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Developmental Expression of Mutant PFN1 in Motor Neurons Impacts Neuronal Growth and Motor Performance of Young and Adult Mice.


ABSTRACT: Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease with limited treatment and no cure. Mutations in profilin 1 were identified as a cause of familial ALS (fALS) in 2012. We investigated the functional impact of mutant profilin 1 expression in spinal cords during mouse development. We developed a novel mouse model with the expression of profilin 1 C71G under the control of the Hb9 promoter, targeting expression to α-motor neurons in the spinal cord during development. Embryos of transgenic mice showed evidence of a significant reduction of brachial nerve diameter and a loss of Mendelian inheritance. Despite the lack of transgene expression, adult mice presented with significant motor deficits. Transgenic mice had a significant reduction in the number of motor neurons in the spinal cord. Further analysis of these motor neurons in aged transgenic mice revealed reduced levels of TDP-43 and ChAT expression. Although profilin 1 C71G was only expressed during development, adult mice presented with some ALS-associated pathology and motor symptoms. This study highlights the effect of profilin 1 during neurodevelopment and the impact that this may have in later ALS.

SUBMITTER: Brettle M 

PROVIDER: S-EPMC6776973 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Developmental Expression of Mutant PFN1 in Motor Neurons Impacts Neuronal Growth and Motor Performance of Young and Adult Mice.

Brettle Merryn M   Stefen Holly H   Djordjevic Aleksandra A   Fok Sandra Y Y SYY   Chan Josephine W JW   van Hummel Annika A   van der Hoven Julia J   Przybyla Magdalena M   Volkerling Alexander A   Ke Yazi D YD   Delerue Fabien F   Ittner Lars M LM   Fath Thomas T  

Frontiers in molecular neuroscience 20190927


Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease with limited treatment and no cure. Mutations in <i>profilin 1</i> were identified as a cause of familial ALS (fALS) in 2012. We investigated the functional impact of mutant profilin 1 expression in spinal cords during mouse development. We developed a novel mouse model with the expression of profilin 1 C71G under the control of the <i>Hb9</i> promoter, targeting expression to α-motor neurons in the spinal cord during  ...[more]

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