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Coexpression cluster:C238

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Full id: C238_stomach_gall_breast_duodenum_temporal_MCF7_smallcell



Phase1 CAGE Peaks

Hg19::chr10:90424196..90424203,+p1@LIPF
Hg19::chr10:90429642..90429650,+p@chr10:90429642..90429650
+
Hg19::chr10:90433455..90433459,+p@chr10:90433455..90433459
+
Hg19::chr10:90438367..90438370,+p@chr10:90438367..90438370
+
Hg19::chr11:1151573..1151590,+p1@MUC5AC
Hg19::chr11:1212843..1212881,+p2@MUC5AC
Hg19::chr11:1213314..1213323,+p7@uc001lsz.2
Hg19::chr11:1213349..1213360,+p4@uc001lsz.2
Hg19::chr11:1213461..1213476,+p1@uc001lsz.2
Hg19::chr11:1213502..1213512,+p6@uc001lsz.2
Hg19::chr11:1213519..1213539,+p3@uc001lsz.2
Hg19::chr11:124622083..124622095,-p1@VSIG2
Hg19::chr11:59612969..59612994,-p1@GIF
Hg19::chr11:60970984..60970989,+p1@PGA3
Hg19::chr13:114312512..114312513,-p1@ATP4B
Hg19::chr17:10707410..10707421,-p2@LOC100289255
Hg19::chr17:33934627..33934631,+p@chr17:33934627..33934631
+
Hg19::chr17:72428429..72428461,+p@chr17:72428429..72428461
+
Hg19::chr18:19748402..19748420,-p@chr18:19748402..19748420
-
Hg19::chr18:19748421..19748445,-p@chr18:19748421..19748445
-
Hg19::chr18:2984886..2984895,-p@chr18:2984886..2984895
-
Hg19::chr19:36054555..36054561,-p1@ATP4A
Hg19::chr1:206317450..206317478,+p2@CTSE
Hg19::chr1:206317482..206317491,+p5@CTSE
Hg19::chr1:206317499..206317506,+p7@CTSE
Hg19::chr1:206317511..206317522,+p4@CTSE
Hg19::chr1:206317523..206317535,+p3@CTSE
Hg19::chr1:206317546..206317580,+p1@CTSE
Hg19::chr1:206317591..206317601,+p6@CTSE
Hg19::chr1:206331238..206331251,+p@chr1:206331238..206331251
+
Hg19::chr1:206331270..206331279,+p@chr1:206331270..206331279
+
Hg19::chr1:230883185..230883196,+p2@CAPN9
Hg19::chr20:52687046..52687058,-p7@BCAS1
Hg19::chr21:35736302..35736315,+p1@KCNE2
Hg19::chr21:43770332..43770340,-p@chr21:43770332..43770340
-
Hg19::chr21:43771096..43771112,-p1@TFF2
Hg19::chr21:43771259..43771274,-p4@TFF2
Hg19::chr21:43786634..43786650,-p1@TFF1
Hg19::chr2:69180018..69180036,-p1@GKN2
Hg19::chr2:69180052..69180063,-p2@GKN2
Hg19::chr2:69201753..69201776,+p1@GKN1
Hg19::chr3:10332416..10332446,-p3@GHRL
Hg19::chr3:109629878..109629886,+p@chr3:109629878..109629886
+
Hg19::chr3:137717571..137717591,+p7@CLDN18
Hg19::chr3:137717649..137717664,+p2@CLDN18
Hg19::chr3:137717669..137717676,+p5@CLDN18
Hg19::chr3:183629904..183629907,-p1@AK057243
Hg19::chr4:169013782..169013786,+p8@ANXA10
Hg19::chr6:30908747..30908757,+p1@DPCR1
Hg19::chr6:31154171..31154185,-p@chr6:31154171..31154185
-
Hg19::chr8:124955722..124955732,+p@chr8:124955722..124955732
+
Hg19::chr8:48911486..48911495,-p@chr8:48911486..48911495
-
Hg19::chr9:6248469..6248472,+p@chr9:6248469..6248472
+
Hg19::chrX:107288164..107288174,+p6@VSIG1
Hg19::chrX:107288197..107288212,+p2@VSIG1
Hg19::chrX:107288280..107288317,+p1@VSIG1
Hg19::chrX:107288318..107288331,+p4@VSIG1
Hg19::chrX:107288353..107288356,+p8@VSIG1


Enriched pathways on this co-expression cluster<b>Summary:</b><br>Canonical pathway gene sets were compiled from Reactome, Wikipathways and KEGG. For the major signaling pathways, the transcriptionally-regulated genes (downstream targets) were obtained from Netpath. Combined, the canonical pathways and downstream targets totaled 489 human gene sets. The corresponding M. musculus gene sets were inferred by homology using the HomoloGene database. Enrichment for each of the canonical 489 pathways and gene sets included in the co-expression cluster was assessed by the hypergeometric probability. The resulting P values were also then adjusted by the Benjamini-Hochberg method for multiple comparisons.<br><b>Analyst: </b>Emmanuel Dimont<br><br>link to source dataset<br>data


No results for this coexpression

Enriched Gene Ontology terms on this co-expression cluster<b>Summary:</b> Results for GOStat analysis on co-expressed clusters. Each cluster with promoters mapping to at least two different genes was analysed with GOStat (PMID: 14962934) with default parameter. <br><b>Analyst:</b> Erik Arner<br><br>link to source dataset<br>data


No GOStat results

Enriched sample ontology terms on this co-expression cluster<b>Summary:</b>To summarize promoter activities (expression profile of a TSS region) across ~1000 samples, we performed enrichment analysis based on FANTOM5 Sample Ontology (FF ontology). The question here is “in which type of samples the promoter is more active”. To answer this question, we compared expressions (TPMs) in the samples associated with a sample ontology term and the rest of the samples by using the Mann-Whitney rank sum test. To summarize ontologies enriched in this co-expression cluster, we ran the same analysis on an averaged expression profile of all promoters that make up. <b>Analyst:</b> Hideya Kawaji <br><br>links to source dataset<br><br>cell_data<br>uberon_data<br>disease_data<br>


Cell Type
Ontology termp-valuen

Uber Anatomy
Ontology termp-valuen

Disease
Ontology termp-valuen


Overrepresented TFBS (DNA) motifs on this co-expression cluster<b>Summary:</b>The values shown are the p-values for overrepresentation of the motif in this coexpression cluster. So a small p-value means a strong overrepresentation. <b>Analyst:</b> Michiel de Hoon <br><br>link to source data <br> Novel motifs <br>data <br><br> Jaspar motifs <br>data


Novel motifs



JASPAR motifs

Motifs-log10(p-value)

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ENCODE TF ChIP-seq peak enrichment analysis<b>Summary:</b> For each TF and each co-expression cluster, the number of promoters with ENCODE TF ChIP signal was compared with the rest of promoters from the robust set using Fisher's exact test. Clusters with significant ChIP enrichment (q <= 0.05) after Benjamini-Hochberg correction were retained. <br><b>Analyst:</b> Erik Arner<br><br>link to source dataset<br><br>data


No analysis results for this cluster

Relative expression of the co-expression cluster<b>Summary:</b>Co-expression clusters are compared against FANTOM5 samples to obtain relative expression. <br><b>Analyst:</b>NA<br><br>link to data source<br> data


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