arrow
返回

Memory nodes in memory processing:: insights from Aplysia

delete2006-04-05
delete39
delete
OA
AI
K
Kathryn J. Reissner
J
Justin L. Shobe
T
Thomas Carew *
DOI:10.1007/s00018-006-6022-xdelete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Recent research in a variety of systems indicates that memory formation can involve the activation of a wide range of molecular cascades. In assessing this recent work it is clear that no single cascade is uniquely important for all forms of memory, nor is a single form of memory uniquely dependent on a single cascade. Rather, it appears that molecular networks are differentially engaged in the induction of various forms of memory. Despite this highly interactive array of possible cascades, specific 'Cymolecular nodes' have emerged as critical regulatory points in memory formation. Functionally, these nodes can operate in two sequential steps, beginning with a convergence of inputs which coordinately influence the activation state of the node, in which the nature of stimulation determines the dynamics of nodal activity, followed by a divergence of substrate selection, in which the node serves as a gateway that activates specific downstream effectors. Finally, specific nodes can be differentially engaged (i.e. have different 'Cyweights') depending upon the nature and pattern of the activating stimulus. The marine mollusk Aplysia has proven useful for a molecular analysis of memory formation. We will use this system to highlight some of the molecular strategies employed by the nervous system in the formation of memory for sensitization, and we will focus on extracellular signal-related kinase as a candidate node integral to these processes.
Keyword:
aplysia
ERK
node
memory
facilitation
serotonin

期刊

Cellular and Molecular Life Sciences 封面图
Cellular and Molecular Life Sciences
IF:
6.2
论文数:
9.2K
被引数:
4.0W

机构

暂无机构信息
引用论文

引用论文

暂无论文信息