Abnormal neurofilament transport caused by targeted disruption of neuronal kinesin heavy chain KIF5A

被引:262
作者
Xia, CH
Roberts, EA
Her, LS
Liu, XR
Williams, DS
Cleveland, DW
Goldstein, LSB
机构
[1] Univ Calif San Diego, HHMI CMM, La Jolla, CA 92093 USA
[2] Univ Calif San Diego, Dept Pharmacol, La Jolla, CA 92093 USA
[3] Univ Calif San Diego, Ludwig Inst Canc Res, La Jolla, CA 92093 USA
[4] Univ Calif San Diego, Dept Med, La Jolla, CA 92093 USA
[5] Univ Calif San Diego, Dept Neurosurg, La Jolla, CA 92093 USA
关键词
slow axonal transport; neuronal kinesin heavy chain KIF5A; neurofilament; axonal caliber; DRG sensory neuron;
D O I
10.1083/jcb.200301026
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
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.
引用
收藏
页码:55 / 66
页数:12
相关论文
共 45 条
[1]   NATIVE STRUCTURE AND PHYSICAL-PROPERTIES OF BOVINE BRAIN KINESIN AND IDENTIFICATION OF THE ATP-BINDING SUBUNIT POLYPEPTIDE [J].
BLOOM, GS ;
WAGNER, MC ;
PFISTER, KK ;
BRADY, ST .
BIOCHEMISTRY, 1988, 27 (09) :3409-3416
[2]  
BLOOM GS, 1995, PROTEIN PROFILE, V2, P1109
[3]   A NOVEL BRAIN ATPASE WITH PROPERTIES EXPECTED FOR THE FAST AXONAL-TRANSPORT MOTOR [J].
BRADY, ST .
NATURE, 1985, 317 (6032) :73-75
[4]   Absence of the mid-sized neurofilament subunit decreases axonal calibers, levels of light neurofilament (NF-L), and neurofilament content [J].
Elder, GA ;
Friedrich, VL ;
Bosco, P ;
Kang, CH ;
Gourov, A ;
Tu, PH ;
Lee, VMY ;
Lazzarini, RA .
JOURNAL OF CELL BIOLOGY, 1998, 141 (03) :727-739
[5]   Requirement of heavy neurofilament subunit in the development of axons with large calibers [J].
Elder, GA ;
Friedrich, VL ;
Kang, CH ;
Bosco, P ;
Gourov, A ;
Tu, PH ;
Zhang, B ;
Lee, VMY ;
Lazzarini, RA .
JOURNAL OF CELL BIOLOGY, 1998, 143 (01) :195-205
[6]   NEUROFILAMENT-DEFICIENT AXONS AND PERIKARYAL AGGREGATES IN VIABLE TRANSGENIC MICE EXPRESSING A NEUROFILAMENT-BETA-GALACTOSIDASE FUSION PROTEIN [J].
EYER, J ;
PETERSON, A .
NEURON, 1994, 12 (02) :389-405
[7]   Aberrant neurofilament phosphorylation in sensory neurons of rats with diabetic neuropathy [J].
Fernyhough, P ;
Gallagher, A ;
Averill, SA ;
Priestley, JV ;
Hounsom, L ;
Patel, J ;
Tomlinson, DR .
DIABETES, 1999, 48 (04) :881-889
[8]   Slow transport of unpolymerized tubulin and polymerized neurofilament in the squid giant axon [J].
Galbraith, JA ;
Reese, TS ;
Schlief, ML ;
Gallant, PE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (20) :11589-11594
[9]   The road less traveled: Emerging principles of kinesin motor utilization [J].
Goldstein, LSB ;
Philp, AV .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 1999, 15 :141-183
[10]   GENE TARGETING OF BPAG1 - ABNORMALITIES IN MECHANICAL STRENGTH AND CELL-MIGRATION IN STRATIFIED EPITHELIA AND NEUROLOGIC DEGENERATION [J].
GUO, LF ;
DEGENSTEIN, L ;
DOWLING, J ;
YU, QC ;
WOLLMANN, R ;
PERMAN, B ;
FUCHS, E .
CELL, 1995, 81 (02) :233-243