Scientific

MK5 Microarray Data


Affected Genes - Ontology Breakdown - Gene Enrichment - Proteome Analysis

These are the micro-array results of a differential gene expression microarray experiments and the subsequent analysis steps performed on them. The up/down- regulation ratio was obtained by measuring WT cells against MK5 activated cells. See material and methods for technical information as well as the data usage policy.

Affected Genes


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Ratio Regulation description Class Gene Ontology Gene Accession Minimum Ratio Maximum Ratio
Results: HTML CSV LaTeX Showing element 1 to 50 of 1501 in total
Regulation: up
\def\wcA{0.2\textwidth} \def\wcB{0.2\textwidth} \def\wcC{0.2\textwidth} \def\wcD{0.2\textwidth} \begin{longtable}{|c|c|c|c|} \hline \parbox{\wcA}{\vspace{3pt}\noindent Ratio\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent description\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent Class\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent Gene Ontology\vspace{3pt}}\\ \hline \hline \multirow{12}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.07618\vspace{3pt}}}&\multirow{12}{*}{\parbox{\wcB}{\vspace{3pt}\noindent U2 small nuclear ribonucleoprotein auxiliary factor 35 kDa subunit- related protein 2 (U2(RNU2) small nuclear RNA auxiliary factor 1-like 2) (CCCH type zinc finger, RNA-binding motif and serine/arginine rich protein 2) (Renal carcinoma antigen NY-REN-20). \vspace{3pt}}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent G-protein coupled receptor protein signaling pathway\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent RNA splicing\vspace{3pt}}\\\cline{3-4} &&\multirow{4}{*}{\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent integral to membrane\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent nucleus\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent ribonucleoprotein complex\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent U12-dependent spliceosome\vspace{3pt}}\\\cline{3-4} &&\multirow{6}{*}{\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent metal ion binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent nucleic acid binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent nucleotide binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent rhodopsin-like receptor activity\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent RNA binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent zinc ion binding\vspace{3pt}}\\\hline \multirow{3}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.10233\vspace{3pt}}}&\multirow{3}{*}{\parbox{\wcB}{\vspace{3pt}\noindent GAS2-like protein 1 (Growth arrest-specific 2-like 1) (GAS2-related protein on chromosome 22) (GAR22 protein). \vspace{3pt}}}&\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent cell cycle arrest\vspace{3pt}}\\\cline{3-4} &&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent cytoplasm\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent cytoskeleton\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.10831\vspace{3pt}}}&\multirow{2}{*}{\parbox{\wcB}{\vspace{3pt}\noindent Procollagen C-endopeptidase enhancer 1 precursor (Procollagen COOH- terminal proteinase enhancer 1) (Procollagen C-proteinase enhancer 1) (PCPE-1) (Type I procollagen COOH-terminal proteinase enhancer) (Type 1 procollagen C-proteinase enhancer protein). \vspace{3pt}}}&\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent multicellular organismal development\vspace{3pt}}\\\cline{3-4} &&\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent collagen binding\vspace{3pt}}\\\hline \multirow{16}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.10867\vspace{3pt}}}&\multirow{16}{*}{\parbox{\wcB}{\vspace{3pt}\noindent Somatoliberin precursor (Growth hormone-releasing factor) (GRF) (Growth hormone-releasing hormone) (GHRH) (Somatocrinin) (Somatorelin) (Sermorelin). \vspace{3pt}}}&\multirow{11}{*}{\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent adenohypophysis development\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent cell-cell signaling\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent elevation of cytosolic calcium ion concentration\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent G-protein signaling, adenylate cyclase activating pathway\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent growth hormone secretion\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent positive regulation of body size\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent positive regulation of cAMP metabolic process\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent positive regulation of growth hormone secretion\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent positive regulation of hormone secretion\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent positive regulation of transcription\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent signal transduction\vspace{3pt}}\\\cline{3-4} &&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent extracellular region\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent terminal button\vspace{3pt}}\\\cline{3-4} &&\multirow{3}{*}{\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent growth hormone-releasing hormone activity\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent growth hormone-releasing hormone receptor binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent hormone activity\vspace{3pt}}\\\hline \multirow{7}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.10889\vspace{3pt}}}&\multirow{7}{*}{\parbox{\wcB}{\vspace{3pt}\noindent Nuclear receptor-binding factor 2 (NRBF-2) (Comodulator of PPAR and RXR). \vspace{3pt}}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent regulation of transcription, DNA-dependent\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent transcription\vspace{3pt}}\\\cline{3-4} &&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent cytoplasm\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent nucleus\vspace{3pt}}\\\cline{3-4} &&\multirow{3}{*}{\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent protein dimerization activity\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent sequence-specific DNA binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent transcription factor activity\vspace{3pt}}\\\hline \multirow{4}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.11519\vspace{3pt}}}&\multirow{4}{*}{\parbox{\wcB}{\vspace{3pt}\noindent eukaryotic translation initiation factor 4E family member 1B (EIF4E1B), mRNA \vspace{3pt}}}&\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent translational initiation\vspace{3pt}}\\\cline{3-4} &&\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent cytoplasm\vspace{3pt}}\\\cline{3-4} &&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent RNA binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent translation initiation factor activity\vspace{3pt}}\\\hline \multirow{6}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 1.12417\vspace{3pt}}}&\multirow{6}{*}{\parbox{\wcB}{\vspace{3pt}\noindent Protein CutA precursor (Brain acetylcholinesterase putative membrane anchor) (Acetylcholinesterase-associated protein). \vspace{3pt}}}&\multirow{3}{*}{\parbox{\wcC}{\vspace{3pt}\noindent biological process\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent protein homooligomerization\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent protein localization\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent response to metal ion\vspace{3pt}}\\\cline{3-4} &&\parbox{\wcC}{\vspace{3pt}\noindent cellular component\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent membrane\vspace{3pt}}\\\cline{3-4} &&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent molecular function\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent enzyme binding\vspace{3pt}}\\\cline{4-4} &&&\parbox{\wcD}{\vspace{3pt}\noindent protein heterodimerization activity\vspace{3pt}}\\\hline nd{longtable}
Legend:
- The Ratio specifies how much this gene is up/down regulated. When up- or down-regulated must this value respectively be multiplied/divided to obtain the MK5 on concentration based on the MK5 off concentration.
- The Regulation specifies how this gene is affected when going from the MK5 off cells to the MK5 on cells.
- The Class refers to the ontology category, which can be molecular_function, biological_process or cellular_component.
- The Gene Ontology terms as linked to the specific gene.
- Gene is the ensembl human gene identifier measured by 1 or more probes on the microarray
- Accession is the GO accession key.
- Minimum Ratio is the lowest expected regulation ratio based on the replicate slides and a 95% symmetric confidence interval.
- Maximum Ratio is the highest expected regulation ratio based on the replicate slides and a 95% symmetric confidence interval.

- http://analysis.yellowcouch.org/