A mental retardation gene, motopsin/prss12, modulates cell morphology by interaction with seizure-related gene 6
Shinichi Mitsui1, Chiharu Hidaka, Mutsuo Furihata
1Department of Rehabilitation Sciences, Gunma University Graduate School of Health Sciences, 3-39-22 Showa, Maebashi 371-8514, Japan. smitsui@gunma-u.ac.jp
Abstract:
A serine protease, motopsin (prss12), plays a significant role in cognitive function and the development of the brain, since the loss of motopsin function causes severe mental retardation in humans and enhances social behavior in mice. Motopsin is activity-dependently secreted from neuronal cells, is captured around the synaptic cleft, and cleaves a proteoglycan, agrin. The multi-domain structure of motopsin, consisting of a signal peptide, a proline-rich domain, a kringle domain, three scavenger receptor cysteine-rich domains, and a protease domain at the C-terminal, suggests the interaction with other molecules through these domains. To identify a protein interacting with motopsin, we performed yeast two-hybrid screening and found that seizure-related gene 6 (sez-6), a transmembrane protein on the plasma membrane of neuronal cells, bound to the proline-rich/kringle domain of motopsin. Pull-down and immunoprecipitation analyses indicated the interaction between these proteins. Immunocytochemical and immunohistochemical analyses suggested the co-localization of motopsin and sez-6 at neuronal cells in the developmental mouse brain and at motor neurons in the anterior horn of human spinal cords. Transient expression of motopsin in neuro2a cells increased the number and length of neurites as well as the level of neurite branching. Interestingly, co-expression of sez-6 with motopsin restored the effect of motopsin at the basal level, while sez-6 expression alone showed no effects on cell morphology. Our results suggest that the interaction of motopsin and sez-6 modulates the neuronal cell morphology.
Insights
Motopsin (prss12), a brain-related serine protease, interacts with seizure-related gene 6 (sez-6) to modulate neuronal cell morphology. This interaction is crucial for brain development and cognitive function.
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- Motopsin (prss12) is a serine protease vital for cognitive function and brain development.
- Loss of motopsin function is linked to mental retardation and altered social behavior.
- Motopsin's multi-domain structure suggests diverse molecular interactions.
Purpose of the Study:
- To identify proteins interacting with motopsin.
- To investigate the role of motopsin-sez-6 interaction in neuronal morphology.
Main Methods:
- Yeast two-hybrid screening to identify interacting partners.
- Pull-down and immunoprecipitation assays to confirm protein interactions.
- Immunocytochemistry and immunohistochemistry for co-localization studies.
- Transient expression in neuro2a cells to assess effects on neurite outgrowth.
Main Results:
- Seizure-related gene 6 (sez-6) was identified as a binding partner for motopsin.
- Motopsin and sez-6 co-localize in neuronal cells in the developing mouse brain and human spinal cords.
- Motopsin expression promotes neurite outgrowth, which is normalized by sez-6 co-expression.
Conclusions:
- Motopsin interacts with sez-6 via its proline-rich/kringle domain.
- The motopsin-sez-6 interaction plays a role in modulating neuronal cell morphology.
- This interaction may be significant for normal brain development and function.
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