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Accepted Manuscript
RESEARCH ARTICLE
Brachyury controls Ciona notochord fate as part of a feedforward network
Wendy M. Reeves, Kotaro Shimai, Konner M. Winkley, Michael T. Veeman
Development 2021 : dev.195230 doi: 10.1242/dev.195230 Published 8 January 2021
Wendy M. Reeves
Division of Biology, Kansas State University, Manhattan, KS, USA, 66506
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Kotaro Shimai
Division of Biology, Kansas State University, Manhattan, KS, USA, 66506
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Konner M. Winkley
Division of Biology, Kansas State University, Manhattan, KS, USA, 66506
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Michael T. Veeman
Division of Biology, Kansas State University, Manhattan, KS, USA, 66506
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  • For correspondence: veeman@ksu.edu
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Abstract

The notochord is a defining feature of the chordates. The transcription factor Brachyury (Bra) is a key regulator of notochord fate but here we show that it is not a unitary master regulator in the model chordate Ciona. Ectopic Bra expression only partially reprograms other cell types to a notochord-like transcriptional profile and a subset of notochord-enriched genes are unaffected by CRISPR Bra disruption. We identify Foxa.a and Mnx as potential co-regulators and find that combinatorial cocktails are more effective at reprograming other cell types than Bra alone. We reassess the network relationships between Bra, Foxa.a, and other components of the notochord gene regulatory network and find that Foxa.a expression in the notochord is regulated by vegetal FGF signaling. It is a direct activator of Bra expression and has a binding motif that is significantly enriched in the regulatory regions of notochord-enriched genes. These and other results indicate that Bra and Foxa.a act together in a regulatory network dominated by positive feed-forward interactions, with neither being a classically-defined master regulator.

  • Received July 20, 2020.
  • Accepted December 18, 2020.
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Keywords

  • Brachyury
  • Ciona
  • FoxA
  • GRN
  • Feedforward
  • Notochord

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Accepted Manuscript
RESEARCH ARTICLE
Brachyury controls Ciona notochord fate as part of a feedforward network
Wendy M. Reeves, Kotaro Shimai, Konner M. Winkley, Michael T. Veeman
Development 2021 : dev.195230 doi: 10.1242/dev.195230 Published 8 January 2021
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Accepted Manuscript
RESEARCH ARTICLE
Brachyury controls Ciona notochord fate as part of a feedforward network
Wendy M. Reeves, Kotaro Shimai, Konner M. Winkley, Michael T. Veeman
Development 2021 : dev.195230 doi: 10.1242/dev.195230 Published 8 January 2021

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