Abnormal neurofilament transport caused by targeted disruption of neuronal kinesin heavy chain KIF5A
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Open Access
- 7 April 2003
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 161 (1), 55-66
- https://doi.org/10.1083/jcb.200301026
Abstract
To test the hypothesis that fast anterograde molecular motor proteins power the slow axonal transport of neurofilaments (NFs), we used homologous recombination to generate mice lacking the neuronal-specific conventional kinesin heavy chain, KIF5A. Because null KIF5A mutants die immediately after birth, a synapsin-promoted Cre-recombinase transgene was used to direct inactivation of KIF5A in neurons postnatally. Three fourths of such mutant mice exhibited seizures and death at around 3 wk of age; the remaining animals survived to 3 mo or longer. In young mutant animals, fast axonal transport appeared to be intact, but NF-H, as well as NF-M and NF-L, accumulated in the cell bodies of peripheral sensory neurons accompanied by a reduction in sensory axon caliber. Older animals also developed age-dependent sensory neuron degeneration, an accumulation of NF subunits in cell bodies and a reduction in axons, loss of large caliber axons, and hind limb paralysis. These data support the hypothesis that a conventional kinesin plays a role in the microtubule-dependent slow axonal transport of at least one cargo, the NF proteins.Keywords
This publication has 43 references indexed in Scilit:
- The Road Less Traveled: Emerging Principles of Kinesin Motor UtilizationAnnual Review of Cell and Developmental Biology, 1999
- Chromosomal Localization Reveals Three Kinesin Heavy Chain Genes in MouseGenomics, 1998
- Delayed Maturation of Regenerating Myelinated Axons in Mice Lacking NeurofilamentsExperimental Neurology, 1997
- Characterization of KIFC2, a Neuronal Kinesin Superfamily Member in MouseNeuron, 1997
- An Essential Cytoskeletal Linker Protein Connecting Actin Microfilaments to Intermediate FilamentsCell, 1996
- Gene targeting of BPAG1: Abnormalities in mechanical strength and cell migration in stratified epithelia and neurologic degenerationCell, 1995
- Cloning and localization of a conventional kinesin motor expressed exclusively in neuronsNeuron, 1994
- Cloning and expression of a human kinesin heavy chain gene: interaction of the COOH-terminal domain with cytoplasmic microtubules in transfected CV-1 cellsThe Journal of cell biology, 1992
- Slow axonal transport mechanisms move neurofilaments relentlessly in mouse optic axons.The Journal of cell biology, 1992
- Slow axonal transportCurrent Opinion in Cell Biology, 1992