Inactivation of CDC42 and RAC1

Summary
Organism
Homo sapiens (human)
Reactome
R-HSA-428543
PubChem
R-HSA-428543
Description
  • Rho family GTPases, including RAC1, RHOA, and CDC42, are ideal candidates to regulate aspects of cytoskeletal dynamics downstream of axon guidance receptors. Biochemical and genetic studies have revealed an important role for CDC42 and RAC1 in ROBO repulsion. ROBO controls the activity of Rho GTPases by interacting with a family of SLIT/ROBO-specific GAPs (SrGAPs) and Vilse/CrossGAP. SrGAPs inactivate CDC42 and Vilse/CrossGAP specifically inactivates RAC1.
    It was recently implicated that SRGAP3 may inactivate RAC1 downstream of SLIT1-activated ROBO2, which promotes neurite outgrowth in mammalian dorsal root ganglion (DRG) neurons (Zhang et al. 2014).
Click on a node on the pathway to see its details. Glycoproteins are marked with a glycoprotein icon in their name.
Displaying all 7 entries
UniProt ID Protein Name Gene Symbol Pathway Viewer
O43295 SLIT-ROBO Rho GTPase-activating protein 3
  • ARHGAP14
  • KIAA0411
  • KIAA1156
  • MEGAP
  • SRGAP2
  • SRGAP3
view
O75044 SLIT-ROBO Rho GTPase-activating protein 2
  • ARHGAP34
  • FNBP2
  • KIAA0456
  • SRGAP2
  • SRGAP2A
view
O94813 Slit homolog 2 protein
  • SLIL3
  • SLIT2
view
P60953 Cell division control protein 42 homolog
  • CDC42
view
P63000 Ras-related C3 botulinum toxin substrate 1
  • MIG5
  • RAC1
  • TC25
view
Q7Z6B7 SLIT-ROBO Rho GTPase-activating protein 1
  • ARHGAP13
  • KIAA1304
  • SRGAP1
view
Q9Y6N7 Roundabout homolog 1
  • DUTT1
  • ROBO1
view

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Acknowledgements

Supported by JST NBDC Grant Number JPMJND2204

Partly supported by NIH Common Fund Grant #1U01GM125267-01


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Last updated: April 6, 2026