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Dynamic visualization of expressed gene networks in living cells

机译:活细胞中表达基因网络的动态可视化

摘要

The present invention provides functional annotation of novel genes by detection of interactions of their encoded proteins with known proteins followed by assays to validate that the gene participates in a specific cellular function. The instant invention also provides an experimental strategy that allows for detection of protein interactions and functional assays with a single reporter system. Interactions among network component proteins are detected and probed with stimulators and inhibitors of the network and subcellular location of the interacting proteins is determined. Additionally, applicants' use this strategy to map a signal transduction network that controls the G0 to G1 transition in eukaryotes. Analysis of 148 combinations of 65 protein pairs in mammalian cells allows applicants' to propose a model of network architecture. The results demonstrate the feasibility of employing this strategy in genome-wide functional annotation efforts.
机译:本发明通过检测其编码的蛋白质与已知蛋白质的相互作用,随后进行测定以验证该基因参与特定的细胞功能,来提供新基因的功能注释。本发明还提供了一种实验策略,其允许用单个报告系统检测蛋白质相互作用和功能测定。检测网络组分蛋白之间的相互作用,并用刺激剂和网络抑制剂进行探测,并确定相互作用蛋白的亚细胞位置。此外,申请人使用此策略来映射一个信号转导网络,该网络控制真核生物中G 0 到G 1 的转变。对哺乳动物细胞中65种蛋白质对的148种组合进行分析后,申请人可以提出一个网络架构模型。结果证明了在全基因组功能注释工作中采用该策略的可行性。

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