Title of article
Integrated Systems Approach Identifies Genetic Nodes and Networks in Late-Onset Alzheimer’s Disease
Author/Authors
Bin Zhang، نويسنده , , Chris Gaiteri، نويسنده , , Liviu-Gabriel Bodea، نويسنده , , Zhi Wang، نويسنده , , Joshua McElwee، نويسنده , , Alexei A. Podtelezhnikov، نويسنده , , Chunsheng Zhang، نويسنده , , Tao Xie، نويسنده , , Linh Tran، نويسنده , , Radu Dobrin، نويسنده , , Eugene Fluder، نويسنده , , Bruce Clurman، نويسنده , , Stacey Melquist، نويسنده , , Manikandan Narayanan، نويسنده , , Christine Suver، نويسنده , , Hardik Shah، نويسنده , , Milind Mahajan، نويسنده , , Tammy Gillis، نويسنده , , Jayalakshmi Mysore، نويسنده , , Marcy E. MacDonald، نويسنده , , et al.، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2013
Pages
14
From page
707
To page
720
Abstract
The genetics of complex disease produce alterations in the molecular interactions of cellular pathways whose collective effect may become clear through the organized structure of molecular networks. To characterize molecular systems associated with late-onset Alzheimer’s disease (LOAD), we constructed gene-regulatory networks in 1,647 postmortem brain tissues from LOAD patients and nondemented subjects, and we demonstrate that LOAD reconfigures specific portions of the molecular interaction structure. Through an integrative network-based approach, we rank-ordered these network structures for relevance to LOAD pathology, highlighting an immune- and microglia-specific module that is dominated by genes involved in pathogen phagocytosis, contains TYROBP as a key regulator, and is upregulated in LOAD. Mouse microglia cells overexpressing intact or truncated TYROBP revealed expression changes that significantly overlapped the human brain TYROBP network. Thus the causal network structure is a useful predictor of response to gene perturbations and presents a framework to test models of disease mechanisms underlying LOAD.
Journal title
CELL
Serial Year
2013
Journal title
CELL
Record number
1021693
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