Suppression of KIF2 in PC12 cells alters the distribution of a growth cone nonsynaptic membrane receptor and inhibits neurite extension

被引:64
作者
Morfini, G
Quiroga, S
Rosa, A
Kosik, K
Caceres, A
机构
[1] INST MERCEDES & MARTIN FERREYRA,RA-5000 CORDOBA,ARGENTINA
[2] UNIV NACL CORDOBA,FAC CIENCIAS QUIM,DEPT QUIM BIOL,CONICET,RA-5000 CORDOBA,ARGENTINA
[3] HARVARD UNIV,SCH MED,DEPT NEUROL NEUROSCI,BOSTON,MA 02215
[4] BRIGHAM & WOMENS HOSP,CTR NEUROL DIS,DEPT MED,DIV NEUROL,BOSTON,MA 02115
关键词
D O I
10.1083/jcb.138.3.657
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In the present study, we present evidence about the cellular functions of KIF2, a kinesin-like superfamily member having a unique structure in that its motor domain is localized at the center of the molecule (Noda Y., Y. Sato-Yoshitake, S. Kondo, M. Nangaku, and N. Hirokawa, 1995. J. Cell Biol, 129:157-167.). Using subcellular fractionation techniques, isopicnic sucrose density centrifugation of microsomal fractions from developing rat cerebral cortex, and immunoisolation with KIF2 antibodies, we have now identified a type of nonsynaptic vesicle that associates with KIF2. This type of organelle lacks synaptic vesicle markers (synapsin, synaptophysin), amyloid precursor protein, GAP-43, or N-cadherin, On the other hand, it contains beta(gc), which is a novel variant of the beta subunit of the IGF-1 receptor, which is highly enriched in growth cone membranes. Both beta(gc) and KIF2 are upregulated by NGF in PC12 cells and highly concentrated in growth cones of developing neurons. We have also analyzed the consequences of KIF2 suppression by antisense oligonucleotide treatment on nerve cell morphogenesis and the distribution of synaptic and nonsynaptic vesicle markers. KIF2 suppression results in a dramatic accumulation of beta(gc) within the cell body and in its complete disappearance from growth cones; no alterations in the distribution of synapsin, synaptophysin, GAP-43, or amyloid percursor protein are detected in KIF2-suppressed neurons. Instead, all of them remained highly enriched at nerve terminals. KIF2 suppression also produces a dramatic inhibition of neurite outgrowth; this phenomenon occurs after beta(gc) has disappeared from growth cones. Taken collectively, our results suggest an important role for KIF2 in neurite extension, a phenomenon that may be related with the anterograde transport of a type of nonsynaptic vesicle that contains as one of its components a growth cone membrane receptor for IGF-1, a growth factor implicated in nerve cell development.
引用
收藏
页码:657 / 669
页数:13
相关论文
共 54 条
[31]  
ISHII DN, 1993, ANN NY ACAD SCI, V692, P172
[32]   KIF3A IS A NEW MICROTUBULE-BASED ANTEROGRADE MOTOR IN THE NERVE AXON [J].
KONDO, S ;
SATOYOSHITAKE, R ;
NODA, Y ;
AIZAWA, H ;
NAKATA, T ;
MATSUURA, Y ;
HIROKAWA, N .
JOURNAL OF CELL BIOLOGY, 1994, 125 (05) :1095-1107
[33]  
LIU JP, 1993, CELL, V75, P59, DOI 10.1016/0092-8674(93)90679-K
[34]  
MASCOTTI F, 1996, J NEUROSCI, V15, P1447
[35]   CYTOSKELETAL DYNAMICS AND NERVE GROWTH [J].
MITCHISON, T ;
KIRSCHNER, M .
NEURON, 1988, 1 (09) :761-772
[36]   POINT MUTATION OF ADENOSINE TRIPHOSPHATE-BINDING MOTIF GENERATED RIGOR KINESIN THAT SELECTIVELY BLOCKS ANTEROGRADE LYSOSOME MEMBRANE-TRANSPORT [J].
NAKATA, T ;
HIROKAWA, N .
JOURNAL OF CELL BIOLOGY, 1995, 131 (04) :1039-1053
[37]   KIF1B, A NOVEL MICROTUBULE PLUS END-DIRECTED MONOMERIC MOTOR PROTEIN FOR TRANSPORT OF MITOCHONDRIA [J].
NANGAKU, M ;
SATOYOSHITAKE, R ;
OKADA, Y ;
NODA, Y ;
TAKEMURA, R ;
YAMAZAKI, H ;
HIROKAWA, N .
CELL, 1994, 79 (07) :1209-1220
[38]   KIF2 IS A NEW MICROTUBULE-BASED ANTEROGRADE MOTOR THAT TRANSPORTS MEMBRANOUS ORGANELLES DISTINCT FROM THOSE CARRIED BY KINESIN HEAVY-CHAIN OR KIF3A/B [J].
NODA, Y ;
SATOYOSHITAKE, R ;
KONDO, S ;
NANGAKU, M ;
HIROKAWA, N .
JOURNAL OF CELL BIOLOGY, 1995, 129 (01) :157-167
[39]   THE NEURON-SPECIFIC KINESIN SUPERFAMILY PROTEIN KIF1A IS A UNIQUE MONOMERIC MOTOR FOR ANTEROGRADE AXONAL-TRANSPORT OF SYNAPTIC VESICLE PRECURSORS [J].
OKADA, Y ;
YAMAZAKI, H ;
SEKINEAIZAWA, Y ;
HIROKAWA, N .
CELL, 1995, 81 (05) :769-780
[40]   INSULIN-LIKE GROWTH-FACTOR-I RECEPTORS OF FETAL BRAIN ARE ENRICHED IN NERVE GROWTH CONES AND CONTAIN A BETA-SUBUNIT VARIANT [J].
QUIROGA, S ;
GAROFALO, RS ;
PFENNINGER, KH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (10) :4309-4312