MRC Genome Damage and Stability Centre, University of Sussex, Brighton BN1 9RQ, United Kingdom.
Genes Dev. 2012 Dec 1;26(23):2590-603. doi: 10.1101/gad.199976.112.
The INO80 chromatin remodeling complex functions in transcriptional regulation, DNA repair, and replication. Here we uncover a novel role for INO80 in regulating chromosome segregation. First, we show that the conserved Ies6 subunit is critical for INO80 function in vivo. Strikingly, we found that loss of either Ies6 or the Ino80 catalytic subunit results in rapid increase in ploidy. One route to polyploidy is through chromosome missegregation due to aberrant centromere structure, and we found that loss of either Ies6 or Ino80 leads to defective chromosome segregation. Importantly, we show that chromatin structure flanking centromeres is altered in cells lacking these subunits and that these alterations occur not in the Cse4-containing centromeric nucleosome, but in pericentric chromatin. We provide evidence that these effects are mediated through misincorporation of H2A.Z, and these findings indicate that H2A.Z-containing pericentric chromatin, as in higher eukaryotes with regional centromeres, is important for centromere function in budding yeast. These data reveal an important additional mechanism by which INO80 maintains genome stability.
INO80 染色质重塑复合物在转录调控、DNA 修复和复制中发挥作用。在这里,我们揭示了 INO80 在调节染色体分离中的一个新角色。首先,我们表明保守的 Ies6 亚基对于 INO80 在体内的功能至关重要。引人注目的是,我们发现缺失 Ies6 或 Ino80 催化亚基都会导致倍性迅速增加。多倍体形成的一种途径是由于异常的着丝粒结构导致染色体错误分离,我们发现缺失 Ies6 或 Ino80 会导致染色体分离缺陷。重要的是,我们表明缺乏这些亚基会改变着丝粒周围的染色质结构,并且这些改变不是发生在含有 Cse4 的着丝粒核小体中,而是发生在着丝粒周围的染色质中。我们提供的证据表明,这些影响是通过 H2A.Z 的错误掺入介导的,这些发现表明含有 H2A.Z 的着丝粒周围染色质,就像具有区域着丝粒的高等真核生物一样,对于芽殖酵母的着丝粒功能很重要。这些数据揭示了 INO80 维持基因组稳定性的一个重要的额外机制。