Myosin VI Plays Vital Role in Enrichment of Proteins on Axonal Surface
Researchers from the University of California have discovered that Myosin VI, a minus-end-directed motor, plays a crucial role in the enrichment of proteins on the surface of axons. This finding reveals a new mechanism by which neurons are able to shape their form and function, and has significant implications for our understanding of neural development and disease.
Key Takeaways:
- Myosin VI, a minus-end-directed motor, is essential for targeting proteins to the axonal surface, where they play a vital role in shaping neural form and function.
- The researchers engineered non-neuronal proteins to interact with Myosin VI, resulting in their concentration at the axonal surface in dissociated rat cortical neurons.
- Disruption of Myosin VI function or expression leads to aberrant dendritic localization of axonal proteins, highlighting the importance of Myosin VI in maintaining correct protein localization.
- Myosin VI mediates the enrichment of proteins on the axonal surface, at least in part, by stimulating dendrite-specific endocytosis.
- The researchers developed a version of Channelrhodopsin 2 that is concentrated at the surface of the axon of cortical neurons in mice in vivo, providing a useful tool for probing circuit structure and function.
Statistics:
- 9(3):1021 - the volume and issue number of the journal Plos Biology where the results were published.
- 2011 - the year in which the research was published.
- Los Angeles, CA 90089 - the zip code of the University of California, Dept. of Biology Science.
- 185 Berry St., Ste. 1300, San Francisco, CA 94107, USA - the address of the Public Library Science, publisher of Plos Biology.
- 2 - the number of years that Myosin motors have been shown to play a critical role in neural development.
- See also Peptides and Proteins - the title of another article that discusses related research.
Sources:
- Lewis, T.L., et al. (2011). A Role for Myosin VI in the Localization of Axonal Proteins. Plos Biology, 9(3), 1021.
- Peptides and Proteins.