Organism : Clostridium acetobutylicum | Module List:
Module 281 Profile

GeneModule member RegulatorRegulator MotifMotif
Network Help

A network view of the module is created using cytoscapeWeb and enables dynamic, interactive exploration of the module properties. In this view, module member genes, motifs, and regulatory influences are represented as peripheral nodes connected to core module node via edges.

Module members are green circles, regulators are red triangles and motifs are blue diamonds. Selection of a node gives access to detailed information in a pop-up window, which allows dragging and pinning to compare multiple selections. Selecting module members will show information about the selected gene such as name, species and fucntions. Motif selection will show motif logo image and e-values. Bicluster selction will show expression profile and summary statistics for the module.

GeneModule member RegulatorRegulator MotifMotif
Regulators for Module 281

There are 12 regulatory influences for Module 281

Regulator Table (12)
Regulator Name Type
CAC1719 tf
CAC1941 tf
CAC3647 tf
CAC2113 tf
CAC1536 tf
CAC0977 tf
CAC3037 tf
CAC3611 tf
CAC2962 tf
CAC0457 tf
CAC2495 tf
CAC1340 tf

Regulator Help

For each module, single or AND logic connected regulatory influences are listed under the regulators tab. These regulatory influences are identified by Inferelator. Table shows name of the regulator and its type.

tf: Transcription factor

ef: Environmental factor

combiner: Combinatorial influence of a tf or an ef through logic gate. Table is sortable by clicking on the arrows next to column headers.

Motif information (de novo identified motifs for modules)

There are 2 motifs predicted.

Motif Table (2)
Motif Id e-value Consensus Motif Logo
7214 4.40e-05 .acctCCT.ttat
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7215 8.70e+03 gAgGAgGagA
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Motif Help

Transcription factor binding motifs help to elucidate regulatory mechanism. cMonkey integrates powerful de novo motif detection to identify conditionally co-regulated sets of genes. De novo predicted motifs for each module are listed in the module page as motif logo images along with associated prediction statistics (e-values). The main module page also shows the location of these motifs within the upstream sequences of the module member genes.

Motifs of interest can be broadcasted to RegPredict (currently only available for Desulfovibrio vulgaris Hildenborough) in order to compare conservation in similar species. This integrated motif prediction and comparative analysis provides an additional checkpoint for regulatory motif prediction confidence.

Motif e-value: cMonkey tries to identify two motifs per modules in the upstream sequences of the module member genes. Motif e-value is an indicative of the motif co-occurences between the members of the module.Smaller e-values are indicative of significant sequence motifs. Our experience showed that e-values smaller than 10 are generally indicative of significant motifs.

Functional Enrichment

Regulon 281 is enriched for following functions.

TIGRFam Enrichment Table

Function Name Function Type Unadjusted pvalue Benjamini& Hochberg pvalue Genes with function Method
DNA metabolism tigr mainrole 6.93e-04 1.26e-03 3/26
DNA replication, recombination, and repair tigr sub1role 4.93e-04 9.28e-04 3/26
Protein synthesis tigr mainrole 1.57e-03 2.59e-03 4/26

COG Enrichment Table

Function Name Function Type Unadjusted pvalue Benjamini& Hochberg pvalue Genes with function Method
Information storage and processing cog category 2.15e-03 4.04e-03 9/26
Translation, ribosomal structure and biogenesis cog subcategory 5.41e-03 9.68e-03 4/26
Replication, recombination and repair cog subcategory 1.26e-02 2.13e-02 3/26
Functions Help

Biological networks contain sets of regulatory units called functional modules that together play a role in regulation of specific functional processes. Connections between different modules in the network can help identify regulatory relationships such as hierarchy and epistasis. In addition, associating functions with modules enables putative assignment of functions to hypothetical genes. It is therefore essential to identify functional enrichment of modules within the regulatory network.

Functional annotations from single sources are often either not available or not complete. Therefore, we integrated KEGG pathway, Gene Ontology, TIGRFam and COG information as references for functional enrichment analysis.

We use hypergeometric p-values to identify significant overlaps between co-regulated module members and genes assigned to a particular functional annotation category. P-values are corrected for multiple comparisons by using Benjamini-Hochberg correction and filtered for p-values ≤ 0.05.

Network Portal presents functional ontologies from KEGG, GO, TIGRFAM, and COG as separate tables that include function name, type, corrected and uncorrected hypergeometric p-values, and the number of genes assigned to this category out of total number of genes in the module.

Members for Module 281

There are 26 genes in Module 281

Gene Member Table (26)
Name Common name Type Gene ID Chromosome Start End Strand Description TF
CAC0126 CAC0126 CDS None chromosome 138142 138480 + Uncharacterized conserved protein, YbaB family (NCBI ptt file) False
CAC0127 recR CDS None chromosome 138573 139169 + Recombination protein (recR) (NCBI ptt file) False
CAC0128 CAC0128 CDS None chromosome 139230 139490 + Hypothetical protein (NCBI ptt file) False
CAC0528 CAC0528 CDS None chromosome 609899 611377 + ABC transporter, ATPase component (two ATPase domains) (NCBI ptt file) False
CAC0965 CAC0965 CDS None chromosome 1110363 1111088 + 1-acyl-sn-glycerol-3-phosphate acyltransferase (NCBI ptt file) False
CAC0992 CAC0992 CDS None chromosome 1139445 1140056 + Hypothetical protein (NCBI ptt file) False
CAC1239 CAC1239 CDS None chromosome 1380453 1380713 + Predicted membrane protein (NCBI ptt file) False
CAC1240 maf CDS None chromosome 1380718 1381317 + Maf protein ortholog, putative inhibitor of septum formation (NCBI ptt file) False
CAC1251 rodA CDS None chromosome 1395591 1396712 + Cell division protein, rodA/ftsW/spoVE family (NCBI ptt file) False
CAC1274 rpsT CDS None chromosome 1417389 1417655 - Ribosomal protein S20 (NCBI ptt file) False
CAC1654 CAC1654 CDS None chromosome 1794345 1797275 + Zn-dependent metalloprotease, insulinase family (NCBI ptt file) False
CAC1719 rpoZ CDS None chromosome 1867885 1868103 + RNA polymerase-associated protein RpoZ, omega subunit (YLOH B.subtilis ortholog) (NCBI ptt file) True
CAC1762 rnh CDS None chromosome 1907294 1908058 + Ribonuclease HII (NCBI ptt file) False
CAC1785 topA CDS None chromosome 1934132 1936225 + Topoisomerase I (NCBI ptt file) False
CAC2030 CAC2030 CDS None chromosome 2140151 2140615 - Hypothetical protein (NCBI ptt file) False
CAC2094 efp CDS None chromosome 2191806 2192366 - Translation elongation factor P (NCBI ptt file) False
CAC2183 CAC2183 CDS None chromosome 2275062 2275235 - Uncharacterized protein, posible homoloh of YJFB B. subtilis (NCBI ptt file) False
CAC2228 CAC2228 CDS None chromosome 2318718 2319071 - Hypothetical protein (NCBI ptt file) False
CAC2665 CAC2665 CDS None chromosome 2781575 2782180 - Xanthosine triphosphate pyrophosphatase, HAM1-like protein (NCBI ptt file) False
CAC2671 CAC2671 CDS None chromosome 2788677 2788976 - Glu-tRNAGln amidotransferase subunit C (NCBI ptt file) False
CAC2713 CAC2713 CDS None chromosome 2836627 2837271 - AT-rich DNA-binding protein (NCBI ptt file) False
CAC2769 ppiB CDS None chromosome 2900960 2901484 - Peptidyl-prolyl cis-transisomerase, cyclophilin family (NCBI ptt file) False
CAC3210 CAC3210 CDS None chromosome 3356447 3356701 - Predicted RNA-binding protein, YABO B.subtilis ortholog (NCBI ptt file) False
CAC3287 CAC3287 CDS None chromosome 3448295 3449557 - Predicted membrane protein (NCBI ptt file) False
CAC3647 abrB CDS None chromosome 3847785 3848030 - Transition state regulatory protein AbrB (NCBI ptt file) True
CAC3739 rpmH CDS None chromosome 3940647 3940781 - L34 (NCBI ptt file) False

Genes Help

Gene member table shows all the genes included in the module. Listed attributes are;

  1. Name: Gene name or Locus tag
  2. Common Name: Gene short name
  3. Type: Type of the feature, usually CDS.
  4. Gene ID: Link to NCBI Gene ID
  5. Chromosome: Chromosome name from annotation file
  6. Start/End:Feature start and end coordinates
  7. Strand: strand of the gene
  8. Description: Description of the gene from annotation file
  9. TF: If the gene is a Transcription Factor or not.

If you are browsing the Network Portal by using Gaggle/Firegoose, firegoose plugin will capture the NameList of the gene members. Captured names can be saved into your Workspace by clicking on "Capture" in the firegoose toolbar or can be directly sent other desktop and web resources by using "Broadcast" option.

Help

What is a module?

Regulatory units (modules) in the Network Portal are based on the network inference algorithm used. For the current version, modules are based on cMonkey modules and Inferelator regulatory influences on these modules. More specifically, module refers to set of genes that are conditionally co-regulated under subset of the conditions. Identification of modules integrates co-expression, de-novo motif identification, and other functional associations such as operon information and protein-protein interactions.

Module Overview

The landing module page shows quick summary info including co-expression profiles, de-novo identified motifs, and transcription factors and/or environmental factors as regulatory influences. It also includes module residual, motif e-values, conditions and links to other resources such as NCBI and Microbesonline. . If a transcription factor is included in the manually curated RegPrecise database, further information from RegPrecise is shown, allowing users to perform comparative analysis.

Expression Profiles

Expression profiles is a plot of the expression ratios (log10) of the module's genes, over all subset of the conditions included in the module. The X-axis represent conditions and the Y-axis represents log10 expression ratios. Each gene is plotted as line plot with different colors. Colored legend for the lines are presented under the plot. This plot is dynamic. Clicking on the gene names in the legend will show/hide the plot for that particular gene. A tooltip will show expression ratio information if you mouseover the lines in the plot.

Motif Locations

Location of the Identified motifs for the module in the upstream regions of the member genes are shown under the expression profiles plot. This plot shows the diagram of the upstream positions of the motifs, colored red and green for motifs #1, and 2, respectively. Intensity of the color is proportional to the significance of the occurence of that motif at a given location. Motifs on the forward and reverse strand are represented over and under the line respectively.

Network

A network view of the module is created using cytoscapeWeb and enables dynamic, interactive exploration of the module properties. In this view, module member genes, motifs, and regulatory influences are represented as peripheral nodes connected to core module node via edges. Module members are green circles, regulators are red triangles and motifs are blue diamonds. Selection of a node gives access to detailed information in a pop-up window, which allows dragging and pinning to compare multiple selections. Selecting module members will show information about the selected gene such as name, species and fucntions. Motif selection will show motif logo image and e-values. Bicluster selction will show expression profile and summary statistics for the module.

GeneModule member RegulatorRegulator MotifMotif

Regulators

For each module, single or AND logic connected regulatory influences are listed under the regulators tab. These regulatory influences are identified by Inferelator. Table shows name of the regulator and its type. tf: Transcription factor, ef: Environmental factor and combiner:Combinatorial influence of a tf or an ef through logic gate. Tabel is sortable by clicking on the arrows next to column headers.

Motifs

Transcription factor binding motifs help to elucidate regulatory mechanism. cMonkey integrates powerful de novo motif detection to identify conditionally co-regulated sets of genes. De novo predicted motifs for each module are listed in the module page as motif logo images along with associated prediction statistics (e-values). The main module page also shows the location of these motifs within the upstream sequences of the module member genes.

Motifs of interest can be broadcasted to RegPredict (currently only available for Desulfovibrio vulgaris Hildenborough) in order to compare conservation in similar species. This integrated motif prediction and comparative analysis provides an additional checkpoint for regulatory motif prediction confidence.

Functions

Biological networks contain sets of regulatory units called functional modules that together play a role in regulation of specific functional processes. Connections between different modules in the network can help identify regulatory relationships such as hierarchy and epistasis. In addition, associating functions with modules enables putative assignment of functions to hypothetical genes. It is therefore essential to identify functional enrichment of modules within the regulatory network.

Functional annotations from single sources are often either not available or not complete. Therefore, we integrated KEGG pathway, Gene Ontology, TIGRFam and COG information as references for functional enrichment analysis.

We use hypergeometric p-values to identify significant overlaps between co-regulated module members and genes assigned to a particular functional annotation category. P-values are corrected for multiple comparisons by using Benjamini-Hochberg correction and filtered for p-values ≤ 0.05.

Network Portal presents functional ontologies from KEGG, GO, TIGRFAM, and COG as separate tables that include function name, type, corrected and uncorrected hypergeometric p-values, and the number of genes assigned to this category out of total number of genes in the module.

Genes

Gene member table shows all the genes included in the module. Listed attributes are;

  1. Name: Gene name or Locus tag
  2. Common Name: Gene short name
  3. Type: Type of the feature, usually CDS.
  4. Gene ID: Link to NCBI Gene ID
  5. Chromosome: Chromosome name from annotation file
  6. Start/End:Feature start and end coordinates
  7. Strand: strand of the gene
  8. Description: Description of the gene from annotation file
  9. TF: If the gene is a Transcription Factor or not.

If you are browsing the Network Portal by using Gaggle/Firegoose, firegoose plugin will capture the NameList of the gene members. Captured names can be saved into your Workspace by clicking on "Capture" in the firegoose toolbar or can be directly sent other desktop and web resources by using "Broadcast" option.

Social

You can start a conversation about this module or join the existing discussion by adding your comments. In order to be able to add your comments you need to sign in by using any of the following services;Disqus, Google, Facebook or Twitter. For full compatibility with other network portal features, we recommend using your Google ID.

Definitions

Residual: is a measure of bicluster quality. Mean bicluster residual is smaller when the expression profile of the genes in the module is "tighter". So smaller residuals are usually indicative of better bicluster quality.

Expression Profile: is a preview of the expression profiles of all the genes under subset of conditions included in the module. Tighter expression profiles are usually indicative of better bicluster quality.

Motif e-value: cMonkey tries to identify two motifs per modules in the upstream sequences of the module member genes. Motif e-value is an indicative of the motif co-occurences between the members of the module.Smaller e-values are indicative of significant sequence motifs. Our experience showed that e-values smaller than 10 are generally indicative of significant motifs.

Genes: Number of genes included in the module.

Functions: We identify functional enrichment of each module by camparing to different functional categories such as KEGG, COG, GO etc. by using hypergeometric function. If the module is significantly enriched for any of the functions, this column will list few of the these functions as an overview. Full list of functions is available upon visiting the module page under the Functions tab.