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Journal ArticleDOI

LTP promotes formation of multiple spine synapses between a single axon terminal and a dendrite

TLDR
In this paper, the morphology of synapses activated by high-frequency stimulation and identified by accumulated calcium in dendritic spines was analyzed using electron microscopy to identify the formation of new synapses contacting the same presynaptic terminal.
Abstract
Structural remodelling of synapses and formation of new synaptic contacts has been postulated as a possible mechanism underlying the late phase of long-term potentiation (LTP), a form of plasticity which is involved in learning and memory Here we use electron microscopy to analyse the morphology of synapses activated by high-frequency stimulation and identified by accumulated calcium in dendritic spines LTP induction resulted in a sequence of morphological changes consisting of a transient remodelling of the postsynaptic membrane followed by a marked increase in the proportion of axon terminals contacting two or more dendritic spines Three-dimensional reconstruction revealed that these spines arose from the same dendrite As pharmacological blockade of LTP prevented these morphological changes, we conclude that LTP is associated with the formation of new, mature and probably functional synapses contacting the same presynaptic terminal and thereby duplicating activated synapses

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Citations
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The Calsyntenins—A Family of Postsynaptic Membrane Proteins with Distinct Neuronal Expression Patterns

TL;DR: A cell-type-specific functional role for the three calsyntenins in excitatory synaptic transmission is suggested based on their distinct expression patterns and the differences in their cytoplasmic segments.
Journal ArticleDOI

Synaptic potentiation induces increased glial coverage of excitatory synapses in CA1 hippocampus

TL;DR: Recon reconstructions of synapses reveal dynamic, activity‐dependent interactions between glial processes and pre‐ and postsynaptic partners and suggest that glia can participate in activity‐induced structural synapse remodeling.
Journal ArticleDOI

Intracellular Ca2+ pools in neuronal signalling

TL;DR: Different intracellular pools participate in generating Ca(2+) signals in neuronal cells and in shaping their spatio-temporal patterns, and play an important role in controlling processes such as neurite outgrowth, synaptic plasticity, secretion and neurodegeneration.
Journal ArticleDOI

Use of Phosphatide Precursors to Promote Synaptogenesis

TL;DR: Animals given three nutrients-uridine, the omega-3 polyunsaturated fatty acid docosahexaenoic acid, and choline-develop increased levels of brain phosphatides and of proteins that are concentrated within synaptic membranes, leading to improved cognition, and enhanced neurotransmitter release.
Journal ArticleDOI

Growth of dendritic spines: a continuing story.

TL;DR: Dendritic spines, which are present at the vast majority of excitatory synapses in the central nervous system, have a specialized cytoskeleton of dynamic actin filaments that makes them capable of rapid morphological plasticity.
References
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Journal ArticleDOI

A synaptic model of memory: long-term potentiation in the hippocampus

TL;DR: The best understood form of long-term potentiation is induced by the activation of the N-methyl-d-aspartate receptor complex, which allows electrical events at the postsynaptic membrane to be transduced into chemical signals which, in turn, are thought to activate both pre- and post Synaptic mechanisms to generate a persistent increase in synaptic strength.
Journal ArticleDOI

Exploring the Metabolic and Genetic Control of Gene Expression on a Genomic Scale

TL;DR: DNA microarrays containing virtually every gene of Saccharomyces cerevisiae were used to carry out a comprehensive investigation of the temporal program of gene expression accompanying the metabolic shift from fermentation to respiration, and the expression patterns of many previously uncharacterized genes provided clues to their possible functions.
Journal ArticleDOI

A simple method for organotypic cultures of nervous tissue

TL;DR: Hippocampal slices prepared from 2-23-day-old neonates were maintained in culture at the interface between air and a culture medium and yielded thin slices which remain 1-4 cell layers thick and are characterized by a well preserved organotypic organization.
Journal ArticleDOI

The unbiased estimation of number and sizes of arbitrary particles using the disector

D. C. Sterio
TL;DR: A three‐dimensional counting rule and its integral test system, the disector, for obtaining unbiased estimates of the number of arbitrary particles in a specimen is presented.
PatentDOI

Dissecting the regulatory circuitry of a eukaryotic genome

TL;DR: The results reveal an unanticipated level of regulation which is superimposed on that due to gene-specific transcription factors, a novel mechanism for coordinate regulation of specific sets of genes when cells encounter limiting nutrients, and evidence that the ultimate targets of signal transduction pathways can be identified within the initiation apparatus.
Related Papers (5)
Trending Questions (1)
How does aberrant neuronal morphology affect the mechanisms underlying LTP?

The provided paper does not discuss the effects of aberrant neuronal morphology on the mechanisms underlying LTP.