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黑腹果蝇87E肌动蛋白基因区域的分子与遗传学特征

Molecular and genetic characterization of the Drosophila melanogaster 87E actin gene region.

作者信息

Manseau L J, Ganetzky B, Craig E A

机构信息

Department of Genetics, University of Wisconsin, Madison 53706.

出版信息

Genetics. 1988 Jun;119(2):407-20. doi: 10.1093/genetics/119.2.407.

Abstract

A combined molecular and genetic analysis of the 87E actin gene (Act87E) in Drosophila melanogaster was undertaken. A clone of Act87E was isolated and characterized. The Act87E transcription unit is 1.57 kb and includes a 556-base intervening sequence in the 5' leader of the gene. The protein-coding region is contiguous and encodes a protein that is greater than 93% identical to the other Drosophila actins. By in situ hybridization with a series of deficiencies that break in 87E, Act87E was localized to a region encompassing one to three faint, polytene chromosome bands. The region between the deficiency endpoints that flank the actin gene was isolated and measures approximately 24-30 kb. The closest proximal deficiency endpoint lies 8-10 kb 5' to the actin gene; the closest distal deficiency endpoint lies 16-20 kb 3' to the actin gene. A single, recessive lethal complementation group lies between the deficiency endpoints that flank the actin gene. An EMS mutagenesis screen produced four additional members of this recessive lethal complementation group. Molecular analysis of the members of this complementation group indicated that two of the newly induced mutations have deletions of approximately 1 kb in a transcribed region 4-5 kb 3' (distal) to the actin gene. This result suggests that the recessive lethal complementation group represents a gene separate from and distal to the actin gene. The mutagenesis screen failed to identify additional recessive lethal complementation groups in the actin gene-containing region. The implications of the failure to identify recessive lethal mutations in the actin gene are discussed in reference to studies of other conserved multigene families and other muscle protein mutations.

摘要

对黑腹果蝇87E肌动蛋白基因(Act87E)进行了分子与遗传学联合分析。分离并鉴定了Act87E的一个克隆。Act87E转录单位为1.57 kb,在基因的5'前导序列中有一个556个碱基的间隔序列。蛋白质编码区是连续的,编码一种与其他果蝇肌动蛋白有超过93%同一性的蛋白质。通过与一系列在87E区域断裂的缺失进行原位杂交,将Act87E定位到一个包含一到三条微弱的多线染色体带的区域。分离出了肌动蛋白基因两侧缺失端点之间的区域,其大小约为24 - 30 kb。最接近的近端缺失端点位于肌动蛋白基因5'端8 - 10 kb处;最接近的远端缺失端点位于肌动蛋白基因3'端16 - 20 kb处。在肌动蛋白基因两侧的缺失端点之间存在一个单一的隐性致死互补群。一个EMS诱变筛选产生了这个隐性致死互补群的另外四个成员。对这个互补群成员的分子分析表明,两个新诱导的突变在肌动蛋白基因3'(远端)4 - 5 kb的转录区域中有大约1 kb的缺失。这一结果表明,隐性致死互补群代表了一个与肌动蛋白基因不同且位于其远端的基因。诱变筛选未能在包含肌动蛋白基因的区域中鉴定出其他隐性致死互补群。结合对其他保守多基因家族和其他肌肉蛋白突变的研究,讨论了未能在肌动蛋白基因中鉴定出隐性致死突变的意义。

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