Reconstitution of a 26-Subunit Human Kinetochore Reveals Cooperative Microtubule Binding by CENP-OPQUR and NDC80

26个亚基的人类着丝粒重组揭示了CENP-OPQUR和NDC80的协同微管结合

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作者:Marion E Pesenti ,Daniel Prumbaum ,Philip Auckland ,Charlotte M Smith ,Alex C Faesen ,Arsen Petrovic ,Muriel Erent ,Stefano Maffini ,Satyakrishna Pentakota ,John R Weir ,Yu-Chih Lin ,Stefan Raunser ,Andrew D McAinsh ,Andrea Musacchio

Abstract

The approximately thirty core subunits of kinetochores assemble on centromeric chromatin containing the histone H3 variant CENP-A and connect chromosomes with spindle microtubules. The chromatin proximal 16-subunit CCAN (constitutive centromere associated network) creates a mechanically stable bridge between CENP-A and the kinetochore's microtubule-binding machinery, the 10-subunit KMN assembly. Here, we reconstituted a stoichiometric 11-subunit human CCAN core that forms when the CENP-OPQUR complex binds to a joint interface on the CENP-HIKM and CENP-LN complexes. The resulting CCAN particle is globular and connects KMN and CENP-A in a 26-subunit recombinant particle. The disordered, basic N-terminal tail of CENP-Q binds microtubules and promotes accurate chromosome alignment, cooperating with KMN in microtubule binding. The N-terminal basic tail of the NDC80 complex, the microtubule-binding subunit of KMN, can functionally replace the CENP-Q tail. Our work dissects the connectivity and architecture of CCAN and reveals unexpected functional similarities between CENP-OPQUR and the NDC80 complex. Keywords: CCAN; CENP-O; CENP-P; CENP-R; CENP-U; KMN network; centromere; constitutive centromere associated network; kinetochore; microtubule.

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