, Columbia University, New York, New York 10027.

出版信息

Genes Dev. 1988 Dec;2(12B):1824-38. doi: 10.1101/gad.2.12b.1824.

Abstract

The homeo box gene even-skipped (eve) plays a key role in the regulation of the Drosophila segmentation pattern. eve- embryos lack segment borders and show altered activities of several segmentation genes, including fushi tarazu (ftz), engrailed (en), and wingless (wg). Here, we present evidence that eve influences its own expression in a tissue-specific manner. Each of four different eve mutations disrupts the normal eve expression pattern, and null mutations cause a premature loss of eve products in ectodermal, but not mesodermal, tissues. Molecular characterization of eve mutations indicates that disruptions of the eve pattern are not due to alterations in the eve promoter but, instead, involve abnormal eve proteins. Two different eve mutations cause single amino acid substitutions within the homeo box, and we discuss the implications of these changes with regard to homeo box gene function. We also present evidence that eve+ gene activity is not only required for the activation of the odd-numbered en stripes but also for the correct positioning of each ftz stripe. We present a model for the loss of en expression in eve- embryos, based on the concentration-dependent regulation of the ftz pattern by eve+ products.

摘要

同源异型框基因“偶数缺失”(eve)在果蝇体节模式的调控中起关键作用。eve突变体胚胎缺乏体节边界,并表现出几种体节基因的活性改变,包括“成对规则”基因(ftz)、“分节基因”(en)和“无翅”基因(wg)。在此,我们提供证据表明,eve以组织特异性方式影响其自身的表达。四种不同的eve突变中的每一种都会破坏正常的eve表达模式,而无效突变会导致外胚层组织(而非中胚层组织)中eve产物过早丧失。eve突变的分子特征表明,eve模式的破坏并非由于eve启动子的改变,而是涉及异常的eve蛋白。两种不同的eve突变会导致同源异型框内单个氨基酸的替换,我们讨论了这些变化对同源异型框基因功能的影响。我们还提供证据表明,eve +基因活性不仅是激活奇数编号的en条纹所必需的,而且对于每个ftz条纹的正确定位也是必需的。基于eve +产物对ftz模式的浓度依赖性调控,我们提出了一个eve突变体胚胎中en表达缺失的模型。

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