construction and analysis of tissue-specific protein-protein interaction networks in humans
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abstract
we have studied the changes in protein-protein interaction network of 38 different tissues of the human body. 123 gene expression samples from these tissues were used to construct human protein-protein interaction network. this network is then pruned using the gene expression samples of each tissue to construct different protein-protein interaction networks corresponding to different studied tissues of the body. this study is helpful for understanding how human protein interactions change in different tissues. in this way, similar tissues of the body and special functions of each tissue, corresponding to their individualized subnetworks, can be identified. we have calculated graph parameters for studying these protein-protein interaction networks and hubs and non-hubs of the studied protein-protein interaction networks are identified. we found a common subnetwork among protein-protein interaction networks of the studied tissues and a tree of tissue similarities has been constructed. we have also found that average correlation coefficient of hubs in human protein-protein interaction networks obeys a normal-like distribution though it is not possible to separate party and date hubs.
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protein-protein interaction networks (ppi) and complex diseases
normal 0 false false false en-us x-none ar-sa microsoftinternetexplorer4 the physical interaction of proteins which lead to compiling them into large densely connected networks is a noticeable subject to investigation. protein interaction networks are useful because of making basic scientific abstraction and improving biological and biomedical applications. based on principle roles of proteins ...
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Journal title:
progress in biological sciencesPublisher: university of tehran
ISSN 1016-1058
volume 2
issue 2 2013
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