Wei Niu, Ph.D.
Affiliations: | 2007 | Institute for Cellular and Molecular Biology | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
proteomics, bioinformatics, systems biologyGoogle:
"Wei Niu"Mean distance: 9.72
Parents
Sign in to add mentorEdward M. Marcotte | grad student | 2007 | UT Austin | |
(Development of imaging-based high-throughput genetic assays and genomic evaluation of yeast gene function in cell cycle progression.) |
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Publications
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Araya CL, Kawli T, Kundaje A, et al. (2015) Corrigendum: Regulatory analysis of the C. elegans genome with spatiotemporal resolution. Nature |
Boyle AP, Araya CL, Brdlik C, et al. (2014) Comparative analysis of regulatory information and circuits across distant species. Nature. 512: 453-6 |
Araya CL, Kawli T, Kundaje A, et al. (2014) Regulatory analysis of the C. elegans genome with spatiotemporal resolution. Nature. 512: 400-5 |
Brdlik CM, Niu W, Snyder M. (2014) Chromatin immunoprecipitation and multiplex sequencing (ChIP-Seq) to identify global transcription factor binding sites in the nematode Caenorhabditis elegans. Methods in Enzymology. 539: 89-111 |
Willsey AJ, Sanders SJ, Li M, et al. (2013) Coexpression networks implicate human midfetal deep cortical projection neurons in the pathogenesis of autism. Cell. 155: 997-1007 |
Fontrodona L, Porta-de-la-Riva M, Morán T, et al. (2013) RSR-2, the Caenorhabditis elegans ortholog of human spliceosomal component SRm300/SRRM2, regulates development by influencing the transcriptional machinery. Plos Genetics. 9: e1003543 |
Kudron M, Niu W, Lu Z, et al. (2013) Tissue-specific direct targets of Caenorhabditis elegans Rb/E2F dictate distinct somatic and germline programs. Genome Biology. 14: R5 |
Sarov M, Murray JI, Schanze K, et al. (2012) A genome-scale resource for in vivo tag-based protein function exploration in C. elegans. Cell. 150: 855-66 |
Niu W, Lu ZJ, Zhong M, et al. (2011) Diverse transcription factor binding features revealed by genome-wide ChIP-seq in C. elegans. Genome Research. 21: 245-54 |
Niu W, Hart GT, Marcotte EM. (2011) High-throughput immunofluorescence microscopy using yeast spheroplast cell-based microarrays. Methods in Molecular Biology (Clifton, N.J.). 706: 83-95 |