Publikation:

Optogenetic investigation of BMP target gene expression diversity

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2020

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Rogers, Katherine W.
ElGamacy, Mohammad
Jordan, Benjamin M.

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eLife. eLife Sciences Publications. 2020, 9, e58641. eISSN 2050-084X. Available under: doi: 10.7554/eLife.58641

Zusammenfassung

Signaling molecules activate distinct patterns of gene expression to coordinate embryogenesis, but how spatiotemporal expression diversity is generated is an open question. In zebrafish, a BMP signaling gradient patterns the dorsal-ventral axis. We systematically identified target genes responding to BMP and found that they have diverse spatiotemporal expression patterns. Transcriptional responses to optogenetically delivered high- and low-amplitude BMP signaling pulses indicate that spatiotemporal expression is not fully defined by different BMP signaling activation thresholds. Additionally, we observed negligible correlations between spatiotemporal expression and transcription kinetics for the majority of analyzed genes in response to BMP signaling pulses. In contrast, spatial differences between BMP target genes largely collapsed when FGF and Nodal signaling were inhibited. Our results suggest that, similar to other patterning systems, combinatorial signaling is likely to be a major driver of spatial diversity in BMP-dependent gene expression in zebrafish.

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570 Biowissenschaften, Biologie

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ISO 690ROGERS, Katherine W., Mohammad ELGAMACY, Benjamin M. JORDAN, Patrick MÜLLER, 2020. Optogenetic investigation of BMP target gene expression diversity. In: eLife. eLife Sciences Publications. 2020, 9, e58641. eISSN 2050-084X. Available under: doi: 10.7554/eLife.58641
BibTex
@article{Rogers2020Optog-56053,
  year={2020},
  doi={10.7554/eLife.58641},
  title={Optogenetic investigation of BMP target gene expression diversity},
  volume={9},
  journal={eLife},
  author={Rogers, Katherine W. and ElGamacy, Mohammad and Jordan, Benjamin M. and Müller, Patrick},
  note={Article Number: e58641}
}
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