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The ultrastructure of the kinetochore and kinetochore fiber in Drosophila somatic cells
Authors:Helder Maiato  Polla J. Hergert  Sara Moutinho-Pereira  Yimin Dong  Kristin J. Vandenbeldt  Conly L. Rieder  Bruce F. McEwen
Affiliation:(1) Institute for Molecular and Cell Biology, Rua do Campo Alegre 823, 4150-180 Porto, Portugal;(2) Laboratory of Cell and Molecular Biology, Faculty of Medicine, University of Porto, 4200-319 Porto, Portugal;(3) Wadsworth Center, New York State Department of Health, Albany, NY 12201-0509, USA;(4) Department Biomedical Sciences, School of Public Health, State University of New York at Albany, Albany, NY 12222, USA
Abstract:Drosophila melanogaster is a widely used model organism for the molecular dissection of mitosis in animals. However, despite the popularity of this system, no studies have been published on the ultrastructure of Drosophila kinetochores and kinetochore fibers (K-fibers) in somatic cells. To amend this situation, we used correlative light (LM) and electron microscopy (EM) to study kinetochores in cultured Drosophila S2 cells during metaphase, and after colchicine treatment to depolymerize all microtubules (MTs). We find that the structure of attached kinetochores in S2 cells is indistinct, consisting of an amorphous inner zone associated with a more electron-dense peripheral surface layer that is approximately 40–50 nm thick. On average, each S2 kinetochore binds 11±2 MTs, in contrast to the 4–6 MTs per kinetochore reported for Drosophila spermatocytes. Importantly, nearly all of the kinetochore MT plus ends terminate in the peripheral surface layer, which we argue is analogous to the outer plate in vertebrate kinetochores. Our structural observations provide important data for assessing the results of RNAi studies of mitosis, as well as for the development of mathematical modelling and computer simulation studies in Drosophila and related organisms.Electronic supplementary material Supplementary material is available for this article at and is accessible to authorized users.
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