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黑腹果蝇zeste基因座的核苷酸序列与结构分析。

Nucleotide sequence and structural analysis of the zeste locus of Drosophila melanogaster.

作者信息

Mansukhani A, Gunaratne P H, Sherwood P W, Sneath B J, Goldberg M L

机构信息

Section of Genetics and Development, Cornell University, Ithaca, NY 14853.

出版信息

Mol Gen Genet. 1988 Jan;211(1):121-8. doi: 10.1007/BF00338402.

Abstract

The zeste locus plays a central role in transvection phenomena, where the synaptic pairing of chromosomes carrying genes with which zeste interacts influences the expression of these genes. To explore the possible functions of the zeste gene product in this process, we have determined the DNA sequences both of a fragment of Drosophila genomic DNA capable of rescuing mutant zeste phenotypes, and of a near full-length cDNA clone derived from the 2.4-kb zeste mRNA. These data show that the zeste gene is interrupted by two small introns, and suggest that the majority of zeste sequences are contained within an intron of another transcriptional unit of opposite polarity. A large region of the predicted zeste product is comprised almost exclusively of glutamine and alanine residues. A domain near the N terminus of this protein, which is sufficient for site-specific DNA binding, is highly charged, as is the C-terminal region of the protein. A breakpoint of the rearrangement In (1)e(bx), which is associated with a za-like phenotype, is found within sequences encoding the zeste product, and would produce a truncated protein. The neomorphic mutation zv77h is correlated with a 300-bp deletion of sequences determining the untranslated 5' leader of the zeste messenger, but may also remove the initiating ATG codon, resulting in a zeste protein with an altered N terminus.

摘要

小体基因座在反式效应现象中起着核心作用,在此过程中,携带与小体相互作用基因的染色体的突触配对会影响这些基因的表达。为了探究小体基因产物在此过程中可能的功能,我们测定了一段能够挽救突变型小体表型的果蝇基因组DNA片段以及一个源自2.4 kb小体mRNA的近乎全长的cDNA克隆的DNA序列。这些数据表明,小体基因被两个小内含子打断,并提示小体序列的大部分包含在另一个极性相反的转录单元的一个内含子内。预测的小体产物的一个大区域几乎完全由谷氨酰胺和丙氨酸残基组成。该蛋白质N端附近的一个足以进行位点特异性DNA结合的结构域以及蛋白质的C端区域都带有大量电荷。与类小体表型相关的重排In(1)e(bx)的一个断点位于编码小体产物的序列内,会产生一种截短的蛋白质。新形态突变zv77h与一段决定小体信使RNA 5'非翻译前导区的300 bp序列缺失相关,但也可能去除起始ATG密码子,从而产生一种N端改变的小体蛋白质。

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