Project description:Characterization of gene expression for a panel of 50 in vitro and in vivo models of glioblastoma (GBM). Models include subcutaneously established xenograft lines, orthotopically grown subcutaneously established xenograft lines, serum derived cell lines and stem cell media derived cell lines. Multiple replicates of each line were run on different dates to determine the effect of batch and processing date on reproducibility of gene expression profiles 117 samples analyzed from 50 distinct GBM xenografts or cell lines. Biological replicates from the same passage number were included for many, but not all, of the lines.
Project description:Characterization of gene expression for a panel of 50 in vitro and in vivo models of glioblastoma (GBM). Models include subcutaneously established xenograft lines, orthotopically grown subcutaneously established xenograft lines, serum derived cell lines and stem cell media derived cell lines. Multiple replicates of each line were run on different dates to determine the effect of batch and processing date on reproducibility of gene expression profiles
Project description:Regulation of Megakaryocytic differentiation in Cell Line Models by Dynamic Combinatorial Interactions of RUNX1 with Its Cooperating Partners
Project description:This SuperSeries is composed of the following subset Series: GSE24777: Regulation of Megakaryocytic differentiation in Cell Line Models by Dynamic Combinatorial Interactions of RUNX1 with Its Cooperating Partners GSE24778: Expresssion data in K562 cells, before and after TPA induction and including a RUNX1 knockout construct or a control structure Refer to individual Series
Project description:Regulation of Megakaryocytic differentiation in Cell Line Models by Dynamic Combinatorial Interactions of RUNX1 with Its Cooperating Partners Examination of RUNX1 binding in K562 cells, before and following TPA induction and CMK cells. Examination of GATA1 and FOS binding and H3K4me1 and H3K27me3 modification levels following TPA induction in K562 cells.
Project description:To investigate the effect of glioblastoma secretome in activating tau pathology, Glioblastoma cell line secretome were prefractionated with gel filtration chromatography. Secretome analyzed by LC-MS/MS and identified targets using PSM count quantitation.
Project description:With HiRIEF LC-MS/MS shotgun proteomics, we analysed 6 patient-derived glioblastoma stem cells (BT stem cells) and compared them to an astrocyte line (CliniSciences, Guidonia Montecelio, Italy) and a more differentiated glioblastoma cell line (T98G). Each of the 8 cell line sample was run in triplicates in a total of three TMT10 sets, assigning each replicate in a separate TMT10 set, using 2 internal standards per set. The three TMT10 sets were ran in two experiments, first on immobilized pH gradient (IPG) 3-10 isoelectric focusing (IEF) strips, and then on IPG 3.7-4.9 IEF strips.