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首页> 外文期刊>Molecular and Cellular Biology >The brown protein of Drosophila melanogaster is similar to the white protein and to components of active transport complexes.
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The brown protein of Drosophila melanogaster is similar to the white protein and to components of active transport complexes.

机译:果蝇的棕色蛋白类似于白色蛋白,并且类似于活性转运复合物的成分。

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The brown gene of Drosophila melanogaster is required for deposition of pteridine pigments in the compound eye and other tissues. We isolated a ca. 150-kilobase region including brown by microdissection and chromosome walking using cosmids. Among the cDNAs identified by hybridization to the cosmids, one class hybridized to a genomic region that is interrupted in two brown mutants, bw and In(2LR)CK, and to 2.8- and 3.0-kilobase poly(A)+ RNAs which are altered in the mutants. Nucleotide sequencing of these cDNAs revealed that the two transcripts differ as a consequence of alternative poly(A) addition and that both encode the same predicted protein of 675 amino acids. Searches of available databases for amino acid sequence similarities detected a striking overall similarity of this predicted protein to that of the D. melanogaster white gene. The N-terminal portion aligned with the HisP family of membrane-associated ATP-binding proteins, most of which are subunits of active transport complexes in bacteria, and to two regions of the multidrug resistance P-glycoprotein. The C-terminal portion showed a structural similarity to integral membrane components of the same complexes. Taken together with earlier biochemical evidence that brown and white gene products are necessary for uptake of a pteridine precursor and genetic evidence that brown and white proteins interact, our results are consistent with suggestions that these proteins are subunits of a pteridine precursor permease.
机译:果蝇色素的棕色基因是蝶啶色素在复眼和其他组织中沉积所必需的。我们隔离了一个ca。 150千碱基的区域,包括显微切割的棕色和使用粘粒进行的染色体行走。在通过与粘粒杂交鉴定的cDNA中,一类与在两个棕色突变体bw和In(2LR)CK中中断的基因组区域杂交,并与被改变的2.8和3.0碱基碱基的poly(A)+ RNA杂交。在突变体中。这些cDNA的核苷酸测序表明,由于添加了poly(A),这两个转录本有所不同,并且都编码了675个氨基酸的相同预测蛋白。在可用数据库中搜索氨基酸序列相似性,发现该预测蛋白与黑腹果蝇D. white基因具有惊人的整体相似性。 N末端部分与膜相关的ATP结合蛋白的HisP家族对齐,其中大多数是细菌中主动转运复合物的亚基,并与耐多药的P糖蛋白的两个区域对齐。 C端部分显示出与相同复合物的整体膜组分的结构相似性。再加上较早的生化证据表明棕色和白色基因产物对于蝶啶前体的摄取是必需的,遗传证据表明棕色和白色蛋白质相互作用,我们的结果与这些蛋白质是蝶啶前体通透酶的亚基的建议相符。

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