Heterotrimeric kinesin-II is required for the assembly of motile 9+2 ciliary axonemes on sea urchin embryos

被引:154
作者
Morris, RL [1 ]
Scholey, JM [1 ]
机构
[1] UNIV CALIF DAVIS, SECT MOL & CELLULAR BIOL, DAVIS, CA 95616 USA
关键词
D O I
10.1083/jcb.138.5.1009
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Heterotrimeric kinesin-II is a plus end-directed microtubule (MT) motor protein consisting of distinct heterodimerized motor subunits associated with an accessory subunit. To probe the intracellular transport functions of kinesin-II, we microinjected fertilized sea urchin eggs with an anti-kinesin-II monoclonal antibody, and we observed a dramatic inhibition of ciliogenesis at the blastula stage characterized by the assembly of short, paralyzed, 9+0 ciliary axonemes that lack central pair MTs. Control embryos show no such defect and form swimming blastulae with normal, motile, 9+2 cilia that contain kinesin-II as detected by Western blotting. Injection of anti-kinesin-II into one blastomere of a two-cell embryo leads to the development of chimeric blastulae covered on one side with short, paralyzed cilia, and on the other with normal, beating cilia. We observed a unimodal length distribution of short cilia on anti-kinesin-II-injected embryos corresponding to the first mode of the trimodal distribution of ciliary lengths observed for control embryos. This short mode may represent a default ciliary assembly intermediate. We hypothesize that kinesin-II functions during ciliogenesis to deliver ciliary components that are required for elongation of the assembly intermediate and for formation of stable central pair MTs. Thus, kinesin-II plays a critical role in embryonic development by supporting the maturation of nascent cilia to generate long motile organelles capable of producing the propulsive forces required for swimming and feeding.
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页码:1009 / 1022
页数:14
相关论文
共 75 条
  • [1] KINESIN FAMILY IN MURINE CENTRAL-NERVOUS-SYSTEM
    AIZAWA, H
    SEKINE, Y
    TAKEMURA, R
    ZHANG, ZZ
    NANGAKU, M
    HIROKAWA, N
    [J]. JOURNAL OF CELL BIOLOGY, 1992, 119 (05) : 1287 - 1296
  • [2] CILIA REGENERATION IN SEA URCHIN EMBRYO - EVIDENCE FOR A POOL OF CILIARY PROTEINS
    AUCLAIR, W
    SIEGEL, BW
    [J]. SCIENCE, 1966, 154 (3751) : 913 - +
  • [3] Beech PL, 1996, J CELL SCI, V109, P889
  • [4] Bernstein Mitchell, 1994, Trends in Cell Biology, V4, P236, DOI 10.1016/0962-8924(94)90115-5
  • [5] Kinesin- and myosin-driven steps of vesicle recruitment for Ca2+-regulated exocytosis
    Bi, GQ
    Morris, RL
    Liao, GC
    Alderton, JM
    Scholey, JM
    Steinhardt, RA
    [J]. JOURNAL OF CELL BIOLOGY, 1997, 138 (05) : 999 - 1008
  • [6] BLOOM GS, 1994, PROTEIN PROFILE, V1, P1059
  • [7] BENDING PATTERNS OF CHLAMYDOMONAS FLAGELLA .4. MUTANTS WITH DEFECTS IN INNER AND OUTER DYNEIN ARMS INDICATE DIFFERENCES IN DYNEIN ARM FUNCTION
    BROKAW, CJ
    KAMIYA, R
    [J]. CELL MOTILITY AND THE CYTOSKELETON, 1987, 8 (01): : 68 - 75
  • [8] CONTROL OF FLAGELLAR BENDING - A NEW AGENDA BASED ON DYNEIN DIVERSITY
    BROKAW, CJ
    [J]. CELL MOTILITY AND THE CYTOSKELETON, 1994, 28 (03): : 199 - 204
  • [9] BURNS RG, 1973, J CELL SCI, V13, P55
  • [10] BURNS RG, 1979, J CELL SCI, V37, P205