4.4 Article

Microtubule Dynamicity Is More Important than Stability in Memory Formation: an In Vivo Study

期刊

JOURNAL OF MOLECULAR NEUROSCIENCE
卷 56, 期 2, 页码 313-319

出版社

HUMANA PRESS INC
DOI: 10.1007/s12031-015-0535-4

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Microtubule; Microtubule dynamicity; Paclitaxel; Taxol; Memory; Synaptic plasticity

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It has been shown that microtubule (MT) activity and dynamics can have huge impacts on synaptic plasticity and memory formation. This is mainly due to various functions of MTs in neurons; MTs are involved in dendritic spine formation, axonal transportation, neuronal polarity, and receptor trafficking. Recent studies from our group and other labs have suggested the possible role of brain MT dynamicity and activity in memory; however, there is a need for more detailed studies regarding this aspect. In this study, we have tried to evaluate the importance ofmicrotubule dynamicity rather than stability in memory formation in vivo. In order to investigate the role ofMTstability in memory formation, we treated mice with paclitaxel-a classic microtubule-stabilizing agent. We then studied the behavior of treated animals using Morris water maze (MWM) test. To measure the effect of injected paclitaxel on MT polymerization kinetics, we conducted polymerization assays on brain extracts of the same paclitaxeltreated animals. Our results show that paclitaxel treatment affects animals' memory in a negative way and treated animals behave poorly in MWM compared to control group. In addition, our kinetics studies show that MT stability is significantly increased in brain extracts from paclitaxel-treated mice, but MT dynamics is reduced. Thus, we suggest that dynamicity is a very important feature of MT protein structures, and regarding memory formation, dynamicity is more important than stability and high activity.

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