Localization of the kinesin-like protein Xklp2 to spindle poles requires a leucine zipper, a microtubule-associated protein, and dynein

被引:162
作者
Wittmann, T
Boleti, H
Antony, C
Karsenti, E
Vernos, I
机构
[1] European Mol Biol Lab, Cell Biol Program, D-69117 Heidelberg, Germany
[2] European Mol Biol Lab, Cell Biophys Program, D-69117 Heidelberg, Germany
[3] Inst Pasteur, F-75724 Paris 15, France
[4] Inst Curie, F-75248 Paris 05, France
关键词
kinesin-like protein; microtubule-associated protein; spindle; microtubule; dynein;
D O I
10.1083/jcb.143.3.673
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Xklp2 is a plus end-directed Xenopus kinesin-like protein localized at spindle poles and required for centrosome separation during spindle assembly in Xenopus egg extracts. A glutathione-S-transferase fusion protein containing the COOH-terminal domain of Xklp2 (GST-Xklp2-Tail) was previously found to localize to spindle poles (Boleti, H., E. Karsenti, and I. Vernos. 1996. Cell. 84:49-59). Now, we have examined the mechanism of localization of GST-Xklp2-Tail. Immunofluorescence and electron microscopy showed that Xklp2 and GST-Xklp2-Tail localize specifically to the minus ends of spindle pole and aster microtubules in mitotic, but not in interphase, Xenopus egg extracts. We found that dimerization and a COOH-terminal leucine zipper are required for this localization: a single point mutation in the leucine zipper prevented targeting. The mechanism of localization is complex and two additional factors in mitotic egg extracts are required for the targeting of GST-Xklp2-Tail to microtubule minus ends: (a) a novel 100-kD microtubule-associated protein that we named TPX2 (Targeting protein for Xklp2) that mediates the binding of GST-Xklp2-Tail to microtubules and (b) the dynein-dynactin complex that is required for the accumulation of GST-Xklp2-Tail at microtubule minus ends. We propose two molecular mechanisms that could account for the localization of Xklp2 to microtubule minus ends.
引用
收藏
页码:673 / 685
页数:13
相关论文
共 56 条
  • [1] IDENTIFICATION OF THE CHROMOSOME LOCALIZATION DOMAIN OF THE DROSOPHILA NOD KINESIN-LIKE PROTEIN
    AFSHAR, K
    SCHOLEY, J
    HAWLEY, RS
    [J]. JOURNAL OF CELL BIOLOGY, 1995, 131 (04) : 833 - 843
  • [2] DNA-BINDING AND MEIOTIC CHROMOSOMAL LOCALIZATION OF THE DROSOPHILA NOD KINESIN-LIKE PROTEIN
    AFSHAR, K
    BARTON, NR
    HAWLEY, RS
    GOLDSTEIN, LSB
    [J]. CELL, 1995, 81 (01) : 129 - 138
  • [3] XMAP310: A Xenopus rescue-promoting factor localized to the mitotic spindle
    Andersen, SSL
    Karsenti, E
    [J]. JOURNAL OF CELL BIOLOGY, 1997, 139 (04) : 975 - 983
  • [4] Ashford AJ, 1998, CELL BIOLOGY - A LABORATORY HANDBOOK, 2ND EDITION, VOL 2, P205
  • [5] Going mobile: Microtubule motors and chromosome segregation
    Barton, NR
    Goldstein, LSB
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (05) : 1735 - 1742
  • [6] PREDICTING COILED COILS BY USE SF PAIRWISE RESIDUE CORRELATIONS
    BERGER, B
    WILSON, DB
    WOLF, E
    TONCHEV, T
    MILLA, M
    KIM, PS
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (18) : 8259 - 8263
  • [7] Phosphorylation by p34(cdc2) protein kinase regulates binding of the kinesin-related motor HsEg5 to the dynactin subunit p150(Glued)
    Blangy, A
    Arnaud, L
    Nigg, EA
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (31) : 19418 - 19424
  • [8] Phosphorylation by p34(cdc2) regulates spindle association of human Eg5, a kinesin-related motor essential for bipolar spindle formation in vivo
    Blangy, A
    Lane, HA
    dHerin, P
    Harper, M
    Kress, M
    Nigg, EA
    [J]. CELL, 1995, 83 (07) : 1159 - 1169
  • [9] Xklp2, a novel Xenopus centrosomal kinesin-like protein required for centrosome separation during mitosis
    Boleti, H
    Karsenti, E
    Vernos, I
    [J]. CELL, 1996, 84 (01) : 49 - 59
  • [10] STRUCTURAL AND CHEMICAL CHARACTERIZATION OF ISOLATED CENTROSOMES
    BORNENS, M
    PAINTRAND, M
    BERGES, J
    MARTY, MC
    KARSENTI, E
    [J]. CELL MOTILITY AND THE CYTOSKELETON, 1987, 8 (03): : 238 - 249