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Wing-Kin Sung
Researcher at National University of Singapore
Publications - 335
Citations - 28128
Wing-Kin Sung is an academic researcher from National University of Singapore. The author has contributed to research in topics: Gene & Genome. The author has an hindex of 64, co-authored 327 publications receiving 26116 citations. Previous affiliations of Wing-Kin Sung include University of Hong Kong & Yale University.
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PE-Assembler
TL;DR: A method that eschews the traditional graph-based approach in favor of a simple 3' extension approach that has potential to be massively parallelized and able to obtain assemblies that are more contiguous, complete and less error prone compared with existing methods is presented.
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A correlated motif approach for finding short linear motifs from protein interaction networks
TL;DR: The correlated motif approach outlined in this paper is able to find correlated linear motifs from sparse and noisy interaction data, which will expedite the discovery of novel linear binding motifs, and facilitate the studies of biological pathways mediated by them.
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MotifVoter: A novel ensemble method for fine-grained integration of generic motif finders
TL;DR: MotifVoter outperforms stand-alone motif finding methods and ensemble methods significantly on Tompa's benchmark, Escherichia coli, and ChIP-Chip datasets and can locate more than 95% of the binding sites found by its component motif finders.
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Rooted Maximum Agreement Supertrees
TL;DR: It is proved that MASP is NP-hard for any fixed $k \geq 3$ when $D$ is unrestricted, and also NP- hard forAny fixed $D \geqi 2$ when £k is unrestricted even if each input tree is required to contain at most three leaves.
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Decoding complex patterns of genomic rearrangement in hepatocellular carcinoma
Julio Fernandez-Banet,Nikki P. Lee,Kin Tak Chan,Huan Gao,Xiao Liu,Wing-Kin Sung,Winnie Tan,Sheung Tat Fan,Ronnie T.P. Poon,Shiyong Li,Keith A. Ching,Paul A. Rejto,Mao Mao,Zhengyan Kan +13 more
TL;DR: Integrative analysis identified a pattern of paired intra-chromosomal translocations flanking focal amplifications and asymmetrical patterns of copy number variation flanking breakpoints of translocations in HCC.