Related Experiment Video
Updated: Aug 22, 2026

An Electrochemiluminescence-Based Assay for MeCP2 Protein Variants
Published on: May 22, 2020
Suppression of MeCP2beta expression inhibits neurite extension in PC12 cells
Sorcha M Cusack1, Troy T Rohn, Ryan J Medeck
1Department of Biology, Boise State University, Boise, ID 83725, USA.
Abstract:
Regulation of gene expression is critical to the proper development of neuronal cells. The methyl-CpG binding protein 2 (MeCP2) operates as a transcriptional repressor by facilitating histone deacetylation and DNA methylation-dependent transcriptional silencing. This study examined the importance of MeCP2 in the regulation of neurite formation in PC12 cells. Expression of MeCP2 increased in a time-dependent manner after induction of neuronal differentiation. Expression was assessed at both the transcriptional and translation levels, and reached a maximum at 24 h post-induction. In addition, a marked inhibition of neurite extension and proper localization of a marker for synapse formation, synapsin I, were observed when MeCP2 expression was decreased by the addition of an antisense morpholino oligomer directed to the translational initiation site for MeCP2beta. The removal of the antisense oligomer allowed neurite extension to progress. However, the addition of antisense oligomer to previously differentiated PC12 cells did not affect established neurite processes. Taken collectively, our results indicate a role for MeCP2beta early in the events of neurite formation and that the relative levels of MeCP2alpha and MeCP2beta may be different in early differentiating neurons than is found in the adult brain. In addition, unique functions may exist for the two isoforms of MeCP2. Our results indicate that the inhibition of neurite elaboration caused by a reduction in MeCP2 may be reversible.
Insights
Methyl-CpG binding protein 2 (MeCP2) is crucial for early neurite formation in developing neurons. Reducing MeCP2 temporarily inhibits neurite extension, but this effect is reversible.
Area of Science:
- Neuroscience
- Molecular Biology
- Gene Regulation
Background:
- Gene expression regulation is vital for neuronal development.
- Methyl-CpG binding protein 2 (MeCP2) acts as a transcriptional repressor.
- MeCP2 utilizes DNA methylation and histone deacetylation for gene silencing.
Purpose of the Study:
- To investigate the role of MeCP2 in neurite formation in PC12 cells.
- To understand the temporal dynamics of MeCP2 expression during neuronal differentiation.
Main Methods:
- PC12 cells were induced to undergo neuronal differentiation.
- MeCP2 expression was monitored at transcriptional and translational levels.
- Antisense morpholino oligomers were used to reduce MeCP2beta expression.
Main Results:
- MeCP2 expression increased over time during neuronal differentiation, peaking at 24 hours.
- Decreased MeCP2beta expression inhibited neurite extension and synapsin I localization.
- Inhibition of neurite extension was reversible upon removal of the antisense oligomer.
- Established neurites were unaffected by MeCP2 reduction.
Conclusions:
- MeCP2 plays a significant role in the early stages of neurite formation.
- Isoform-specific functions of MeCP2 (MeCP2alpha and MeCP2beta) may exist.
- The observed inhibition of neurite elaboration due to reduced MeCP2 is reversible.

