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Odd-paired is a pioneer-like factor that coordinates with zelda to control gene expression in embryos

  • Theodora Koromila
  • , Fan Gao
  • , Yasuno Iwasaki
  • , Peng He
  • , Lior Pachter
  • , J. Peter Gergen
  • , Angelike Stathopoulos
  • California Institute of Technology
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Pioneer factors such as Zelda (Zld) help initiate zygotic transcription in Drosophila early embryos, but whether other factors support this dynamic process is unclear. Odd-paired (Opa), a zinc-finger transcription factor expressed at cellularization, controls the transition of genes from pair-rule to segmental patterns along the anterior-posterior axis. Finding that Opa also regulates expression through enhancer sog_Distal along the dorso-ventral axis, we hypothesized Opa’s role is more general. Chromatin-immunoprecipitation (ChIP-seq) confirmed its in vivo binding to sog_Distal but also identified widespread binding throughout the genome, comparable to Zld. Furthermore, chromatin assays (ATAC-seq) demonstrate that Opa, like Zld, influences chromatin accessibility genome-wide at cellularization, suggesting both are pioneer factors with common as well as distinct targets. Lastly, embryos lacking opa exhibit widespread, late patterning defects spanning both axes. Collectively, these data suggest Opa is a general timing factor and likely late-acting pioneer factor that drives a secondary wave of zygotic gene expression.

Original languageEnglish
Article numbere59610
Pages (from-to)1-71
Number of pages71
JournaleLife
Volume9
DOIs
StatePublished - Jul 2020

Keywords

  • ATAC-seq
  • ChIP-seq
  • Drosophila melanogaster
  • Histone mark
  • Maternal-to-zygotic transition (MZT)
  • Midblastula transition (MBT)
  • Odd-paired (Opa)
  • RNA-seq
  • Short gastrulation (sog)
  • Zelda

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