Abstract
The four-subunit Ndc80 complex, comprised of Ndc80/Nuf2 and Spc24/Spc25 dimers, directly connects kinetochores to spindle microtubules. The complex is anchored to the kinetochore at the Spc24/25 end, and the Ndc80/Nuf2 dimer projects outward to bind to microtubules. Here, we use cryoelectron microscopy and helical image analysis to visualize the interaction of the Ndc80/Nuf2 dimer with microtubules. Our results, when combined with crystallography data, suggest that the globular domain of the Ndc80 subunit binds strongly at the interface between tubulin dimers and weakly at the adjacent intradimer interface along the protofilament axis. Such a binding mode, in which the Ndc80 complex interacts with sequential alpha/beta-tubulin heterodimers, may be important for stabilizing kinetochore-bound microtubules. Additionally, we define the binding of the Ndc80 complex relative to microtubule polarity, which reveals that the microtubule interaction surface is at a considerable distance from the opposite kinetochore-anchored end; this binding geometry may facilitate polymerization and depolymerization at kinetochore-attached microtubule ends.
MeSH Terms
Cell Cycle Proteins/chemistry,genetics,metabolism
Cryoelectron Microscopy
Crystallography, X-Ray
Cytoskeletal Proteins
Dimerization
Humans
Kinetochores/metabolism
Microtubules/metabolism,ultrastructure
Models, Molecular
Molecular Sequence Data
Nuclear Proteins/chemistry,genetics,metabolism
Protein Conformation
Protein Subunits/genetics,metabolism
Spindle Apparatus/metabolism,ultrastructure
Chemicals
Cell Cycle Proteins
Cytoskeletal Proteins
NDC80 protein, human
NUF2 protein, human
Nuclear Proteins
Protein Subunits
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wilson-Kubalek Elizabeth M
Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Cheeseman Iain M
Yoshioka Craig
Desai Arshad
Milligan Ronald A
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