Minus-End Capture of Preformed Kinetochore Fibers Contributes to Spindle Morphogenesis

Near-simultaneous three-dimensional fluorescence/differential interference contrast microscopy was used to follow the behavior of microtubules and chromosomes in living α-tubulin/GFP-expressing cells after inhibition of the mitotic kinesin Eg5 with monastrol. Kinetochore fibers (K-fibers) were frequ...

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Veröffentlicht in:The Journal of cell biology 2003-03, Vol.160 (5), p.671-683
Hauptverfasser: Khodjakov, Alexey, Copenagle, Lily, Gordon, Michael B., Compton, Duane A., Kapoor, Tarun M.
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Sprache:eng
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Zusammenfassung:Near-simultaneous three-dimensional fluorescence/differential interference contrast microscopy was used to follow the behavior of microtubules and chromosomes in living α-tubulin/GFP-expressing cells after inhibition of the mitotic kinesin Eg5 with monastrol. Kinetochore fibers (K-fibers) were frequently observed forming in association with chromosomes both during monastrol treatment and after monastrol removal. Surprisingly, these K-fibers were oriented away from, and not directly connected to, centrosomes and incorporated into the spindle by the sliding of their distal ends toward centrosomes via a NuMA-dependent mechanism. Similar preformed K-fibers were also observed during spindle formation in untreated cells. In addition, upon monastrol removal, centrosomes established a transient chromosome-free bipolar array whose orientation specified the axis along which chromosomes segregated. We propose that the capture and incorporation of preformed K-fibers complements the microtubule plusend capture mechanism and contributes to spindle formation in vertebrates.
ISSN:0021-9525
1540-8140
DOI:10.1083/jcb.200208143