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Alterations in CA1 Hippocampal Synapses in a Mouse Model of Fragile X Syndrome

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Journal Glia
Specialty Neurology
Date 2017 Dec 24
PMID 29274095
Citations 45
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Abstract

Fragile X Syndrome (FXS) is the major cause of inherited mental retardation and the leading genetic cause of Autism spectrum disorders. FXS is caused by mutations in the Fragile X Mental Retardation 1 (Fmr1) gene, which results in transcriptional silencing of Fragile X Mental Retardation Protein (FMRP). To elucidate cellular mechanisms involved in the pathogenesis of FXS, we compared dendritic spines in the hippocampal CA1 region of adult wild-type (WT) and Fmr1 knockout (Fmr1-KO) mice. Using diolistic labeling, confocal microscopy, and three-dimensional electron microscopy, we show a significant increase in the diameter of secondary dendrites, an increase in dendritic spine density, and a decrease in mature dendritic spines in adult Fmr1-KO mice. While WT and Fmr1-KO mice had the same mean density of spines, the variance in spine density was three times greater in Fmr1-KO mice. Reduced astrocyte participation in the tripartite synapse and less mature post-synaptic densities were also found in Fmr1-KO mice. We investigated whether the increase in synaptic spine density was associated with altered synaptic pruning during development. Our data are consistent with reduced microglia-mediated synaptic pruning in the CA1 region of Fmr1-KO hippocampi when compared with WT littermates at postnatal day 21, which is the peak period of synaptic pruning in the mouse hippocampus. Collectively, these results support abnormal synaptogenesis and synaptic remodeling in mice deficient in FMRP. Deficits in the maturation and distribution of synaptic spines on dendrites of CA1 hippocampal neurons may play a role in the intellectual disabilities associated with FXS.

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References
1.
Muddashetty R, Kelic S, Gross C, Xu M, Bassell G . Dysregulated metabotropic glutamate receptor-dependent translation of AMPA receptor and postsynaptic density-95 mRNAs at synapses in a mouse model of fragile X syndrome. J Neurosci. 2007; 27(20):5338-48. PMC: 6672337. DOI: 10.1523/JNEUROSCI.0937-07.2007. View

2.
Bourne J, Harris K . Do thin spines learn to be mushroom spines that remember?. Curr Opin Neurobiol. 2007; 17(3):381-6. DOI: 10.1016/j.conb.2007.04.009. View

3.
Wake H, Moorhouse A, Jinno S, Kohsaka S, Nabekura J . Resting microglia directly monitor the functional state of synapses in vivo and determine the fate of ischemic terminals. J Neurosci. 2009; 29(13):3974-80. PMC: 6665392. DOI: 10.1523/JNEUROSCI.4363-08.2009. View

4.
Bear M, Huber K, Warren S . The mGluR theory of fragile X mental retardation. Trends Neurosci. 2004; 27(7):370-7. DOI: 10.1016/j.tins.2004.04.009. View

5.
Harris K, Jensen F, Tsao B . Three-dimensional structure of dendritic spines and synapses in rat hippocampus (CA1) at postnatal day 15 and adult ages: implications for the maturation of synaptic physiology and long-term potentiation. J Neurosci. 1992; 12(7):2685-705. PMC: 6575840. View