Initial large-scale exploration of protein-protein interactions in human brain.

Jake Y Chen, Andrey Y Sivachenko, Russell Bell, Cornelia Kurschner, Irene Ota, Sudhir Sahasrabudhe
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Abstract

Study of protein interaction networks is crucial to post-genomic systems biology. Aided by high-throughput screening technologies, biologists are rapidly accumulating protein-protein interaction data. Using a random yeast two-hybrid (R2H) process, we have performed large-scale yeast two-hybrid searches with approximately fifty thousand random human brain cDNA bait fragments against a human brain cDNA prey fragment library. From these searches, we have identified 13,656 unique protein-protein interaction pairs involving 4,473 distinct known human loci. In this paper, we have performed our initial characterization of the protein interaction network in human brain tissue. We have classified and characterized all identified interactions based on Gene Ontology (GO) annotation of interacting loci. We have also described the "scale-free" topological structure of the network.

对人脑中蛋白质-蛋白质相互作用的初步大规模探索。
蛋白质相互作用网络的研究对后基因组系统生物学至关重要。在高通量筛选技术的帮助下,生物学家正在迅速积累蛋白质-蛋白质相互作用数据。利用随机酵母双杂交(R2H)过程,我们对大约5万个随机人脑cDNA诱饵片段与人脑cDNA猎物片段库进行了大规模的酵母双杂交搜索。从这些搜索中,我们已经确定了13,656个独特的蛋白质-蛋白质相互作用对,涉及4,473个不同的已知人类基因座。在本文中,我们已经完成了我们的初步表征蛋白质相互作用网络在人脑组织。我们基于相互作用位点的基因本体(Gene Ontology, GO)注释对所有已识别的相互作用进行了分类和表征。我们还描述了网络的“无标度”拓扑结构。
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