Home LiteratureArticle Details
PMID: 3949871 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Analysis of the treadmilling model during metaphase of mitosis using fluorescence redistribution after photobleaching.

The Journal of cell biology ·Vol. 102 ·No. 3 ·1986-03-00 ·Pages 1032-8

Wadsworth P, Salmon ED

Abstract

One recent hypothesis for the mechanism of chromosome movement during mitosis predicts that a continual, uniform, poleward flow or "treadmilling" of microtubules occurs within the half-spindle between the chromosomes and the poles during mitosis (Margolis, R. L., and L. Wilson, 1981, Nature (Lond.), 293:705-711). We have tested this treadmilling hypothesis using fluorescent analog cytochemistry and measurements of fluorescence redistribution after photobleaching to examine microtubule behavior during metaphase of mitosis. Mitotic BSC 1 mammalian tissue culture cells or newt lung epithelial cells were microinjected with brain tubulin labeled with 5-(4,6-dichlorotriazin-2-yl) amino fluorescein (DTAF) to provide a fluorescent tracer of the endogenous tubulin pool. Using a laser microbeam, fluorescence in the half-spindle was photobleached in either a narrow 1.6 micron wide bar pattern across the half-spingle or in a circular area of 2.8 or 4.5 micron diameter. Fluorescence recovery in the spindle fibers, measured using video microscopy or photometric techniques, occurs as bleached DTAF-tubulin subunits within the microtubules are exchanged for unbleached DTAF-tubulin in the cytosol by steady-state microtubule assembly-disassembly pathways. Recovery of 75% of the bleached fluorescence follows first-order kinetics and has an average half-time of 37 sec, at 31-33 degrees C. No translocation of the bleached bar region could be detected during fluorescence recovery, and the rate of recovery was independent of the size of the bleached spot. These results reveal that, for 75% of the half-spindle microtubules, FRAP does not occur by a synchronous treadmilling mechanism.

MeSH Terms
Animals Cells, Cultured Chlorocebus aethiops Epithelium/ultrastructure Fibroblasts/ultrastructure Fluorescent Dyes Lung Microscopy, Fluorescence Microtubules/metabolism,ultrastructure Models, Biological Morphogenesis Photochemistry Salamandridae Spindle Apparatus/ultrastructure Tubulin/metabolism
Chemicals
Fluorescent Dyes Tubulin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wadsworth P
Salmon E D
References (34)
34 references, click to expand
  1. Microinjection of early SV40 DNA fragments and T antigen.
    Methods Enzymol. 1980;65(1):816-25 PMID: 6246377
  2. Head-to-tail polymerization of microtubules in vitro. Electron microscope analysis of seeded assembly.
    J Cell Biol. 1980 Jan;84(1):141-50 PMID: 7350166
  3. Direct visualization of fluorescein-labeled microtubules in vitro and in microinjected fibroblasts.
    J Cell Biol. 1981 Jan;88(1):234-40 PMID: 7193677
  4. Structural polarity of kinetochore microtubules in PtK1 cells.
    J Cell Biol. 1981 May;89(2):338-45 PMID: 7251657
  5. Decoration of spindle microtubules with Dynein: evidence for uniform polarity.
    J Cell Biol. 1981 May;89(2):373-8 PMID: 6454693
  6. Microtubule treadmills--possible molecular machinery.
    Nature. 1981 Oct 29;293(5835):705-11 PMID: 7027052
  7. The structure of the cold-stable kinetochore fiber in metaphase PtK1 cells.
    Chromosoma. 1981;84(1):145-58 PMID: 7297248
  8. Lateral mobility in membranes as detected by fluorescence recovery after photobleaching.
    Biophys J. 1982 Oct;40(1):69-75 PMID: 7139035
  9. Spindle microtubule dynamics following ultraviolet-microbeam irradiations of mitotic diatoms.
    Cell. 1984 Mar;36(3):717-27 PMID: 6697393
  10. Dynamic interactions of fluorescently labeled microtubule-associated proteins in living cells.
    J Cell Biol. 1984 Aug;99(2):425-34 PMID: 6547721
  11. Rapid rate of tubulin dissociation from microtubules in the mitotic spindle in vivo measured by blocking polymerization with colchicine.
    J Cell Biol. 1984 Sep;99(3):1066-75 PMID: 6470037
  12. Microtubule assembly: a review of progress, principles, and perspectives.
    Adv Protein Chem. 1984;36:133-212 PMID: 6382962
  13. Assembly properties of fluorescein-labeled tubulin in vitro before and after fluorescence bleaching.
    J Cell Biol. 1984 Dec;99(6):2146-56 PMID: 6438113
  14. Diffusion coefficient of fluorescein-labeled tubulin in the cytoplasm of embryonic cells of a sea urchin: video image analysis of fluorescence redistribution after photobleaching.
    J Cell Biol. 1984 Dec;99(6):2157-64 PMID: 6501417
  15. Spindle microtubule dynamics in sea urchin embryos: analysis using a fluorescein-labeled tubulin and measurements of fluorescence redistribution after laser photobleaching.
    J Cell Biol. 1984 Dec;99(6):2165-74 PMID: 6501418
  16. Tubulin dynamics in cultured mammalian cells.
    J Cell Biol. 1984 Dec;99(6):2175-86 PMID: 6501419
  17. Microtubule assembly nucleated by isolated centrosomes.
    Nature. 1984 Nov 15-21;312(5991):232-7 PMID: 6504137
  18. Dynamic instability of microtubule growth.
    Nature. 1984 Nov 15-21;312(5991):237-42 PMID: 6504138
  19. Distribution of fluorescently labeled tubulin injected into sand dollar eggs from fertilization through cleavage.
    J Cell Biol. 1985 Apr;100(4):1262-72 PMID: 3920225
  20. Unstained microtubules studied by cryo-electron microscopy. Substructure, supertwist and disassembly.
    J Mol Biol. 1985 Jan 5;181(1):123-35 PMID: 3981631
  21. Polymerization of tubulin in vivo: direct evidence for assembly onto microtubule ends and from centrosomes.
    J Cell Biol. 1985 May;100(5):1682-9 PMID: 3886672
  22. A cellophane-strip technique for culturing tissue in multipurpose culture chambers.
    J Biophys Biochem Cytol. 1958 Nov 25;4(6):761-4 PMID: 13610941
  23. Cell motility by labile association of molecules. The nature of mitotic spindle fibers and their role in chromosome movement.
    J Gen Physiol. 1967 Jul;50(6):Suppl:259-92 PMID: 6058222
  24. Ultrastructural analysis of mitotic spindle elongation in mammalian cells in vitro. Direct microtubule counts.
    J Cell Biol. 1971 Aug;50(2):416-31 PMID: 4939523
  25. Microtubule assembly in the absence of added nucleotides.
    Proc Natl Acad Sci U S A. 1973 Mar;70(3):765-8 PMID: 4514990
  26. Spindle microtubules: thermodynamics of in vivo assembly and role in chromosome movement.
    Ann N Y Acad Sci. 1975 Jun 30;253:383-406 PMID: 1096721
  27. Mobility measurement by analysis of fluorescence photobleaching recovery kinetics.
    Biophys J. 1976 Sep;16(9):1055-69 PMID: 786399
  28. Measurement of the lateral mobility of cell surface components in single, living cells by fluorescence recovery after photobleaching.
    J Supramol Struct. 1976;5(4):565(417)-576(428) PMID: 800621
  29. Dynamics of fluorescence marker concentration as a probe of mobility.
    Biophys J. 1976 Nov;16(11):1315-29 PMID: 974223
  30. Microtubule-associated proteins and the stimulation of tubulin assembly in vitro.
    Biochemistry. 1976 Oct 5;15(20):4497-505 PMID: 974072
  31. Opposite end assembly and disassembly of microtubules at steady state in vitro.
    Cell. 1978 Jan;13(1):1-8 PMID: 620419
  32. Mitotic mechanism based on intrinsic microtubule behaviour.
    Nature. 1978 Mar 30;272(5652):450-2 PMID: 634367
  33. Effect of elevated temperatures on spindle microtubules and chromosome movements in cultured newt lung cells.
    Cytobios. 1978;18(71-72):201-33 PMID: 567112
  34. Functional implications of cold-stable microtubules in kinetochore fibers of insect spermatocytes during anaphase.
    J Cell Biol. 1980 Jun;85(3):853-65 PMID: 7391142
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1986-03-00
Pages
1032-8
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2114127
Subset
IM
Grants
NIGMS NIH HHS · GM24364 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com