Structure of the human inner kinetochore bound to a centromeric CENP-A nucleosome.
basic_science · Level V
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- Record sourced from PubMed, PMID 35420891.
- Also identified by DOI 10.1126/science.abn3810 and PMC identifier 7612757.
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Abstract
Kinetochores assemble onto specialized centromeric CENP-A (centromere protein A) nucleosomes (CENP-A<sup>Nuc</sup>) to mediate attachments between chromosomes and the mitotic spindle. We describe cryo-electron microscopy structures of the human inner kinetochore constitutive centromere associated network (CCAN) complex bound to CENP-A<sup>Nuc</sup> reconstituted onto α-satellite DNA. CCAN forms edge-on contacts with CENP-A<sup>Nuc</sup>, and a linker DNA segment of the α-satellite repeat emerges from the fully wrapped end of the nucleosome to thread through the central CENP-LN channel that tightly grips the DNA. The CENP-TWSX histone-fold module further augments DNA binding and partially wraps the linker DNA in a manner reminiscent of canonical nucleosomes. Our study suggests that the topological entrapment of the linker DNA by CCAN provides a robust mechanism by which kinetochores withstand both pushing and pulling forces exerted by the mitotic spindle.
Medical subject headings
- Centromere Protein A
- Kinetochores
- Nucleosomes