Characterization of a 100-kDa heat-stable microtubule-associated protein from higher plants.
Explore this paper's citation graph
Summary
This study has identified a maize heat-stable protein with apparent molecular mass 100 kDa (P-100) which binds to taxol-stabilized neurotubules and copolymerizes in vitro with purified neural tubulin and suggests that P-100 could be a higher plant MAP.
- Type
- article
- Published
- 1994-03-01
- Cited by
- 40
- References
- 34
- OpenAlex
- https://openalex.org/W7511530
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:39214280
Keywords
Computer science
References
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding.
- Molecular structure and function of microtubule-associated proteins.
- Rat pancreas kinesin: identification and potential binding to microtubules.
- Phosphorylation affects the ability of tau protein to promote microtubule assembly.
- The phosphorylation of kinesin regulates its binding to synaptic vesicles.
- Improved staining of proteins in polyacrylamide gels including isoelectric focusing gels with clear background at nanogram sensitivity using Coomassie Brilliant Blue G‐250 and R‐250
- Apoptosis and signal transduction: clues to a molecular mechanism.
- The plant homologue of MAP kinase is expressed in a cell cycle-dependent and organ-specific manner.
- Characterization of a 67 kDa microtubule-binding protein in the pancreas from different species.
- Microtubule-organizing centers in higher plants.
- Cytoplasmic microtubule-based motor proteins.
- Microtubule assembly in the absence of added nucleotides.
- Characterization of maize microtubule-associated proteins, one of which is immunologically related to tau.
- Measurement of the incorporation of radioactive amino acids into protein by a filter-paper disk method
- Chloroplast-derived photo-oxidative stress causes changes in H2O2 and EGSH in other subcellular compartments
- A taxol-dependent procedure for the isolation of microtubules and microtubule-associated proteins (MAPs)
- Co‐assembly properties of higher plant microtubule‐associated proteins with purified brain and plant tubulins
- Characterization of the reversible taxol-induced polymerization of plant tubulin into microtubules.
- The plant cytoskeleton.
- Non-motor microtubule-associated proteins.
Cited by
- The cyclic reorientation of cortical microtubules in epidermal cells of azuki bean epicotyls: the role of actin filaments in the progression of the cycle
- Etude de mécanismes moléculaires et de lois physiques qui régissent l'auto-organisation des microtubules en réseaux ordonnés et complexes in vitro
- The plant cytoskeleton: recent advances in the study of the plant microtubule-associated proteins MAP-65, MAP-190 and the Xenopus MAP215-like protein, MOR1
- Regulation of cell division and the cytoskeleton by mitogen-activated protein kinases in higher plants.
- Signal Transduction in Plant Growth and Development
- Functional interactions among cytoskeleton, membranes, and cell wall in the pollen tube of flowering plants.
- Cell cycle regulation during plant growth and development, gene expression studies in Arabidopsis thaliana (L.) Heynh.
- The perinuclear microtubule-organizing center and the synaptonemal complex of higher plants share a common antigen: its putative transfer and role in meiotic chromosomal ordering
- Identification of a Novel 70 kDa Protein in Cultured Tobacco Cells That is Immunologically Related to MAP4
- Heat-shock protein 90 is associated with microtubules in tobacco cells
- Microtubules and microtubule-associated proteins.
- MAP65 Coordinate Microtubule Growth during Bundle Formation
- Antibody against phosphorylated proteins (MPM-2) recognizes mitotic microtubules in endosperm cells of higher plant Haemanthus.
- Differential interactions of the formins INF2, mDia1, and mDia2 with microtubules
- Putative microtubule-associated proteins from the Arabidopsis genome
- Different microtubule network alterations induced by pachymatismin, a new marine glycoprotein, on two prostatic cell lines
- The Arabidopsis TRM1–TON1 Interaction Reveals a Recruitment Network Common to Plant Cortical Microtubule Arrays and Eukaryotic Centrosomes[C][W]
- Isolation of cortical MTs from tobacco BY-2 cells.
- Identification and characterization of plasma membrane proteins that bind to microtubules in pollen tubes and generative cells of tobacco.
- Cytoskeletal Basis of Organelle Trafficking in the Angiosperm Pollen Tube
Related papers
No related papers recorded.