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Sustained phosphorylation of MARCKS in differentiating neurogenic regions during chick embryo development
1Laboratorio de Cultivo de Tejidos, Sección Biología Celular, Facultad de Ciencias, Universidad de la República, Iguá 4225, 11400 Montevideo, Uruguay.
Abstract:
MARCKS, a substrate for several kinases, has critical functions in morphogenetic processes involved in the development of the nervous system. We previously described the purification of MARCKS from chick embryo brain, using a monoclonal antibody (mAb 3C3), raised against embryonic neural retina. Here we show that mAb 3C3 is an antibody sensitive to phosphorylation state. We used it to explore the appearance and developmental progression of phospho-MARCKS (ph-MARCKS) during initial stages of neurogenesis in retina and spinal cord, and compared its distribution with total MARCKS. Before the onset of neural differentiation, MARCKS protein was already accumulated in neural and non-neural embryonic tissues, while ph-MARCKS immunoreactivity was weak, although ubiquitous too. A sudden increase of ph-MARCKS, paralleling a total MARCKS augmentation, was particularly noticeable in the earliest differentiating neurons in the neural retina. Ganglion cells displayed a high ph-MARCKS signal in the soma, as well as in the growing axon. A short time thereafter, a similar increase of ph-MARCKS was present across the entire width of the neural retina, where the differentiation of other neurons and photoreceptors occurs. The increase of ph-MARCKS in cells took place before the detection of the transcription factor Islet-1/2, an early neuronal differentiation molecular marker, in cells of the same region. Analogous phenomena were observed in cervical regions of the spinal cord, where motor neurons were differentiating. Neurogenic regions in the spinal cord contained higher amounts of ph-MARCKS than the floor plate. Taken together, these results strongly suggest that the appearance and relatively long-lasting presence of ph-MARCKS polypeptides are related to specific signaling pathways active during neurogenesis.
Insights
Phospho-MARCKS (ph-MARCKS) increases during early neurogenesis in the nervous system. This phosphorylated protein appears in differentiating neurons before key molecular markers, suggesting its role in neural development signaling pathways.
Area of Science:
- Neuroscience
- Developmental Biology
- Cell Biology
Background:
- The Myristoylated Alanine-Rich C-Kinase Substrate (MARCKS) protein is crucial for nervous system development and morphogenetic processes.
- Previous work identified MARCKS and developed a monoclonal antibody (mAb 3C3) for its purification from embryonic chick brain.
Purpose of the Study:
- To investigate the spatiotemporal expression of phosphorylated MARCKS (ph-MARCKS) during early neurogenesis.
- To compare the distribution of ph-MARCKS with total MARCKS in the developing retina and spinal cord.
Main Methods:
- Utilized a phosphorylation-sensitive monoclonal antibody (mAb 3C3) to detect ph-MARCKS.
- Examined immunoreactivity in embryonic chick retina and spinal cord during neurogenesis.
- Correlated ph-MARCKS appearance with total MARCKS levels and neuronal differentiation markers like Islet-1/2.
Main Results:
- ph-MARCKS immunoreactivity increased significantly in differentiating neurons of the retina and spinal cord.
- This increase occurred before the expression of the neuronal marker Islet-1/2.
- Higher ph-MARCKS levels were observed in neurogenic regions of the spinal cord compared to the floor plate.
Conclusions:
- The appearance and sustained presence of ph-MARCKS are strongly linked to signaling pathways active during neurogenesis.
- ph-MARCKS serves as a potential indicator of early neuronal differentiation and associated signaling events.