Fragile X-like behaviors and abnormal cortical dendritic spines in Cytoplasmic FMR1-interacting protein 2-mutant mice

  • Han K.; 
  • Chen H.; 
  • Gennarino V.A.; 
  • Richman R.; 
  • Lu H.-C.; 
  • 외 1명
Citations

SCOPUS

63

초록

Silencing of fragile X mental retardation 1 (FMR1) gene and loss of fragile X mental retardation protein (FMRP) cause fragile X syndrome (FXS), a genetic disorder characterized by intellectual disability and autistic behaviors. FMRP is an mRNA-binding protein regulating neuronal translation of target mRNAs. Abnormalities in actin-rich dendritic spines are major neuronal features in FXS, but the molecular mechanism and identity of FMRP targets mediating this phenotype remain largely unknown. Cytoplasmic FMR1-interacting protein 2 (Cyfip2) was identified as an interactor of FMRP, and its mRNA is a highly ranked FMRP target in mouse brain. Importantly, Cyfip2 is a component of WAVE regulatory complex, a key regulator of actin cytoskeleton, suggesting that Cyfip2 could be implicated in the dendritic spine phenotype of FXS. Here,we generated and characterized Cyfip2- mutant (Cyfip2+/-) mice.We found that Cyfip2+/- mice exhibited behavioral phenotypes similar to Fmr1-null (Fmr1-/y) mice, an animal model of FXS. Synaptic plasticity and dendritic spineswere normal in Cyfip2+/- hippocampus. However, dendritic spines were altered in Cyfip2+/- cortex, and the dendritic spine phenotype of Fmr1-/y cortexwas aggravated in Fmr1-/y; Cyfip2+/- doublemutant mice. In addition to the spine changes at basal state, metabotropic glutamate receptor (mGluR)-induced dendritic spine regulation was impaired in both Fmr1-/y and Cyfip2+/- cortical neurons. Mechanistically, mGluR activation induced mRNA translation-dependent increase of Cyfip2 in wild-type cortical neurons, but not in Fmr1-/y or Cyfip2+/- neurons. These results suggest that misregulation of Cyfip2 function and its mGluR-induced expression contribute to the neurobehavioral phenotypes of FXS. © The Author 2014. Published by Oxford University Press.

키워드

fragile X mental retardation protein; messenger RNA; metabotropic receptor; RNA binding protein; Cyfip2 protein, mouse; fragile X mental retardation protein; nerve protein; actin filament; animal cell; animal experiment; animal model; animal tissue; Article; autism; brain cell; controlled study; cytoplasmic FMR1 interacting protein 2 gene; dendritic spine; female; FMR1 gene; fragile X syndrome; gene; gene expression regulation; gene loss; gene silencing; hippocampus; intellectual impairment; male; mouse; mutant mouse strain; nerve cell plasticity; nonhuman; phenotype; priority journal; abnormalities; animal; animal behavior; brain cortex; C57BL mouse; cytoplasm; deficiency; dendritic spine; disease model; fragile X syndrome; genetics; human; knockout mouse; metabolism; pathophysiology; Animalia; Mus; Animals; Behavior, Animal; Cerebral Cortex; Cytoplasm; Dendritic Spines; Disease Models, Animal; Female; Fragile X Mental Retardation Protein; Fragile X Syndrome; Humans; Male; Mice; Mice, Inbred C57BL; Mice, Knockout; Nerve Tissue Proteins
제목
Fragile X-like behaviors and abnormal cortical dendritic spines in Cytoplasmic FMR1-interacting protein 2-mutant mice
저자
Han K.; Chen H.; Gennarino V.A.; Richman R.; Lu H.-C.; Zoghbi H.Y.
DOI
10.1093/hmg/ddu595
발행일
2014
유형
Article
저널명
Human Molecular Genetics
권
24
호
7
페이지
1813 ~ 1823