Interaction of kinesin motor domains with alpha- and beta-tubulin subunits at a tau-independent binding site - Regulation by polyglutamylation

被引:148
作者
Larcher, JC [1 ]
Boucher, D [1 ]
Lazereg, S [1 ]
Gros, F [1 ]
Denoulet, P [1 ]
机构
[1] UNIV PARIS 06, COLL FRANCE, F-75005 PARIS, FRANCE
关键词
D O I
10.1074/jbc.271.36.22117
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
interaction of rat kinesin and Drosophila nonclaret disjunctional motor domains with tubulin was studied by a blot overlay assay. Either plus-end or minus-end-directed motor domain binds at the same extent to both alpha- and beta-tubulin subunits, suggesting that kinesin binding is an intrinsic property of each tubulin subunit and that motor directionality cannot be related to a preferential interaction with a given tubulin subunit. Binding features of dimeric versus monomeric rat kinesin heads suggest that dimerization could drive conformational changes to enhance binding to tubulin. Competition experiments have indicated that kinesin interacts with tubulin at a Tau-independent binding site. Complementary experiments have shown that kinesin does not interact with the same efficiency with the different tubulin isoforms. Masking the polyglutamyl chains with a specific monoclonal antibody leads to a complete inhibition of kinesin binding. These results are consistent with a model in which polyglutamylation of tubulin regulates kinesin binding through progressive conformational changes of the whole carboxyl-terminal domain of tubulin as a function of the polyglutamyl chain length, thus modulating the affinity of tubulin for kinesin and Tau as well. These results indicate that microtubules, through tubulin polymorphism, do have the ability to control microtubule-associated protein binding.
引用
收藏
页码:22117 / 22124
页数:8
相关论文
共 58 条
[1]  
ALLAN V, 1995, J CELL BIOL, V127, P1671
[2]   SITE-DIRECTED ANTIBODIES TO TUBULIN [J].
ANDREU, JM ;
DEPEREDA, JM .
CELL MOTILITY AND THE CYTOSKELETON, 1993, 26 (01) :1-6
[3]   REVERSIBLE POLYGLUTAMYLATION OF ALPHA-TUBULIN AND BETA-TUBULIN AND MICROTUBULE DYNAMICS IN MOUSE-BRAIN NEURONS [J].
AUDEBERT, S ;
DESBRUYERES, E ;
GRUSZCZYNSKI, C ;
KOULAKOFF, A ;
GROS, F ;
DENOULET, P ;
EDDE, B .
MOLECULAR BIOLOGY OF THE CELL, 1993, 4 (06) :615-626
[4]  
AUDEBERT S, 1994, J CELL SCI, V107, P2313
[5]   A NEW KINESIN-LIKE PROTEIN (KLP1) LOCALIZED TO A SINGLE MICROTUBULE OF THE CHLAMYDOMONAS-FLAGELLUM [J].
BERNSTEIN, M ;
BEECH, PL ;
KATZ, SG ;
ROSENBAUM, JL .
JOURNAL OF CELL BIOLOGY, 1994, 125 (06) :1313-1326
[6]   PHOSPHORYLATION OF SER(262) STRONGLY REDUCES BINDING OF TAU-PROTEIN TO MICROTUBULES - DISTINCTION BETWEEN PHF-LIKE IMMUNOREACTIVITY AND MICROTUBULE-BINDING [J].
BIERNAT, J ;
GUSTKE, N ;
DREWES, G ;
MANDELKOW, EM ;
MANDELKOW, E .
NEURON, 1993, 11 (01) :153-163
[7]   Phosphorylation by p34(cdc2) regulates spindle association of human Eg5, a kinesin-related motor essential for bipolar spindle formation in vivo [J].
Blangy, A ;
Lane, HA ;
dHerin, P ;
Harper, M ;
Kress, M ;
Nigg, EA .
CELL, 1995, 83 (07) :1159-1169
[8]   POLYGLUTAMYLATION OF TUBULIN AS A PROGRESSIVE REGULATOR OF IN-VITRO INTERACTIONS BETWEEN THE MICROTUBULE-ASSOCIATED PROTEIN-TAU AND TUBULIN [J].
BOUCHER, D ;
LARCHER, JC ;
GROS, F ;
DENOULET, P .
BIOCHEMISTRY, 1994, 33 (41) :12471-12477
[9]   CARBOXY-TERMINAL REGIONS ON THE SURFACE OF TUBULIN AND MICROTUBULES - EPITOPE LOCATIONS OF YOL1/34, DM1A AND DM1B [J].
BREITLING, F ;
LITTLE, M .
JOURNAL OF MOLECULAR BIOLOGY, 1986, 189 (02) :367-370
[10]   PHOSPHORYLATION DETERMINES THE BINDING OF MICROTUBULE-ASSOCIATED PROTEIN-2 (MAP2) TO MICROTUBULES IN LIVING CELLS [J].
BRUGG, B ;
MATUS, A .
JOURNAL OF CELL BIOLOGY, 1991, 114 (04) :735-743