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A forward genetic screen in Drosophila melanogaster to identify mutations affecting INAD localization in photoreceptor cells.

机译:在果蝇中进行前向遗传筛选,以鉴定影响INAD在感光细胞中定位的突变。

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摘要

In Drosophila photoreceptors, the multivalent PDZ protein INAD interacts with multiple signaling components and localizes complexes to the rhabdomere, a subcellular compartment specialized for phototransduction. Since this localization is critical for signaling, we conducted a genetic screen of the third chromosome for mutations that result in mislocalization of an INAD-GFP fusion protein. We identified seven mutant lines that fall into two complementation groups, idl (INAD localization)-A and idl-B. We show that idl-A mutants fail to complement with chaoptic (chp) mutants. Since chaoptin is a structural component of the rhabdomere, mislocalization of INAD may be a secondary effect of the retinal degeneration in chp and idl-A mutants. Genetic complementation and DNA sequencing reveal that the two idl-B mutants represent new alleles of trp, a gene encoding the major light-activated channel. The molecular change in each allele affects a highly conserved residue in either an ankyrin domain on the N-terminus or in the S6 transmembrane domain of TRP. These changes lead to the loss of TRP protein. TRP has previously been shown to anchor INAD in the rhabdomeres, therefore the independent identification of two trp alleles validates our screen for INAD-GFP localization. One possibility is that a limited number of proteins are required for localizing INAD-signaling complexes. A similar screen of the X and second chromosomes may be required to find the remaining players involved.
机译:在果蝇感光细胞中,多价PDZ蛋白INAD与多种信号传导成分相互作用,并将复合物定位在rhabdomere(一种专门用于光转导的亚细胞腔室)中。由于这种定位对于信号传导至关重要,因此我们对第三条染色体进行了遗传筛选,以寻找导致INAD-GFP融合蛋白定位错误的突变。我们确定了七个突变株,分为两个互补组,idl(INAD本地化)-A和idl-B。我们表明,idl-A突变体无法与混沌(chp)突变体互补。由于chaoptin是横纹肌球蛋白的结构成分,INAD的错误定位可能是chp和idl-A突变体中视网膜变性的次要作用。遗传互补和DNA测序表明,两个idl-B突变体代表了trp的新等位基因,该基因编码主要的光激活通道。每个等位基因中的分子变化会影响TRP N末端或S6跨膜结构域中锚蛋白结构域中高度保守的残基。这些变化导致TRP蛋白的丢失。 TRP先前已显示可将INAD锚定在横纹肌中,因此两个trp等位基因的独立鉴定验证了我们对INAD-GFP定位的筛选。一种可能性是,局限INAD信号复合物所需的蛋白质数量有限。 X和第二条染色体的相似屏幕可能需要找到其余参与的参与者。

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