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Structural and Functional Analyses of PAS Domain Interactions of the Clock Proteins Drosophila PERIOD and Mouse PERIOD2

机译:时钟蛋白果蝇PERIOD和小鼠PERIOD2的PAS域相互作用的结构和功能分析。

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摘要

PERIOD proteins are central components of the Drosophila and mammalian circadian clocks. The crystal structure of a Drosophila PERIOD (dPER) fragment comprising two PER-ARNT-SIM (PAS) domains (PAS-A and PAS-B) and two additional C-terminal α-helices (αE and αF) has revealed a homodimer mediated by intermolecular interactions of PAS-A with tryptophane 482 in PAS-B and helix αF. Here we present the crystal structure of a monomeric PAS domain fragment of dPER lacking the αF helix. Moreover, we have solved the crystal structure of a PAS domain fragment of the mouse PERIOD homologue mPER2. The mPER2 structure shows a different dimer interface than dPER, which is stabilized by interactions of the PAS-B β-sheet surface including tryptophane 419 (equivalent to Trp482dPER). We have validated and quantitatively analysed the homodimer interactions of dPER and mPER2 by site-directed mutagenesis using analytical gel filtration, analytical ultracentrifugation, and co-immunoprecipitation experiments. Furthermore we show, by yeast-two-hybrid experiments, that the PAS-B β-sheet surface of dPER mediates interactions with TIMELESS (dTIM). Our study reveals quantitative and qualitative differences between the homodimeric PAS domain interactions of dPER and its mammalian homologue mPER2. In addition, we identify the PAS-B β-sheet surface as a versatile interaction site mediating mPER2 homodimerization in the mammalian system and dPER-dTIM heterodimer formation in the Drosophila system.
机译:蛋白质是果蝇和哺乳动物生物钟的重要组成部分。果蝇PERIOD(dPER)片段的晶体结构包含两个PER-ARNT-SIM(PAS)域(PAS-A和PAS-B)和两个其他C端α螺旋(αE和αF),表明同源二聚体介导通过PAS-A与PAS-B中的色氨酸482和螺旋αF的分子间相互作用来实现。在这里,我们介绍了缺少αF螺旋的dPER的单体PAS域片段的晶体结构。而且,我们已经解决了小鼠PERIOD同源物mPER2的PAS结构域片段的晶体结构。 mPER2结构显示出与dPER不同的二聚体界面,其通过包含色氨酸419的PAS-Bβ-折叠表面(相当于Trp482dPER)的相互作用得以稳定。我们已经通过定点诱变使用分析凝胶过滤,分析超速离心和免疫共沉淀实验对dPER和mPER2的同二聚体相互作用进行了验证和定量分析。此外,我们通过酵母双杂交实验表明,dPER的PAS-Bβ-折叠表面介导了与TIMELESS(dTIM)的相互作用。我们的研究揭示了dPER及其哺乳动物同源物mPER2的同二聚体PAS域相互作用之间的定量和定性差异。此外,我们将PAS-Bβ-sheet表面鉴定为介导哺乳动物系统中mPER2均二聚和果蝇系统中dPER-dTIM异二聚体形成的多功能相互作用位点。

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