Project description:The samples were collected after the Regional ethical review board approval (Reference No: S-01127). Seventy four samples were successfully analyzed by cDNA microarray based CGH. Clinicopathological characteristics of the patients included in this study have previously been published {Wang, 2004 907 /id}.
Project description:Fusarium oxysporum is an worldwide economically important plant fungi pathogen that can cause vascular wilt disease on a wide variety of hosts (Williamson et al., 2007). In recent years, extensive research has been conducted to interpret transcriptional regulation of virulence genes in FO. (Weiberg et al., 2013;Brandhoff et al., 2017;Wang et al., 2017;Wang et al., 2018;Porquier et al., 2019). However, gaps in the protein level studies limited deeper understanding of molecular basis of FO. pathogenesis. In this study, we conducted the first proteome-wide analysis in FO.
Project description:To investigate the effect of Smchd1 ablation on clustered Pcdh and Hox genes, we generated ChIP-seq profiles of EZH2 in clonal neural progenitor cells (NPCs) from Smchd1+/+ (wild-type, WT) and Smchd1-/- mouse embryonic stem (ES) cells. We also reanalyzed previously published Hi-C data (GSE99991) (Wang et al., 2018, Cell) in these two cell lines.
Project description:We re-analyzed the deep proteome atlas of 29 paired healthy human from the published paper (Wang, Dongxue, et al. Molecular systems biology 15.2 (2019)) to identify missing proteins.
Project description:ABSCISIC ACID INSENSITIVE3 (ABI3) is a transcription factor that is a member of the B3 domain family and is involved in seed development. To understand how it controls development, we mapped genome-wide binding sites by ChIP-chip and combined this data with transcriptomic data obtained by microarrays. Ran Tian, Fangfang Wang, Qiaolin Zheng, Venus Niza, A. Bruce Downie and Sharyn E. Perry (2020)
Project description:Investigation of whole genome gene expression level changes in a Tim-3 knockdown RAW264.7 cell, compared to control siRNA transfected RAW264.7 cell. The Tim-3 knockdown of this cell render it hyper-reactive to TLR stimulation. Tim-3 knockdown analyzed in this study are further described in Li Y, Feng J, Geng S, Geng S, Wei H, Chen G, Li X, Wang L, Wang R, Peng H, Han G, Shen B, Li Y. 2011. The N- and C-terminal carbohydrate recognition domains of galectin-9 contribute differently to its multiple functions in innate immunity and adaptive immunity. Mol Immunol. 48(4):670-7. (PID 21146220)