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QPCA: a scalable assay to measure the perturbation of protein-protein interactions in living cells

机译:QPCA:一种可扩展的测定方法,用于测量活细胞中蛋白质-蛋白质相互作用的扰动

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摘要

One of the most important challenges in systems biology is to understand how cells respond to genetic and environmental perturbations. Here we show that the yeast DHFR-PCA, coupled with high-resolution growth profiling (DHFR-qPCA), is a straightforward assay to study the modulation of protein-protein interactions (PPIs) in vivo as a response to genetic, metabolic and drug perturbations. Using the canonical Protein Kinase A (PKA) pathway as a test system, we show that changes in PKA activity can be measured in living cells as a modulation of the interaction between its regulatory (Bcy1) and catalytic (Tpk1 and Tpk2) subunits in response to changes in carbon metabolism, caffeine and methyl methanesulfonate (MMS) treatments and to modifications in the dosage of its enzymatic regulators, the phosphodiesterases. Our results show that the DHFR-qPCA is easily implementable and amenable to high-throughput. The DHFR-qPCA will pave the way to the study of the effects of drug, genetic and environmental perturbations on in vivo PPI networks, thus allowing the exploration of new spaces of the eukaryotic interactome.
机译:系统生物学中最重要的挑战之一是了解细胞如何应对遗传和环境扰动。在这里,我们显示酵母DHFR-PCA与高分辨率生长谱(DHFR-qPCA)结合使用,是一种简单的测定方法,用于研究体内对蛋白质,蛋白质相互作用(PPI)的调节,以响应遗传,代谢和药物扰动。使用规范的蛋白激酶A(PKA)途径作为测试系统,我们显示可以在活细胞中测量PKA活性的变化,作为对其调节(Bcy1)和催化性(Tpk1和Tpk2)亚基之间相互作用的调节改变碳代谢,咖啡因和甲磺酸甲酯(MMS)的处理方法,以及改变其酶促调节剂磷酸二酯酶的剂量。我们的结果表明,DHFR-qPCA易于实施并且适合高通量。 DHFR-qPCA将为研究药物,遗传和环境扰动对体内PPI网络的影响铺平道路,从而允许探索真核相互作用组的新空间。

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  • 来源
    《Molecular BioSystems》 |2013年第1期|36-43|共8页
  • 作者单位

    Institut de Biologie Integrative et des Systemes (IBIS), Universite Laval, Quebec,Canada Departement de Biologie, Universite Laval, Quebec, Canada PROTEO, The Quebec Research Network on Protein Function, Structure and Engineering, Universite Laval, Quebec, Canada;

    Institut de Biologie Integrative et des Systemes (IBIS), Universite Laval, Quebec,Canada Departement de Biologie, Universite Laval, Quebec, Canada PROTEO, The Quebec Research Network on Protein Function, Structure and Engineering, Universite Laval, Quebec, Canada;

    Institut de Biologie Integrative et des Systemes (IBIS), Universite Laval, Quebec,Canada Departement de Biologie, Universite Laval, Quebec, Canada PROTEO, The Quebec Research Network on Protein Function, Structure and Engineering, Universite Laval, Quebec, Canada;

    Institut de Biologie Integrative et des Systemes (IBIS), Universite Laval, Quebec,Canada Departement de Biologie, Universite Laval, Quebec, Canada PROTEO, The Quebec Research Network on Protein Function, Structure and Engineering, Universite Laval, Quebec, Canada;

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