Region-specific involvement of actin rearrangement-related synaptic structure alterations in conditioned taste aversion memory
Author(s) -
Ai-Ling Bi,
Yue Wang,
Boqin Li,
Qianqian Wang,
Ling Ma,
Hui Yu,
Ling Zhao,
Zhe-Yu Chen
Publication year - 2010
Publication title -
learning and memory
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.228
H-Index - 136
eISSN - 1549-5485
pISSN - 1072-0502
DOI - 10.1101/lm.1772310
Subject(s) - neuroscience , memory consolidation , infralimbic cortex , basolateral amygdala , taste aversion , chemistry , postsynaptic potential , dendritic spine , synapse , associative learning , memory formation , impaired memory , psychology , amygdala , hippocampus , prefrontal cortex , hippocampal formation , receptor , cognition , taste , biochemistry
Actin rearrangement plays an essential role in learning and memory; however, the spatial and temporal regulation of actin dynamics in different phases of associative memory has not been fully understood. Here, using the conditioned taste aversion (CTA) paradigm, we investigated the region-specific involvement of actin rearrangement-related synaptic structure alterations in different memory processes. We found that CTA training could induce increased postsynaptic density (PSD) length in insular cortex (IC), but not in basolateral amygdala (BLA) and prelimbic cortex (PrL) during short-term memory (STM) formation, whereas it led to increased PSD length and synapse density in both IC and PrL during long-term memory (LTM) formation. Inhibition of actin rearrangement in the IC, but not in the BLA and PrL, impaired memory acquisition. Furthermore, actin dynamics in the IC or PrL is necessary for memory consolidation. On the contrary, inhibition of actin dynamics in the IC, BLA, or PrL had no effect on CTA memory retrieval. Our results suggest temporal and regional-specific regulation of actin rearrangement-related synaptic structure in different phases of CTA memory.
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