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Updated: Jan 21, 2026

In Vitro Synthesis of Modified mRNA for Induction of Protein Expression in Human Cells
Published on: November 13, 2014
How mRNA Localization and Protein Synthesis Sites Influence Dendritic Protein Distribution and Dynamics
Yombe Fonkeu1, Nataliya Kraynyukova2, Anne-Sophie Hafner3
1Max Planck Institute for Brain Research, Theory of Neural Dynamics Group, Frankfurt am Main, Germany; Emory University School of Medicine, Atlanta, GA, USA.
Abstract:
Proteins drive the function of neuronal synapses. The synapses are distributed throughout the dendritic arbor, often hundreds of micrometers away from the soma. It is still unclear how somatic and dendritic sources of proteins shape protein distribution and respectively contribute to local protein changes during synaptic plasticity. Here, we present a unique computational framework describing for a given protein species the dendritic distribution of the mRNA and the corresponding protein in a dendrite. Using CaMKIIα as a test case, our model reveals the key role active transport plays in the maintenance of dendritic mRNA and protein levels and predicts the short and long timescales of protein dynamics. Our model reveals the fundamental role of mRNA localization and dendritic mRNA translation in synaptic maintenance and plasticity in distal compartments. We developed a web application for neuroscientists to explore the dynamics of the mRNA or protein of interest.
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