Als2-deficient mice exhibit disturbances in endosome trafficking associated with motor behavioral abnormalities
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Peer Reviewed
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Author (aut): Devon, R. S.
Author (aut): Orban, P. C.
Author (aut): Gerrow, K.
Author (aut): Barbieri, M. A.
Author (aut): Schwab, C.
Author (aut): Cao, L. P.
Author (aut): Helm, J. R.
Author (aut): Bissada, N.
Author (aut): Cruz-Aguado, Reyniel
Author (aut): Davidson, T.-L.
Author (aut): Witmer, J.
Author (aut): Metzler, M.
Author (aut): Lam, C. K.
Author (aut): Tetzlaff, W.
Author (aut): Simpson, E. M.
Author (aut): McCaffery, J. M.
Author (aut): El-Husseini, A. E.
Author (aut): Leavitt, B. R.
Author (aut): Hayden, M. R.
Editor (edt): Zoghbi, Huda Y.
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Abstract |
Abstract
ALS2 is an autosomal recessive form of spastic paraparesis (motor neuron disease) with juvenile onset and slow progression caused by loss of function of alsin, an activator of Rac1 and Rab5 small GTPases. To establish an animal model of ALS2 and derive insights into the pathogenesis of this illness, we have generated alsin-null mice. Cytosol from brains of Als2 mice shows marked diminu- tion of Rab5-dependent endosome fusion activity. Furthermore, primary neurons from Als2 mice show a disturbance in endo- somal transport of insulin-like growth factor 1 (IGF1) and BDNF receptors, whereas neuronal viability and endocytosis of trans- ferrin and dextran seem unaltered. There is a significant decrease in the size of cortical motor neurons, and Als2 mice are mildly hypoactive. Altered trophic receptor trafficking in neurons of Als2 mice may underlie the histopathological and behavioral changes observed and the pathogenesis of ALS2.
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Volume 103, Issue 25
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DOI |
DOI
10.1073/pnas.0510197103
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00278424
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Use and Reproduction |
Use and Reproduction
©2006. National Academy of Sciences.
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Rights Statement
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Keywords |
Keywords
motor neuron
Rab5
ALS
alsin
knockout mouse
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