错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Condensin I folds the Caenorhabditis elegans genome

  • Moushumi Das,
  • Jennifer I. Semple,
  • Anja Haemmerli,
  • Valeriia Volodkina,
  • Janik Scotton,
  • Todor Gitchev,
  • Ahrmad Annan,
  • Julie Campos,
  • Cyril Statzer,
  • Alexander Dakhovnik,
  • Collin Y. Ewald,
  • Julien Mozziconacci,
  • Peter Meister

摘要

The structural maintenance of chromosome (SMC) complexes—cohesin and condensins—are crucial for chromosome separation and compaction during cell division. During the interphase, mammalian cohesins additionally fold the genome into loops and domains. Here we show that, in Caenorhabditis elegans, a species with holocentric chromosomes, condensin I is the primary, long-range loop extruder. The loss of condensin I and its X-specific variant, condensin IDC, leads to genome-wide decompaction, chromosome mixing and disappearance of X-specific topologically associating domains, while reinforcing fine-scale epigenomic compartments. In addition, condensin I/IDC inactivation led to the upregulation of X-linked genes and unveiled nuclear bodies grouping together binding sites for the X-targeting loading complex of condensin IDC. C. elegans condensin I/IDC thus uniquely organizes holocentric interphase chromosomes, akin to cohesin in mammals, as well as regulates X-chromosome gene expression.