2013
DOI: 10.1186/1752-0509-7-101
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Walking the interactome to identify human miRNA-disease associations through the functional link between miRNA targets and disease genes

Abstract: BackgroundMicroRNAs (miRNAs) are important post-transcriptional regulators that have been demonstrated to play an important role in human diseases. Elucidating the associations between miRNAs and diseases at the systematic level will deepen our understanding of the molecular mechanisms of diseases. However, miRNA-disease associations identified by previous computational methods are far from completeness and more effort is needed.ResultsWe developed a computational framework to identify miRNA-disease associatio… Show more

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Cited by 220 publications
(162 citation statements)
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“…Higher-order regulation of subordinate miRNAs by upstream "master miRNAs" has begun to be described in cardiac tissue (1) and cancer (2) and may underlie the robustness of certain miRNA-based actions in health and disease. Computational approaches have been proposed to decipher systems-level regulatory motifs involving miRNAs (3,4), but these theories have been challenging to study experimentally (as reviewed by ref. 5).…”
Section: Introductionmentioning
confidence: 99%
“…Higher-order regulation of subordinate miRNAs by upstream "master miRNAs" has begun to be described in cardiac tissue (1) and cancer (2) and may underlie the robustness of certain miRNA-based actions in health and disease. Computational approaches have been proposed to decipher systems-level regulatory motifs involving miRNAs (3,4), but these theories have been challenging to study experimentally (as reviewed by ref. 5).…”
Section: Introductionmentioning
confidence: 99%
“…It is well known that miRNA mainly performs its regulatory functions through its targets (31). miRNAs also contribute to maintaining the balance among genes that regulate the cell fate, as well as their deregulation, which is a frequent hallmark in a variety of human malignancies.…”
Section: Discussionmentioning
confidence: 99%
“…In recent year, there are more and more Random Walk with Restart (RWR) based disease gene prioritization method [109][110][111][112][113][114], even though sometimes its results are similar with shortest path analysis [115]. It simulates a random walker, who starts from seed genes on the network and moves to its randomly chosen neighbors at each step [111].…”
Section: Random Walk With Restartmentioning
confidence: 99%