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Updated: Jul 11, 2025

Assaying Protein Kinase Activity with Radiolabeled ATP
Published on: May 26, 2017
Engineering memory with an extrinsically disordered kinase
Cristian Ripoli1,2, Onur Dagliyan3, Pietro Renna1,2
1Department of Neuroscience, Università Cattolica del Sacro Cuore, 00168 Rome, Italy.
Abstract:
Synaptic plasticity plays a crucial role in memory formation by regulating the communication between neurons. Although actin polymerization has been linked to synaptic plasticity and dendritic spine stability, the causal link between actin polymerization and memory encoding has not been identified yet. It is not clear whether actin polymerization and structural changes in dendritic spines are a driver or a consequence of learning and memory. Using an extrinsically disordered form of the protein kinase LIMK1, which rapidly and precisely acts on ADF/cofilin, a direct modifier of actin, we induced long-term enlargement of dendritic spines and enhancement of synaptic transmission in the hippocampus on command. The activation of extrinsically disordered LIMK1 in vivo improved memory encoding and slowed cognitive decline in aged mice exhibiting reduced cofilin phosphorylation. The engineered memory by an extrinsically disordered LIMK1 supports a direct causal link between actin-mediated synaptic transmission and memory.
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