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PMID: 20548100 Published · ppublish English

Vertebrate kinetochore protein architecture: protein copy number.

The Journal of cell biology ·Vol. 189 ·No. 6 ·2010-07-08

Johnston Katherine, Joglekar Ajit, Hori Tetsuya, Suzuki Aussie, Fukagawa Tatsuo, Salmon E D

Abstract

To define the molecular architecture of the kinetochore in vertebrate cells, we measured the copy number of eight kinetochore proteins that link kinetochore microtubules (MTs [kMTs]) to centromeric DNA. We used a fluorescence ratio method and chicken DT40 cell lines in which endogenous loci encoding the analyzed proteins were deleted and complemented using integrated green fluorescent protein fusion transgenes. For a mean of 4.3 kMTs at metaphase, the protein copy number per kMT is between seven and nine for members of the MT-binding KNL-1/Mis12 complex/Ndc80 complex network. It was between six and nine for four members of the constitutive centromere-associated network: centromere protein C (CENP-C), CENP-H, CENP-I, and CENP-T. The similarity in copy number per kMT for all of these proteins suggests that each MT end is linked to DNA by six to nine fibrous unit attachment modules in vertebrate cells, a conclusion that indicates architectural conservation between multiple MT-binding vertebrate and single MT-binding budding yeast kinetochores.

Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
Published
2010-07-08
Indexed
2010-06-15
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
0375356
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