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High Quality Binary Protein Interaction Map of the Yeast Interactome Network

机译:酵母相互作用网络的高质量二进制蛋白质相互作用图

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摘要

Current yeast interactome network maps contain several hundred molecular complexes with limited and somewhat controversial representation of direct binary interactions. We carried out a comparative quality assessment of current yeast interactome datasets, demonstrating that high-throughput yeast two-hybrid (Y2H) provides high-quality binary interaction information. As a large fraction of the yeast binary interactome remains to be mapped, we developed an empirically-controlled mapping framework to produce a “second-generation” high-quality high-throughput Y2H dataset covering ~20% of all yeast binary interactions. Both Y2H and affinity-purification followed by mass spectrometry (AP/MS) data are of equally high quality but of a fundamentally different and complementary nature resulting in networks with different topological and biological properties. Compared to co-complex interactome models, this binary map is enriched for transient signaling interactions and inter-complex connections with a highly significant clustering between essential proteins. Rather than correlating with essentiality, protein connectivity correlates with genetic pleiotropy.
机译:当前的酵母相互作用组网络图包含数百种分子复合物,这些分子复合物具有直接二进制相互作用的有限且颇有争议的表示。我们对当前的酵母相互作用组数据集进行了比较质量评估,表明高通量酵母双杂交(Y2H)提供了高质量的二元相互作用信息。由于仍有很大一部分酵母二元相互作用组需要作图,我们开发了一个经验控制的作图框架,以产生一个“第二代”高质量高通量Y2H数据集,涵盖所有酵母二元相互作用的约20%。 Y2H和亲和纯化后加质谱(AP / MS)数据的质量均相同,但具有根本不同和互补的性质,从而导致网络具有不同的拓扑和生物学特性。与共复杂相互作用组模型相比,该二元图丰富了瞬时信号相互作用和复杂复合体之间的连接,并在必需蛋白之间形成了高度重要的簇。蛋白质连通性与遗传多效性相关,而不是与必需性相关。

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