Isolation and characterization of Bsk, a growth factor receptor‐like tyrosine kinase associated with the limbic system
- 1 January 1994
- journal article
- research article
- Published by Wiley in Journal of Neuroscience Research
- Vol. 37 (1), 129-143
- https://doi.org/10.1002/jnr.490370117
Abstract
Neuronal degeneration has been shown to be involved in various neurological disorders. Growth/trophic factors and their receptors are known to be important for the regeneration and survival of neurons. We report here the molecular cloning of a receptor‐like protein tyrosine kinase, bsk, (for brain specific kinase). Bsk is highly related to the eph/elk receptor like kinase family members. Northern blot analysis shows that is is expressed specifically in the brain, with no expression detected in adult heart, spleen, lung, liver, skeletal muscle, and kidney. In situ hybridization analysis of adult mouse brain sections indicates that bsk is expressed at high levels in the hippocampus, tenia tects, indusium griseum, and the piriform cortex, major components of the limbic system that are important for learning and memory. In addition, elevated levels of expression are found in other areas of the limbic system such as the amygdala, medial septum, and nucleus of the diagonal band, and in the olfactory bulb, which has close connections to the limbic system. The highest level of expression is found in the CA3 region of the hippocampus and the pyramidal cell layer of the piriform cortex. In 16.5 day mouse embryos, bsk is expressed predominantly in the primordial cortex of the telencephalon. An antibody against a C‐terminal peptide of bsk recognized a 105 kD protein in the 16.5 day embryonic head extract. Our analysis shows that bsk is a growth factor receptor‐like protein tyrosine kinase and that its greatest expression in the adult brain is associated with components of the limbic system.Keywords
This publication has 39 references indexed in Scilit:
- Growth factor signaling by receptor tyrosine kinasesNeuron, 1992
- Expression of the trk proto-oncogene is restricted to the sensory cranial and spinal ganglia of neural crest origin in mouse development.Genes & Development, 1990
- Neurotrophin-3: a Neurotrophic Factor Related to NGF and BDNFScience, 1990
- Trophic factors and neuronal survivalNeuron, 1989
- The Protein Kinase Family: Conserved Features and Deduced Phylogeny of the Catalytic DomainsScience, 1988
- Basic fibroblast growth factor prevents death of lesioned cholinergic neurons in vivoNature, 1988
- Trophic Stimulation of Cultured Neurons from Neonatal Rat Brain by Epidermal Growth FactorScience, 1987
- The Nerve Growth Factor 35 Years LaterScience, 1987
- Fibroblast growth factors: Potential neurotrophic agents in the central nervous systemJournal of Neuroscience Research, 1987
- A Monoclonal Antibody to Limbic System NeuronsScience, 1984