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Prp8p dissection reveals domain structure and protein interaction sites.

机译:Prp8p解剖揭示域结构和蛋白质相互作用位点。

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We describe a novel approach to characterize the functional domains of a protein in vivo. This involves the use of a custom-built Tn5-based transposon that causes the expression of a target gene as two contiguous polypeptides. When used as a genetic screen to dissect the budding yeast PRP8 gene, this showed that Prp8 protein could be dissected into three distinct pairs of functional polypeptides. Thus, four functional domains can be defined in the 2413-residue Prp8 protein, with boundaries in the regions of amino acids 394-443, 770, and 2170-2179. The central region of the protein was resistant to dissection by this approach, suggesting that it represents one large functional unit. The dissected constructs allowed investigation of factors that associate strongly with the N- or the C-terminal Prp8 protein fragments. Thus, the U5 snRNP protein Snu114p associates with Prp8p in the region 437-770, whereas fragmenting Prp8p at residue 2173 destabilizes its association with Aar2p.
机译:我们描述了一种新颖的方法来表征体内蛋白质的功能域。这涉及使用定制的基于Tn5的转座子,该转座子导致靶基因表达为两个连续的多肽。当用作解剖萌芽酵母PRP8基因的遗传筛选时,这表明Prp8蛋白可以被分解成三对不同的功能多肽。因此,可以在2413残基的Prp8蛋白中定义四个功能域,在氨基酸394-443、770和2170-2179的区域中具有边界。蛋白质的中央区域通过这种方法对解剖有抵抗力,表明它代表了一个大的功能单元。解剖的构造允许调查与N或C端Prp8蛋白片段强烈相关的因素。因此,U5 snRNP蛋白Snu114p在437-770区与Prp8p缔合,而在残基2173处使Prp8p断裂则使它与Aar2p的缔合不稳定。

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