Literature DB >> 11006343

Identification and characterization of a novel microtubule-based motor associated with membranous organelles in tobacco pollen tubes.

G Cai1, S Romagnoli, A Moscatelli, E Ovidi, G Gambellini, A Tiezzi, M Cresti.   

Abstract

Pollen tube growth depends on the differential distribution of organelles and vesicles along the tube. The role of microtubules in organelle movement is uncertain, mainly because information at the molecular level is limited. In an effort to understand the molecular basis of microtubule-based movement, we isolated from tobacco pollen tubes polypeptides that cosediment with microtubules in an ATP-dependent manner. Major polypeptides released from microtubules by ATP (ATP-MAPs) had molecular masses of 90, 80, and 41 kD. Several findings indicate that the 90-kD ATP-MAP is a kinesin-related motor: binding of the polypeptide to microtubules was enhanced by the nonhydrolyzable ATP analog AMP-PNP; the 90-kD polypeptide reacted specifically with a peptide antibody directed against a highly conserved region in the motor domain of the kinesin superfamily; purified 90-kD ATP-MAP induced microtubules to glide in motility assays in vitro; and the 90-kD ATP-MAP cofractionated with microtubule-activated ATPase activity. Immunolocalization studies indicated that the 90-kD ATP-MAP binds to organelles associated with microtubules in the cortical region of the pollen tube. These findings suggest that the 90-kD ATP-MAP is a kinesin-related microtubule motor that moves organelles in the cortex of growing pollen tubes.

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Year:  2000        PMID: 11006343      PMCID: PMC149081          DOI: 10.1105/tpc.12.9.1719

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  50 in total

1.  A method for determining the sedimentation behavior of enzymes: application to protein mixtures.

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Journal:  J Biol Chem       Date:  1961-05       Impact factor: 5.157

2.  An immunoreactive homolog of mammalian kinesin in Nicotiana tabacum pollen tubes.

Authors:  A Tiezzi; A Moscatelli; G Cai; A Bartalesi; M Cresti
Journal:  Cell Motil Cytoskeleton       Date:  1992

3.  The coiled-coil helix in the neck of kinesin.

Authors:  M Thormählen; A Marx; S Sack; E Mandelkow
Journal:  J Struct Biol       Date:  1998       Impact factor: 2.867

4.  Cleavage of structural proteins during the assembly of the head of bacteriophage T4.

Authors:  U K Laemmli
Journal:  Nature       Date:  1970-08-15       Impact factor: 49.962

5.  Preparation of tubulin from brain.

Authors:  R C Williams; J C Lee
Journal:  Methods Enzymol       Date:  1982       Impact factor: 1.600

6.  Sequencing and characterization of the kinesin-related genes katB and katC of Arabidopsis thaliana.

Authors:  H Mitsui; K Nakatani; K Yamaguchi-Shinozaki; K Shinozaki; K Nishikawa; H Takahashi
Journal:  Plant Mol Biol       Date:  1994-08       Impact factor: 4.076

7.  Pollen tube growth is coupled to the extracellular calcium ion flux and the intracellular calcium gradient: effect of BAPTA-type buffers and hypertonic media.

Authors:  E S Pierson; D D Miller; D A Callaham; A M Shipley; B A Rivers; M Cresti; P K Hepler
Journal:  Plant Cell       Date:  1994-12       Impact factor: 11.277

8.  Microtubule-dependent control of cell shape and pseudopodial activity is inhibited by the antibody to kinesin motor domain.

Authors:  V I Rodionov; F K Gyoeva; E Tanaka; A D Bershadsky; J M Vasiliev; V I Gelfand
Journal:  J Cell Biol       Date:  1993-12       Impact factor: 10.539

9.  Identification and localization of three classes of myosins in pollen tubes of Lilium longiflorum and Nicotiana alata.

Authors:  D D Miller; S P Scordilis; P K Hepler
Journal:  J Cell Sci       Date:  1995-07       Impact factor: 5.285

10.  Isolation of polypeptides with microtubule-translocating activity from phragmoplasts of tobacco BY-2 cells.

Authors:  T Asada; H Shibaoka
Journal:  J Cell Sci       Date:  1994-08       Impact factor: 5.285

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  24 in total

1.  In vitro assays demonstrate that pollen tube organelles use kinesin-related motor proteins to move along microtubules.

Authors:  Silvia Romagnoli; Giampiero Cai; Mauro Cresti
Journal:  Plant Cell       Date:  2003-01       Impact factor: 11.277

2.  MPB2C, a microtubule-associated plant protein binds to and interferes with cell-to-cell transport of tobacco mosaic virus movement protein.

Authors:  Friedrich Kragler; Mirela Curin; Kateryna Trutnyeva; Andreas Gansch; Elisabeth Waigmann
Journal:  Plant Physiol       Date:  2003-08       Impact factor: 8.340

Review 3.  Microtubule motors and pollen tube growth--still an open question.

Authors:  Giampiero Cai; Mauro Cresti
Journal:  Protoplasma       Date:  2010-10-05       Impact factor: 3.356

4.  Heat stress affects the cytoskeleton and the delivery of sucrose synthase in tobacco pollen tubes.

Authors:  Luigi Parrotta; Claudia Faleri; Mauro Cresti; Giampiero Cai
Journal:  Planta       Date:  2015-09-03       Impact factor: 4.116

5.  A methionine synthase homolog is associated with secretory vesicles in tobacco pollen tubes.

Authors:  Alessandra Moscatelli; Monica Scali; Cristina Prescianotto-Baschong; Myriam Ferro; Jerome Garin; Rita Vignani; Fabrizio Ciampolini; Mauro Cresti
Journal:  Planta       Date:  2005-06-07       Impact factor: 4.116

Review 6.  Signalling pathways in pollen germination and tube growth.

Authors:  R Malhó; Q Liu; D Monteiro; C Rato; L Camacho; A Dinis
Journal:  Protoplasma       Date:  2006-08-31       Impact factor: 3.356

7.  Tobacco mosaic virus movement protein functions as a structural microtubule-associated protein.

Authors:  Jamie Ashby; Emmanuel Boutant; Mark Seemanpillai; Anna Groner; Adrian Sambade; Christophe Ritzenthaler; Manfred Heinlein
Journal:  J Virol       Date:  2006-09       Impact factor: 5.103

8.  An ankyrin repeat-containing protein, characterized as a ubiquitin ligase, is closely associated with membrane-enclosed organelles and required for pollen germination and pollen tube growth in lily.

Authors:  Jian Huang; Feng Chen; Cecilia Del Casino; Antonella Autino; Mouhua Shen; Shuai Yuan; Jia Peng; Hexin Shi; Chen Wang; Mauro Cresti; Yiqin Li
Journal:  Plant Physiol       Date:  2006-02-03       Impact factor: 8.340

9.  Depletion of sucrose induces changes in the tip growth mechanism of tobacco pollen tubes.

Authors:  Luigi Parrotta; Claudia Faleri; Stefano Del Duca; Giampiero Cai
Journal:  Ann Bot       Date:  2018-06-28       Impact factor: 4.357

Review 10.  Microtubule-associated proteins in higher plants.

Authors:  Takahiro Hamada
Journal:  J Plant Res       Date:  2007-02-07       Impact factor: 2.629

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