Table 1.
Map | Map Folders | Cell process | p-Value | Objects | |
---|---|---|---|---|---|
present | total | ||||
Cytoskeleton remodeling | Regulatory processes/Cytoskeleton remodeling | 1.74E-10 | 41 | 83 | |
Cytoskeleton remodeling, TGF, WNT and cytoskeletal remodeling | Regulatory processes/Cytoskeleton remodeling | 2.60E-07 | 40 | 98 | |
Translation, Regulation of translation initiation | Regulatory processes/Translation | translation | 2.89E-07 | 14 | 19 |
* Cytoskeleton remodeling, Role PKA in cytoskeleton reorganisation | Protein function/Kinases Regulatory processes/Cytoskeleton remodeling | protein kinase cascade | 6.50E-07 | 18 | 30 |
* Signal transduction, PKA signaling | Protein function/G-proteins/GPCR Protein function/Kinases Protein function/Second messenger | second-messenger-mediated signaling, protein kinase cascade, G-protein coupled receptor protein signaling pathway | 1.27E-06 | 15 | 23 |
Cell adhesion, Histamine H1 receptor signaling in the interruption of cell barrier integrity | Protein function/G-proteins/GPCR Regulatory processes/Cell adhesion | G-protein coupled receptor protein signaling pathway, cell adhesion | 1.54E-06 | 20 | 37 |
Cytoskeleton remodeling, Regulation of actin cytoskeleton by Rho GTPases | Protein function/G-proteins/RAS-group Regulatory processes/Cytoskeleton remodeling | small GTPase mediated signal transduction | 1.98E-06 | 14 | 21 |
Transcription, Formation of Sin3A and NuRD complexes and their role in transcription regulation | Regulatory processes/Transcription | transcription | 2.81E-06 | 15 | 24 |
Development, Role of HDAC and calcium/calmodulin-dependent kinase (CaMK) in control of skeletal myogenesis | Protein function Second messenger Protein function Transcription factors Regulatory processes Development Myogenesis |
second-messenger-mediated signaling, transcription, response to extracellular stimulus | 4.22E-06 | 22 | 45 |
Only first 10 pathways shown, the complete table is given is Additional File 1. The analysis is performed using GeneGo MetaCore software.