WormMine

WS294

Intermine data mining platform for C. elegans and related nematodes

Gene :

WormBase Gene ID  ? WBGene00003282 Gene Name  mir-54
Sequence Name  ? F09A5.5 Brief Description  mir-54 encodes a microRNA that belongs to a large group of microRNAs that include the stRNAs, lin-4 and let-7; this group of microRNAs is probably involved in posttranscriptional regulation of genes involved in development; mir-54 is expressed at all life stages.
Organism  Caenorhabditis elegans Automated Description  Expressed in several structures, including excretory system; hypodermis; neurons; and seam cell.
Biotype  SO:0001265 Genetic Position 
Length (nt)  ? 99
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1 Organism

Name Taxon Id
Caenorhabditis elegans 6239

1 Synonyms

Value
WBGene00003282

Genomics

2 Transcripts

WormMine ID Sequence Name Length (nt) Chromosome Location
Transcript:F09A5.5b F09A5.5b 24   X: 13145011-13145034
Transcript:F09A5.5a F09A5.5a 22   X: 13145055-13145076
 

Other

0 CDSs

1 RNAi Result

WormBase ID
WBRNAi00113349

10 Allele

Public Name
gk964260
gk964029
gk962707
gk964028
gk963810
gk963581
tm11275
nDf58
gk297939
gk886073

1 Chromosome

WormBase ID Organism Length (nt)
X Caenorhabditis elegans 17718942  

1 Chromosome Location


Feature . Primary Identifier
Start End Strand
WBGene00003282 13144996 13145094 -1

2 Data Sets

Name URL
WormBaseAcedbConverter  
C. elegans genomic annotations (GFF3 Gene)  

0 Downstream Intergenic Region

34 Expression Clusters

Regulated By Treatment Description Algorithm Primary Identifier
  Transcripts that showed significantly increased expression in ilc-17.1(syb5296) comparing to in N2 animals at L4 larva stage. DESeq2, fold change > 2, FDR < 0.05. WBPaper00066594:ilc-17.1(syb5296)_upregulated
Bacteria infection: Pseudomonas aeruginosa PA14. 24 hours of exposure. Small RNAs (21-26nt) that showed significantly increased expression after L4 animals were exposed to P .aeruginosa strain PA14 for 24 hours. DESeq2, FDR < 0.05 WBPaper00056868:P.aeruginosa_upregulated_smallRNA
  Potental DAF-12 target genes identified by ChIP-chip analysis performed on strain ALF4 [daf-12 Affymetrix TAS software that computed for each probe estimates of fold enrichment (in linear scale) over hybridization with input DNA. At the same time, TAS calculated for each probe a p-value by applying a Wilcoxon signed rank test. A threshold of 2.5 was selected, which corresponds to probe intensities approximately 2.5 times stronger on the ChIP array than on the Input array. Additional TAS threshold parameters were MinRun=180 bp, MaxGap=300 bp. TAS analysis showed that the selected threshold of 2.5 corresponds approximately to a p-value of 0.01. WBPaper00040221:DAF-12_target_ALF4
  Genes with small RNAs upregulated in all four meg-3(ax3055) meg-4(ax3052) strains comparing to N2 DESeq2 WBPaper00057162:meg-3_meg-4_upregulated_sRNA
  miRNA with decreased expression in N2 1-day post L4 adult hermaphrodite comparing to in N2 L4 larva. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_N2_adult_vs_L4_downregulated_adult
  Micro RNAs that showed significantly increased expression in day 8 adults comparing to in day 1 adults in intestine. Differentially expressed miRNAs were identified using DEGseq based on unique molecular identifier (UMI). A minimum UMI sum of 10 in 3 replicates was set as the threshold of expression. MiRNAs with more than five reads were defined as expressed. Differential expression of miRNAs was analysed by t-test (P value < 0.05 and fold-change > 1.5 or < 0.67) after Box-Cox transformation. MiRNA targets were identified by TargetScanWorm (Release 6.2) and Pearson Correlation Coefficient smaller than -0.2. WBPaper00066447:Day8_vs_Day1_upregulated_intestine
  Micro RNAs that showed significantly decreased expression in day 8 adults comparing to in day 1 adults in hypodermis. Differentially expressed miRNAs were identified using DEGseq based on unique molecular identifier (UMI). A minimum UMI sum of 10 in 3 replicates was set as the threshold of expression. MiRNAs with more than five reads were defined as expressed. Differential expression of miRNAs was analysed by t-test (P value < 0.05 and fold-change > 1.5 or < 0.67) after Box-Cox transformation. MiRNA targets were identified by TargetScanWorm (Release 6.2) and Pearson Correlation Coefficient smaller than -0.2. WBPaper00066447:Day8_vs_Day1_downregulated_hypodermis
  MicroRNAs that showed significantly decreased expression in alg-5(ram2), comparing to in N2. DESeq2, Fold change > 1.5. WBPaper00051404:alg-5(ram2)_downregulated_miRNA
  micro RNAs that exhibit changes in expression during adulthood (p-value < = 0.05). Authors searched for targets with seed matches of perfect Watson-Crick base-pair complementarity to positions two-eight of the miRNAs (counting from the 5' end). In order to consider these seed matches as potential target sites, authors required a minimal cut-off for binding specificity of the remainder of the miRNA to the target. Recent evidence suggests that this is not required for function in humans, but 3' binding does occur in studies of C. elegans. Authors used the scoring algorithm from Robins et al. (2005). The binding cut-off is determined by creating a second-order Markov model of the background for the 3' UTRs. The cut off was p-value < = 0.05. WBPaper00028344:adult_expr_change
  miRNA that showed increased expression after 20mM nicotine treatment Statistical analysis was based on t-test for independent samples via SPSS. The results were further narrowed based on two criteria. Only the genes whose expression changed with a P < 0.05 and a fold change > 0.5, when compared to control, were considered as differentially expressed. Fold change was calculated as 2**(DeltaCt(treatment)-DeltaCt(control))-1. DeltaCt = Ct(miRNA)-Ct(aveMRNA). WBPaper00042480:20mM_nicotine_upregulated
  miRNAs that showed increased expression in 1 day post L4 adult hermaphrodite eat-2(ad1116) comparing to in N2. A fold change >= 1.5 with a minimum read count of >= 10 were used to filter the differentially expressed miRNA. The p-value cutoff was set at p <= 0.05 based on Kals Z test statistical. WBPaper00046156:eat-2(ad1116)_Day1_upregulated
  miRNAs that showed decreased expression in 8 days post L4 adult hermaphrodite eat-2(ad1116) comparing to in N2. A fold change >= 1.5 with a minimum read count of >= 10 were used to filter the differentially expressed miRNA. The p-value cutoff was set at p <= 0.05 based on Kals Z test statistical. WBPaper00046156:eat-2(ad1116)_Day8_downregulated
  miRNA with increased expression in N2 1-day post L4 adult hermaphrodite comparing to in N2 L4 larva. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_N2_adult_vs_L4_upregulated_adult
  miRNA with decreased expression in N2 L1 larva comparing to in N2 embryo. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_N2_L1_vs_embryo_downregulated_adult
  MicroRNAs that showed significantly decreased expression in alg-2(ok304), comparing to in N2. DESeq2, Fold change > 1.5. WBPaper00051404:alg-2(ok304)_downregulated_miRNA
  MicroRNAs that showed significantly increased expression in alg-2(ok304), comparing to in N2. DESeq2, Fold change > 1.5. WBPaper00051404:alg-2(ok304)_upregulated_miRNA
  MicroRNAs that showed significantly decreased expression in alg-5(tm1163), comparing to in N2. DESeq2, Fold change > 1.5. WBPaper00051404:alg-5(tm1163)_downregulated_miRNA
  miRNA with decreased expression in prg-1(wm161) L1 larva comparing to in prg-1(wm161) embryo. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_L1_vs_embryo_downregulated_adult
Heat Shock: 35C 4 hours at L4 larva stage. Micro RNAs that showed significantly decreased expression after L4 larva N2 animals were heat stressed at 35C for 4 hours DESeq2 WBPaper00057154:HeatShock_downregulated_miRNA
  miRNA with increased expression in prg-1(wm161) comparing to in N2. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_upregulated_embryo
  miRNA with increased expression in prg-1(wm161) comparing to in N2. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_upregulated_L2
  miRNAs with age dependent abundance in wild type animals. Details available in Supplementary material of the paper. Diff Exp, is the approximate ratio of expression comparing Young to Old animals (11 day difference in age). The raw p-value is for the null hypothesis that the Diff exp Ratio = 1 (based on robust inference - see supplemental information) and the associated 95% CI of the ratio. WBPaper00042527:age_dependent_miRNA
  Micro RNAs that showed significantly increased expression in day 8 adults comparing to in day 1 adults in body wall muscle. Differentially expressed miRNAs were identified using DEGseq based on unique molecular identifier (UMI). A minimum UMI sum of 10 in 3 replicates was set as the threshold of expression. MiRNAs with more than five reads were defined as expressed. Differential expression of miRNAs was analysed by t-test (P value < 0.05 and fold-change > 1.5 or < 0.67) after Box-Cox transformation. MiRNA targets were identified by TargetScanWorm (Release 6.2) and Pearson Correlation Coefficient smaller than -0.2. WBPaper00066447:Day8_vs_Day1_upregulated_BodyWallMuscle
  MicroRNAs that showed significantly decreased expression in Day 5 (5-days post-L4) vs. Day 0 (L4 larva) of adulthood mir-71(n4115) animals. Differential expression for both small RNA- and mRNA-seq data was tested using DESeq2; P-values were adjusted for multiple testing by Benjamini-Hochberg method. WBPaper00053318:Aging_downregulated_miRNA_mir-71(n4115)
  MicroRNAs that showed significantly decreased expression in Day 5 (5-days post-L4) vs. Day 0 (L4 larva) of adulthood N2 animals. Differential expression for both small RNA- and mRNA-seq data was tested using DESeq2; P-values were adjusted for multiple testing by Benjamini-Hochberg method. WBPaper00053318:Aging_downregulated_miRNA_N2
  MicroRNAs that showed significantly increased expression in alg-5(ram2), comparing to in N2. DESeq2, Fold change > 1.5. WBPaper00051404:alg-5(ram2)_upregulated_miRNA
  miRNA with increased expression in prg-1(wm161) comparing to in N2. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_upregulated_L1
  miRNA with increased expression in prg-1(wm161) comparing to in N2. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_upregulated_L3
  miRNA with increased expression in prg-1(wm161) comparing to in N2. DEGseq and GFOLD were used to analyze miRNAs expression. Authors chose miRNAs which had more than two-fold difference in expression (P < 0.001, q < 0.01 of Storey) from DEGseq, and miRNAs which had more than two-fold difference in expression (GFOLD score > 0 for up-regulation and GFOLD score < 0 for down-regulation) from GFOLD outcomes. Then authors obtained the intersection of up-regulated miRNAs and down-regulated miRNAs for each stage from the chosen miRNAs, respectively. WBPaper00045316:miRNA_prg-1_upregulated_L4
Bacteria infection: Pseudomonas aeruginosa PA14 miRNAs up regulated by Pseudomonas aeruginosa infection. N.A. WBPaper00046303:P.aeruginosa_upregulated_miRNA

5 Expression Patterns

Remark Reporter Gene Primary Identifier Pattern Subcellular Localization
    Expr9257 miR-54-56 GFP reporter was restricted in expression to anterior and ventral cells identified as neurons, tail hypodermal cells, and cells of the excretory system.  
Picture: Fig. 4A-D.   Expr8594 mir-54/55/56::gfp was detected in the cell nuclei of essentially all somatic cells when driven by a region extending 6.0 kb upstream from the mir-54 coding sequence. Expression was first observed in the 28-cell stage embryo, weakly and diffusely within nuclei of all somatic cells. The expression then became strong from 200-cell stage onward and persisted throughout embryogenesis, larval stages and adulthood. Expressed weakly and diffusely within nuclei of all somatic cells.
    Expr8459 Expression seen from mid embryos to adulthood. Expressed strongly in nerve in head (amphid) and tail. Weak expression in external vulval cells, dnc and vnc is also detected.  
    Expr2484 Intense signals were detected in embryos, larval stages (L1, L2, L3, L4), adults, and glp-4(bn2) adults.  
    Expr10909    

0 GO Annotation

0 Homologues

1 Locations


Feature . Primary Identifier
Start End Strand
WBGene00003282 13144996 13145094 -1

0 Ontology Annotations

0 Regulates Expr Cluster

1 Sequence

Length
99

1 Sequence Ontology Term