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Published on: November 29, 2016
The HERC2 ubiquitin ligase is essential for embryonic development and regulates motor coordination
Monica Cubillos-Rojas1, Taiane Schneider1, Ouadah Hadjebi1
1Departament de Ciències Fisiològiques, IDIBELL, Campus de Bellvitge, Universitat de Barcelona, L'Hospitalet de Llobregat, Barcelona, Spain.
Abstract:
A mutation in the HERC2 gene has been linked to a severe neurodevelopmental disorder with similarities to the Angelman syndrome. This gene codifies a protein with ubiquitin ligase activity that regulates the activity of tumor protein p53 and is involved in important cellular processes such as DNA repair, cell cycle, cancer, and iron metabolism. Despite the critical role of HERC2 in these physiological and pathological processes, little is known about its relevance in vivo. Here, we described a mouse with targeted inactivation of the Herc2 gene. Homozygous mice were not viable. Distinct from other ubiquitin ligases that interact with p53, such as MDM2 or MDM4, p53 depletion did not rescue the lethality of homozygous mice. The HERC2 protein levels were reduced by approximately one-half in heterozygous mice. Consequently, HERC2 activities, including ubiquitin ligase and stimulation of p53 activity, were lower in heterozygous mice. A decrease in HERC2 activities was also observed in human skin fibroblasts from individuals with an Angelman-like syndrome that express an unstable mutant protein of HERC2. Behavioural analysis of heterozygous mice identified an impaired motor synchronization with normal neuromuscular function. This effect was not observed in p53 knockout mice, indicating that a mechanism independent of p53 activity is involved. Morphological analysis showed the presence of HERC2 in Purkinje cells and a specific loss of these neurons in the cerebella of heterozygous mice. In these animals, an increase of autophagosomes and lysosomes was observed. Our findings establish a crucial role of HERC2 in embryonic development and motor coordination.
Insights
The HERC2 gene is crucial for embryonic development and motor coordination. Inactivating HERC2 in mice led to developmental issues and impaired motor synchronization, independent of p53 activity.
Area of Science:
- Genetics
- Neuroscience
- Developmental Biology
Background:
- A HERC2 gene mutation is linked to Angelman-like syndrome.
- HERC2 protein has ubiquitin ligase activity, regulating tumor protein p53 and cellular processes.
- The in vivo relevance of HERC2 remains largely unknown.
Purpose of the Study:
- To investigate the in vivo role of the HERC2 gene.
- To characterize the function of HERC2 in embryonic development and motor coordination.
Main Methods:
- Generated and analyzed Herc2-inactivated mice (homozygous and heterozygous).
- Assessed HERC2 protein levels, activity, and p53 interactions.
- Performed behavioral analysis and morphological examination of the cerebellum.
Main Results:
- Homozygous Herc2-inactivated mice were not viable.
- Heterozygous mice showed reduced HERC2 levels and activity, impacting p53 stimulation.
- Impaired motor synchronization and Purkinje cell loss were observed in heterozygous mice, independent of p53.
- Increased autophagosomes and lysosomes were noted in affected cerebella.
Conclusions:
- HERC2 plays a critical role in embryonic development and motor coordination.
- A p53-independent mechanism underlies HERC2's role in motor function.
- HERC2 deficiency impacts neuronal integrity and cellular processes like autophagy.
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