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Norway

PMID:22234171  

Growth defects and impaired cognitive-behavioral abilities in mice with knockout for Eif4h, a gene located in the mouse homolog of the Williams-Beuren syndrome critical region.

Simona Capossela | Luca Muzio | Alessandro Bertolo | Veronica Bianchi | Gabriele Dati | Linda Chaabane | Claudia Godi | Letterio S Politi | Stefano Biffo | Patrizia D'Adamo | Antonello Mallamaci | Maria Pannese
The American journal of pathology | 2012

Protein synthesis is a tightly regulated, energy-consuming process. The control of mRNA translation into protein is fundamentally important for the fine-tuning of gene expression; additionally, precise translational control plays a critical role in many cellular processes, including development, cellular growth, proliferation, differentiation, synaptic plasticity, memory, and learning. Eukaryotic translation initiation factor 4h (Eif4h) encodes a protein involved in the process of protein synthesis, at the level of initiation phase. Its human homolog, WBSCR1, maps on 7q11.23, inside the 1.6 Mb region that is commonly deleted in patients affected by the Williams-Beuren syndrome, which is a complex neurodevelopmental disorder characterized by cardiovascular defects, cerebral dysplasias and a peculiar cognitive-behavioral profile. In this study, we generated knockout mice deficient in Eif4h. These mice displayed growth retardation with a significant reduction of body weight that began from the first week of postnatal development. Neuroanatomical profiling results generated by magnetic resonance imaging analysis revealed a smaller brain volume in null mice compared with controls as well as altered brain morphology, where anterior and posterior brain regions were differentially affected. The inactivation of Eif4h also led to a reduction in both the number and complexity of neurons. Behavioral studies revealed severe impairments of fear-related associative learning and memory formation. These alterations suggest that Eif4h might contribute to certain deficits associated with Williams-Beuren syndrome.

Pubmed ID: 22234171

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: Telethon, Italy
    Id: GP0080Y01

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BayGenomics (tool)

RRID:SCR_008168

THIS RESOURCE IS NO LONGER IN SERVICE, documented August 29, 2016. The BayGenomics gene-trap resource provides researchers with access to thousands of mouse embryonic stem (ES) cell lines harboring characterized insertional mutations in both known and novel genes. The major goal of BayGenomics is to identify genes relevant to cardiovascular and pulmonary disease.

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Bio-Rad Biologic Protein Purification System (tool)

RRID:SCR_019682

Low-pressure chromatography system that is used for biomolecule purification with nucleic acid and protein detection. It has 254 and 280 nm filters, conductive cell, and a peristaltic pump with flow rate range of 0.05 to 40 ml per min.

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Bio-Rad Biologic Protein Purification System (tool)

RRID:SCR_019681

Low-pressure chromatography system that is used for biomolecule purification with nucleic acid and protein detection. It has 254 and 280 nm filters, conductive cell, and a peristaltic pump with flow rate range of 0.05 to 40 ml per min.

View all literature mentions