Abstract
Double-stranded RNA-binding proteins function in regulating the stability, translation, and localization of specific mRNAs. In this study, we have demonstrated that the neuron-specific, calcium-binding protein, visinin- like protein (VILIP) contains one double-stranded RNA-binding domain, a protein motif conserved among many double-stranded RNA-binding proteins. We showed that VILIP can specifically bind double-stranded RNA, and this interaction specifically requires the presence of calcium. Mobility shift studies indicated that VILIP binds double-stranded RNA as a single protein- RNA complex with an apparent equilibrium dissociation constant of 9.0 x 10-6 M. To our knowledge, VILIP is the first double-stranded RNA-binding protein shown to be calcium-dependent. Furthermore, VILIP specifically binds the 3'-untranslated region of the neurotrophin receptor, trkB, an mRNA localized to hippocampal dendrites in an activity-dependent manner. Given that VILIP is also expressed in the hippocampus, these data suggest that VILIP may employ a novel, calcium-dependent mechanism to regulate its binding to important localized mRNAs in the central nervous system.
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CITATION STYLE
Mathisen, P. M., Johnson, J. M., Kawczak, J. A., & Tuohy, V. K. (1999). Visinin-like protein (VILIP) is a neuron-specific calcium-dependent double-stranded RNA-binding protein. Journal of Biological Chemistry, 274(44), 31571–31576. https://doi.org/10.1074/jbc.274.44.31571
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