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Axonal degeneration in paraplegin-deficient mice is associated with abnormal mitochondria and impairment of axonal transport

Title
Axonal degeneration in paraplegin-deficient mice is associated with abnormal mitochondria and impairment of axonal transport
Type
Article in International Scientific Journal
Year
2004
Authors
Fátima Ferreirinha
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Quattrini, A
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Pirozzi, M
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Valsecchi, V
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Dina, G
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Broccoli, V
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Auricchio, A
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Piemonte, F
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Tozzi, G
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Gaeta, L
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Casari, G
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Ballabio, A
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Rugarli, EI
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Journal
Vol. 113
Pages: 231-242
ISSN: 0021-9738
Other information
Authenticus ID: P-000-D1J
Abstract (EN): in several neurodegenerative diseases, axonal degeneration occurs before neuronal death and contributes significantly to patients' disability. Hereditary spastic paraplegia (HSP) is a genetically heterogeneous condition characterized by selective degeneration of axons of the corticospinal tracts and fasciculus gracilis. HSP may therefore be considered an exemplary disease to study the local programs mediating axonal degeneration. We have developed a mouse model for autosomal recessive HSP due to mutations in the SPG7 gene encoding the mitochondrial ATPase paraplegin. Paraplegin-deficient mice are affected by a distal axonopathy of spinal and peripheral axons, characterized by axonal swelling and degeneration. We found that mitochondrial morphological abnormalities occurred in synaptic terminals and in distal regions of axons long before the first signs of swelling and degeneration and correlated with onset of motor impairment during a rotarod test. Axonal swellings occur through massive accumulation of organelles and neurofilaments, suggesting impairment of anterograde axonal transport. Retrograde axonal transport is delayed in symptomatic mice. We speculate that local failure of mitochondrial function may affect axonal transport and cause axonal degeneration. Our data suggest that a timely therapeutic intervention may prevent the loss of axons.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 12
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