Organism : Bacillus cereus ATCC14579 | Module List :
BC1444

hypothetical protein (NCBI ptt file)

CircVis
Functional Annotations (0)

Warning: No Functional annotations were found!

GeneModule member RegulatorRegulator MotifMotif

Cytoscape Web
Regulation information for BC1444
(Mouseover regulator name to see its description)

BC1444 is regulated by 22 influences and regulates 0 modules.
Regulators for BC1444 (22)
Regulator Module Operator
BC1080 68 tf
BC1115 68 tf
BC1282 68 tf
BC1603 68 tf
BC2517 68 tf
BC2801 68 tf
BC3522 68 tf
BC3587 68 tf
BC3904 68 tf
BC4336 68 tf
BC5205 68 tf
BC0742 4 tf
BC1329 4 tf
BC2469 4 tf
BC2517 4 tf
BC2801 4 tf
BC2903 4 tf
BC3486 4 tf
BC3587 4 tf
BC3588 4 tf
BC3904 4 tf
BC5251 4 tf

Warning: BC1444 Does not regulate any modules!

Motif information (de novo identified motifs for modules)

There are 4 motifs predicted.

Motif Table (4)
Motif Id e-value Consensus Motif Logo
3930 6.70e+01 GGTGcGGACTCCGTAaCCCCATTC
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3931 2.10e+02 gAGgaGgA
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4056 6.30e+00 AaAGGGAG
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4057 3.30e+01 GAAtGgaGtga
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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 for BC1444

Warning: No Functional annotations were found!

Module neighborhood information for BC1444

BC1444 has total of 28 gene neighbors in modules 4, 68
Gene neighbors (28)
Gene Common Name Description Module membership
BC0239 BC0239 ABC transporter ATP-binding protein uup (NCBI ptt file) 68, 136
BC0505 BC0505 hypothetical protein (NCBI ptt file) 4, 78
BC0574 BC0574 hypothetical Membrane Spanning Protein (NCBI ptt file) 68, 375
BC0575 BC0575 hypothetical protein (NCBI ptt file) 68, 308
BC1101 BC1101 Internalin G (NCBI ptt file) 68, 525
BC1102 BC1102 hypothetical protein (NCBI ptt file) 68, 522
BC1115 BC1115 Transcriptional regulator, AraC family (NCBI ptt file) 68, 101
BC1267 BC1267 hypothetical protein (NCBI ptt file) 4, 411
BC1444 BC1444 hypothetical protein (NCBI ptt file) 4, 68
BC1589 BC1589 putative N-acetylgalactosaminyl-diphosphoundecaprenol glucuronosyltransferase (NCBI ptt file) 68, 151
BC1590 BC1590 Mannosyl transferase (NCBI ptt file) 68, 151
BC1977 BC1977 Acetyltransferase (NCBI ptt file) 68, 472
BC2187 BC2187 Phosphoglycolate phosphatase (NCBI ptt file) 68, 101
BC2268 BC2268 hypothetical protein (NCBI ptt file) 4, 376
BC2368 BC2368 hypothetical Cytosolic Protein (NCBI ptt file) 4, 68
BC2451 BC2451 Peptide synthetase (NCBI ptt file) 4, 155
BC2537 BC2537 Acetamidase (NCBI ptt file) 68, 308
BC2801 BC2801 DNA topology modulation protein (NCBI ptt file) 68, 314
BC3125 BC3125 hypothetical protein (NCBI ptt file) 4, 111
BC3128 BC3128 Transcriptional regulator, MarR family (NCBI ptt file) 4, 125
BC3283 BC3283 hypothetical protein (NCBI ptt file) 4, 526
BC3293 BC3293 hypothetical Cytosolic Protein (NCBI ptt file) 4, 276
BC3294 BC3294 hypothetical Cytosolic Protein (NCBI ptt file) 4, 356
BC3297 BC3297 hypothetical Cytosolic Protein (NCBI ptt file) 4, 239
BC3353 BC3353 hypothetical protein (NCBI ptt file) 4, 125
BC3726 BC3726 phosphoesterase (NCBI ptt file) 68, 526
BC4423 BC4423 L-aspartate oxidase (NCBI ptt file) 4, 78
BC5113 BC5113 Zinc finger protein (NCBI ptt file) 4, 84
Gene Page Help

Network Tab

If the gene is associated with a module(s), its connection to given modules along with other members of that module are shown as network by using CytoscapeWeb. In this view, each green colored circular nodes represent module member genes, purple colored diamonds represent module motifs and red triangles represent regulators. Each node is connected to module (Bicluster) via edges. This representation provides quick overview of all genes, regulators and motifs for modules. It also allows one to see shared genes/motifs/regulators among diferent modules.

Network representation is interactive. You can zoom in/out and move nodes/edges around. Clicking on a node will open up a window to give more details. For genes, Locus tag, organism, genomic coordinates, NCBI gene ID, whether it is transcription factor or not and any associated functional information will be shown. For regulators, number of modules are shown in addition to gene details. For motifs, e-value, consensus sequence and sequence logo will be shown. For modules, expression profile plot, motif information, functional associations and motif locations for each member of the module will be shown.
You can pin information boxes by using button in the box title and open up additional ones on the same screen for comparative analysis.

Regulation Tab

Regulation tab for each gene includes regulatory influences such as environmental factors or transcription factors or their combinations identified by regulatory network inference algorithms.

If the gene is a member of a module, regulators influencing that module are also considered to regulate the gene. Regulators table list total number of regulatory influences, regulators, modules and type of the influence.

You can see description of the regulator inside the tooltip when you mouseover. In certain cases the regulatory influence is predicted to be the result of the combination of two influences. These are indicated as combiner in the column labeled "Operator".

For transcription factors, an additional table next to regulator table will be show. This table show modules that are influenced by the transcription factor.

Motifs Tab

Network inference algorithm uses de novo motif prediction for assigning genes to modules. If there are any motifs identified in the upstream region of a gene, the motif will be shown here. For each motif sequence logo, consensus and e-value will be shown.

Functions Tab

Identification of functional enrichment for the module members is important in associating predicted motifs and regulatory influences with pathways. As described above, the network inference pipeline includes a functional enrichment module by which hypergeometric p-values are used to identify over representation of functional ontology terms among module members.

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.

Module Members Tab

Identity of gene members in a module may help to identify potential interactions between different functional modules. Therefore, neighbor genes that share the same module(s) with gene under consideration are shown here. For each memebr, gene name, description and modules that contain it are listed.

Help Tab

This help page. More general help can be accessed by clicking help menu in the main navigation bar.

Social Tab

Network Portal is designed to promote collaboration through social interactions. Therefore interested researchers can share information, questions and updates for a particular gene.

Users can use their Disqus, Facebook, Twitter or Google accounts to connect to this page (We recommend Google). Each module and gene page includes comments tab that lists history of the interactions for that gene. You can browse the history, make updates, raise questions and share these activities with social web.

In the next releases of the network portal, we are planning to create personal space for each user where you can share you space that contains all the analysis steps you did along with relevant information.

CircVis

Our circular module explorer is adapted from visquick originally developed by Dick Kreisberg of Ilya Shmulevich lab at ISB for The Cancer Genome Atlas. We use simplified version of visquick to display distribution of module members and their interactions across the genome. This view provides summary of regulation information for a gene. The main components are;
  • 1. All genomic elements for the organism are represented as a circle and each element is separated by black tick marks. In this example chromosome and pDV represent main chromosome and plasmid for D. vulgaris Hildenborough, respectively.
  • 2. Source gene
  • 3. Target genes (other module members)
  • 4. Interactions between source and target genes for a particular module
  • 5. Module(s) that source gene and target genes belong to
  • 6. Visualisation legend
Comments for BC1444
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Gene Help

Overview

Gene landing pages present genomic, functional, and regulatory information for individual genes. A circular visualization displays connections between the selected gene and genes in the same modules, with as edges drawn between the respective coordinates of the whole genome.

The gene page also lists functional ontology assignments, module membership, and motifs associated with these modules. Genes in the network inherit regulatory influences from the modules to which they belong. Therefore, the regulatory information for each gene is a collection of all regulatory influences on these modules. These are listed as a table that includes influence name, type, and target module. If the gene is a transcription factor, its target modules are also displayed in a table that provides residual values and number of genes.

CircVis

Our circular module explorer is adapted from visquick originally developed by Dick Kreisberg of Ilya Shmulevich lab at ISB for The Cancer Genome Atlas. We use simplified version of visquick to display distribution of module members and their interactions across the genome. This view provides summary of regulation information for a gene. The main components are;
  • 1. All genomic elements for the organism are represented as a circle and each element is separated by black tick marks. In this example chromosome and pDV represent main chromosome and plasmid for D. vulgaris Hildenborough, respectively.
  • 2. Source gene
  • 3. Target genes (other module members)
  • 4. Interactions between source and target genes for a particular module
  • 5. Module(s) that source gene and target genes belong to
  • 6. Visualisation legend