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Sex-dependent effects of amyloid precursor-like protein 2 in the SOD1-G37R transgenic mouse model of MND
Phan H Truong1,2, Peter J Crouch3, James B W Hilton3
1Department of Biochemistry and Pharmacology, The University of Melbourne, Parkville, VIC, 3010, Australia. phan.truong@florey.edu.au.
Abstract:
Motor neurone disease (MND) is a neurodegenerative disorder characterised by progressive destruction of motor neurons, muscle paralysis and death. The amyloid precursor protein (APP) is highly expressed in the central nervous system and has been shown to modulate disease outcomes in MND. APP is part of a gene family that includes the amyloid precursor-like protein 1 (APLP1) and 2 (APLP2) genes. In the present study, we investigated the role of APLP2 in MND through the examination of human spinal cord tissue and by crossing APLP2 knockout mice with the superoxide dismutase 1 (SOD1-G37R) transgenic mouse model of MND. We found the expression of APLP2 is elevated in the spinal cord from human cases of MND and that this feature of the human disease is reproduced in SOD1-G37R mice at the End-stage of their MND-like phenotype progression. APLP2 deletion in SOD1-G37R mice significantly delayed disease progression and increased the survival of female SOD1-G37R mice. Molecular and biochemical analysis showed female SOD1-G37R:APLP2-/- mice displayed improved innervation of the neuromuscular junction, ameliorated atrophy of muscle fibres with increased APP protein expression levels in the gastrocnemius muscle. These results indicate a sex-dependent role for APLP2 in mutant SOD1-mediated MND and further support the APP family as a potential target for further investigation into the cause and regulation of MND.
Insights
Amyloid precursor-like protein 2 (APLP2) plays a sex-dependent role in motor neurone disease (MND). Reducing APLP2 in mice delayed disease progression and improved survival in females, suggesting APLP2 as a therapeutic target.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Motor neurone disease (MND) involves motor neuron destruction, leading to paralysis and death.
- Amyloid precursor protein (APP) and its family members (APLP1, APLP2) are expressed in the central nervous system and influence MND outcomes.
Purpose of the Study:
- To investigate the role of amyloid precursor-like protein 2 (APLP2) in motor neurone disease (MND).
- To examine APLP2 expression in human MND spinal cord tissue and its impact in a mouse model.
Main Methods:
- Examined human spinal cord tissue from MND patients.
- Crossed APLP2 knockout mice with SOD1-G37R transgenic mice (a model for MND).
- Analyzed neuromuscular junction innervation, muscle fiber atrophy, and APP protein levels.
Main Results:
- APLP2 expression was elevated in human MND spinal cords and in SOD1-G37R mice.
- APLP2 deletion in SOD1-G37R mice significantly delayed disease progression.
- Female SOD1-G37R mice lacking APLP2 showed increased survival, improved neuromuscular junctions, and reduced muscle atrophy.
Conclusions:
- APLP2 has a sex-dependent role in mutant SOD1-mediated MND.
- The APP family, including APLP2, represents a potential therapeutic target for MND research.
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