跳转至内容
Merck
CN
  • An anaphase surveillance mechanism prevents micronuclei formation from frequent chromosome segregation errors.

An anaphase surveillance mechanism prevents micronuclei formation from frequent chromosome segregation errors.

Cell reports (2021-11-11)
Bernardo Orr, Filipe De Sousa, Ana Margarida Gomes, Olga Afonso, Luísa T Ferreira, Ana C Figueiredo, Helder Maiato
摘要

Micronuclei are a hallmark of cancer and several other human disorders. Recently, micronuclei were implicated in chromothripsis, a series of massive genomic rearrangements that may drive tumor evolution and progression. Here, we show that Aurora B kinase mediates a surveillance mechanism that integrates error correction during anaphase with spatial control of nuclear envelope reassembly to prevent micronuclei formation. Using high-resolution live-cell imaging of human cancer and non-cancer cells, we uncover that anaphase lagging chromosomes are more frequent than previously anticipated, yet they rarely form micronuclei. Micronuclei formation from anaphase lagging chromosomes is prevented by a midzone-based Aurora B phosphorylation gradient that stabilizes kinetochore-microtubule attachments and assists spindle forces required for anaphase error correction while delaying nuclear envelope reassembly on lagging chromosomes, independently of microtubule density. We propose that a midzone-based Aurora B phosphorylation gradient actively monitors and corrects frequent chromosome segregation errors to prevent micronuclei formation during human cell division.

材料
产品编号
品牌
产品描述

Sigma-Aldrich
诺考达唑, ≥99% (TLC), powder