Related Experiment Videos
Regulation of dendritic growth and remodeling by Rho, Rac, and Cdc42
R Threadgill1, K Bobb, A Ghosh
1Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Abstract:
The acquisition of cell type-specific morphologies is a central feature of neuronal differentiation and has important consequences for nervous system function. To begin to identify the underlying molecular mechanisms, we have explored the role of Rho-related GTPases in the dendritic development of cortical neurons. Expression of dominant negative mutants of Rac or Cdc42, the Rho-inhibitory molecule C3 transferase, or the GTPase-activating protein RhoGAP p190 causes a marked reduction in the number of primary dendrites in nonpyramidal (multipolar) neurons and in the number of basal dendrites in neurons with pyramidal morphologies. Conversely, the expression of constitutively active mutants of Rho, Rac, or Cdc42 leads to an increase in the number of primary and basal dendrites. In cortical cultures, as in vivo, dendritic remodeling leads to an apparent transformation from pyramidal to nonpyramidal morphologies over time. Strikingly, this shift in favor of nonpyramidal morphologies is also inhibited by the expression of dominant negative mutants of Cdc42 and Rac and by RhoGAP p190. These observations indicate that Rho, Rac, and Cdc42 play a central role in dendritic development and suggest that differential activation of Rho-related GTPases may contribute to the generation of morphological diversity in the developing cortex.
Insights
Rho GTPases like Rac and Cdc42 are crucial for neuronal development. Their activity influences dendritic growth and cell morphology in the developing cortex, impacting nervous system function.
Area of Science:
- Neuroscience
- Cell Biology
- Developmental Biology
Background:
- Neuronal differentiation involves acquiring specific cell morphologies, critical for nervous system function.
- Understanding the molecular mechanisms of dendritic development is essential.
Purpose of the Study:
- To investigate the role of Rho-related GTPases in the dendritic development of cortical neurons.
- To identify molecular mechanisms underlying neuronal morphological diversity.
Main Methods:
- Expression of dominant-negative and constitutively active mutants of Rho, Rac, and Cdc42 in cortical neurons.
- Utilizing Rho-inhibitory molecule C3 transferase and GTPase-activating protein RhoGAP p190.
- Analysis of dendritic morphology in cortical cultures and in vivo.
Main Results:
- Inhibition of Rac, Cdc42, or RhoGAP p190 reduced primary and basal dendrites.
- Activation of Rho, Rac, or Cdc42 increased primary and basal dendrites.
- Dominant-negative Cdc42/Rac and RhoGAP p190 inhibited the shift towards nonpyramidal morphologies.
Conclusions:
- Rho, Rac, and Cdc42 are central regulators of dendritic development in cortical neurons.
- Differential activation of Rho-related GTPases contributes to morphological diversity in the developing cortex.