Actin and microtubules in neurite initiation: Are MAPs the missing link?

被引:189
作者
Dehmelt, L
Halpain, S
机构
[1] Scripps Res Inst, Dept Cell Biol, La Jolla, CA 92037 USA
[2] Scripps Res Inst, Inst Childhood & Neglected Dis, La Jolla, CA 92037 USA
来源
JOURNAL OF NEUROBIOLOGY | 2004年 / 58卷 / 01期
关键词
microtubule-associated proteins; actin; microtubules; neurites; growth cones;
D O I
10.1002/neu.10284
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
During neurite initiation microtubules align to form a tight bundle and actin filaments reorganize to produce a growth cone. The mechanisms that underlie these highly coordinated cytoskeletal rearrangements are not yet fully understood. Recently, various levels of coordination between the actin- and microtubule-based cytoskeletons have been observed during cellular migration and morphogenesis, processes that share some similarities to neurite initiation. Direct, physical association between both cytoskeletons has been suggested, because microtubules often preferentially grow along actin bundles and transiently target actin-rich adhesion complexes. We propose that such physical association might be involved in force-based interactions and spatial organization of the two networks during neurite initiation as well. In addition, many signaling cascades that affect actin filaments are also involved in the regulation of microtubule dynamics, and vice versa. Although several candidates for mediating these effects have been identified in non-neuronal cells, the general mechanism is still poorly understood. In neurons certain plakins and neuron-specific microtubule associated proteins (MAPs), like MAP1B and MAP2, which can bind to both microtubules and F-actin, are promising candidates to play key roles in the specific cytoskeletal rearrangements controlling the transition from an undifferentiated state to neuritebearing morphology. Here we review the effects of MAN on microtubules and actin, as well as the coordination of both cytoskeletons during neurite initiation. (C) 2003 Wiley Periodicals, Inc.
引用
收藏
页码:18 / 33
页数:16
相关论文
共 126 条
  • [1] Motor proteins regulate force interactions between microtubules and microfilaments in the axon
    Ahmad, FJ
    Hughey, J
    Wittmann, T
    Hyman, A
    Greaser, M
    Baas, PW
    [J]. NATURE CELL BIOLOGY, 2000, 2 (05) : 276 - 280
  • [2] MAP2 and tau bind longitudinally along the outer ridges of microtubule protofilaments
    Al-Bassam, J
    Ozer, RS
    Safer, D
    Halpain, S
    Milligan, RA
    [J]. JOURNAL OF CELL BIOLOGY, 2002, 157 (07) : 1187 - 1196
  • [3] The suppression of brain cold-stable microtubules in mice induces synaptic defects associated with neuroleptic-sensitive behavioral disorders
    Andrieux, A
    Salin, PA
    Vernet, M
    Kujala, P
    Baratier, J
    Gory-Fauré, S
    Bosc, C
    Pointu, H
    Proietto, D
    Schweitzer, A
    Denarier, E
    Klumperman, J
    Job, D
    [J]. GENES & DEVELOPMENT, 2002, 16 (18) : 2350 - 2364
  • [4] Banker G., 1998, Culturing nerve cells
  • [5] NCAM-DEPENDENT NEURITE OUTGROWTH IS INHIBITED IN NEURONS FROM FYN-MINUS MICE
    BEGGS, HE
    SORIANO, P
    MANESS, PF
    [J]. JOURNAL OF CELL BIOLOGY, 1994, 127 (03) : 825 - 833
  • [6] Identification of a protein that interacts with tubulin dimers and increases the catastrophe rate of microtubules
    Belmont, LD
    Mitchison, TJ
    [J]. CELL, 1996, 84 (04) : 623 - 631
  • [7] Cloning, expression, and properties of the microtubule-stabilizing protein STOP
    Bosc, C
    Cronk, JD
    Pirollet, F
    Watterson, DM
    Haiech, J
    Job, D
    Margolis, RL
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (05) : 2125 - 2130
  • [8] BRAY D, 1985, J NEUROSCI, V5, P3204
  • [9] Myosin IIB is required for growth cone motility
    Bridgman, PC
    Dave, S
    Asnes, CF
    Tullio, AN
    Adelstein, RS
    [J]. JOURNAL OF NEUROSCIENCE, 2001, 21 (16) : 6159 - 6169
  • [10] Retrograde flow rate is increased in growth cones from myosin IIB knockout mice
    Brown, ME
    Bridgman, PC
    [J]. JOURNAL OF CELL SCIENCE, 2003, 116 (06) : 1087 - 1094