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PLK1-mediated phosphorylation cascade activates Mis18 complex to ensure centromere inheritance.

Pragya ParasharaBethan Medina-PritchardMaria Alba AbadPaula Sotelo-ParrillaReshma ThamkachyDavid GrundeiJuan ZouChristos SpanosChandni Natalia KumarClaire BasquinVimal DasZhaoyue YanAsma Abdullah Al-MurtadhaDavid A KellyToni McHughAxel ImhofJuri RappsilberJeyaprakash Arulanandam
Published in: Science (New York, N.Y.) (2024)
Accurate chromosome segregation requires the attachment of microtubules to centromeres, epigenetically defined by the enrichment of CENP-A nucleosomes. During DNA replication, CENP-A nucleosomes undergo dilution. To preserve centromere identity, correct amounts of CENP-A must be restored in a cell cycle-controlled manner orchestrated by the Mis18 complex (Mis18α-Mis18β-Mis18BP1). We demonstrate here that PLK1 interacts with the Mis18 complex by recognizing self-primed phosphorylations of Mis18α (Ser 54 ) and Mis18BP1 (Thr 78 and Ser 93 ) through its Polo-box domain. Disrupting these phosphorylations perturbed both centromere recruitment of the CENP-A chaperone HJURP and new CENP-A loading. Biochemical and functional analyses showed that phosphorylation of Mis18α and PLK1 binding were required to activate Mis18α-Mis18β and promote Mis18 complex-HJURP interaction. Thus, our study reveals key molecular events underpinning the licensing role of PLK1 in ensuring accurate centromere inheritance.
Keyphrases
  • cell cycle
  • high resolution
  • mitochondrial dna
  • dna methylation
  • liquid chromatography
  • ms ms
  • heat shock