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果蝇Abd - B同源异型基因的形态发生、调控功能及顺式调控元件的分子定义。

Molecular definition of the morphogenetic and regulatory functions and the cis-regulatory elements of the Drosophila Abd-B homeotic gene.

作者信息

Boulet A M, Lloyd A, Sakonju S

机构信息

Howard Hughes Medical Institute, Department of Human Genetics, University of Utah School of Medicine, Salt Lake City 84132.

出版信息

Development. 1991 Feb;111(2):393-405. doi: 10.1242/dev.111.2.393.

Abstract

The Abdominal-B (Abd-B) gene, a member of the Drosophila bithorax complex, is required during development to specify the identity of parasegments 10-14. Based on genetic studies, Casanova, J., Sánchez-Herrero, E. and Morata, G. (1986) Cell 47, 627-636, proposed that the Abd-B gene consists of two distinct elements that provide a morphogenetic (m) function in PS 10-13 and a regulatory (r) function in PS 14, where it represses m function. Here we present molecular confirmation of this genetic model. Using specific antibodies, we show that the 55 X 10(3) M(r) and 30 X 10(3) M(r) Abd-B proteins, predicted by cDNA analysis, are indeed present in PS 10-13 and PS 14, respectively. We also examine Abd-B mRNA and protein expression patterns in embryos mutant for either the m or r function. These data allow us to unambiguously assign m function to the 55 X 10(3) M(r) protein and r function to the 30 X 10(3) M(r) protein. Furthermore, as postulated by the model, transcription of the mRNA encoding the m protein is derepressed in PS 14 in the absence of r function. We have also studied the effect of mutations mapping in the infra-abdominal (iab) region located downstream of the Abd-B gene. Genetic studies suggest that the iab region contains cis-acting regulatory elements controlling Abd-B expression in PS 10-12. We present molecular evidence for the presence of downstream cis-regulatory elements by analyzing Abd-B mRNA and protein patterns in iab-6 and iab-7 embryos. Our analysis reveals the presence of parasegment and cell-specific regulatory elements of the Abd-B gene within each iab region. The Abd-B gene may provide a model for the understanding of similarly complex homeotic genes in higher organisms.

摘要

腹部B(Abd - B)基因是果蝇双胸复合体的成员之一,在发育过程中对于确定副节10 - 14的特性是必需的。基于遗传学研究,卡萨诺瓦(Casanova, J.)、桑切斯 - 埃雷罗(Sánchez - Herrero, E.)和莫拉塔(Morata, G.)(1986年,《细胞》第47卷,627 - 636页)提出,Abd - B基因由两个不同的元件组成,其中一个元件在副节10 - 13中提供形态发生(m)功能,另一个在副节14中提供调控(r)功能,在副节14中它抑制m功能。在此,我们给出了这一遗传模型的分子学证据。通过使用特异性抗体,我们发现经cDNA分析预测的55×10³ M(r)和30×10³ M(r)的Abd - B蛋白确实分别存在于副节10 - 13和副节14中。我们还研究了m或r功能发生突变的胚胎中Abd - B mRNA和蛋白的表达模式。这些数据使我们能够明确地将m功能赋予55×10³ M(r)蛋白,将r功能赋予30×10³ M(r)蛋白。此外,正如该模型所假设的,在缺乏r功能时,编码m蛋白的mRNA在副节14中的转录去抑制。我们还研究了位于Abd - B基因下游的腹下(iab)区域内突变的影响。遗传学研究表明,iab区域包含控制副节10 - 12中Abd - B表达的顺式作用调控元件。通过分析iab - 6和iab - 7胚胎中的Abd - B mRNA和蛋白模式,我们给出了下游顺式调控元件存在的分子学证据。我们的分析揭示了每个iab区域内存在Abd - B基因的副节特异性和细胞特异性调控元件。Abd - B基因可能为理解高等生物中类似复杂的同源异型基因提供一个模型。

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