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

A SIRT7-dependent acetylation switch regulates early B cell differentiation and lineage commitment through Pax5

  • Andres Gamez-Garcia,
  • Maria Espinosa-Alcantud,
  • Alberto Bueno-Costa,
  • Elisenda Alari-Pahissa,
  • Anna Marazuela-Duque,
  • Joshua K. Thackray,
  • Chandni Ray,
  • Clara Berenguer,
  • Poonam Kumari,
  • Joan Josep Bech,
  • Thomas Braun,
  • Alessandro Ianni,
  • Jay A. Tischfield,
  • Lourdes Serrano,
  • Manel Esteller,
  • Jose L. Sardina,
  • Carolina De La Torre,
  • Mikael Sigvardsson,
  • Berta N. Vazquez,
  • Alejandro Vaquero

摘要

B lymphopoiesis is orchestrated by lineage-specific transcription factors. In B cell progenitors, lineage commitment is mediated by Pax5, which is commonly mutated in B cell acute lymphoblastic leukemia. Despite its essential role in immunity, the mechanisms regulating Pax5 function remain largely unknown. Here, we found that the NAD+-dependent enzyme SIRT7 coordinates B cell development through deacetylation of Pax5 at K198, which promotes Pax5 protein stability and transcriptional activity. Neither Pax5K198 deacetylated nor acetylated mimics rescued B cell differentiation in Pax5−/− pro-B cells, suggesting that B cell development requires Pax5 dynamic deacetylation. The Pax5K198 deacetylation mimic restored lineage commitment in Pax5−/− pro-B cells and B cell differentiation in Sirt7−/− pro-B cells, suggesting the uncoupling of differentiation from lineage commitment. The SIRT7–Pax5 interplay was conserved in B cell acute lymphoblastic leukemia, where SIRT7 expression correlated with good prognosis. Our findings reveal a crucial mechanism for B lymphopoiesis and highlight the relevance of sirtuins in immune function.