Dynamics of morphogen source formation in a growing tissue

Ho RDJG, Kishi K, Majka M, Kicheva A, Zagórski MP. 2024. Dynamics of morphogen source formation in a growing tissue. PLoS Computational Biology. 20, e1012508.

Download
OA 2024_PloSComBio_Ho.pdf 3.73 MB [Published Version]

Journal Article | Published | English

Scopus indexed
Author
Ho, Richard D.J.G.; Kishi, KasumiISTA; Majka, Maciej; Kicheva, AnnaISTA ; Zagórski, Marcin PISTA

Corresponding author has ISTA affiliation

Department
Abstract
A tight regulation of morphogen production is key for morphogen gradient formation and thereby for reproducible and organised organ development. Although many genetic interactions involved in the establishment of morphogen production domains are known, the biophysical mechanisms of morphogen source formation are poorly understood. Here we addressed this by focusing on the morphogen Sonic hedgehog (Shh) in the vertebrate neural tube. Shh is produced by the adjacently located notochord and by the floor plate of the neural tube. Using a data-constrained computational screen, we identified different possible mechanisms by which floor plate formation can occur, only one of which is consistent with experimental data. In this mechanism, the floor plate is established rapidly in response to Shh from the notochord and the dynamics of regulatory interactions within the neural tube. In this process, uniform activators and Shh-dependent repressors are key for establishing the floor plate size. Subsequently, the floor plate becomes insensitive to Shh and increases in size due to tissue growth, leading to scaling of the floor plate with neural tube size. In turn, this results in scaling of the Shh amplitude with tissue growth. Thus, this mechanism ensures a separation of time scales in floor plate formation, so that the floor plate domain becomes growth-dependent after an initial rapid establishment phase. Our study raises the possibility that the time scale separation between specification and growth might be a common strategy for scaling the morphogen gradient amplitude in growing organs. The model that we developed provides a new opportunity for quantitative studies of morphogen source formation in growing tissues.
Publishing Year
Date Published
2024-10-14
Journal Title
PLoS Computational Biology
Publisher
Public Library of Science
Acknowledgement
We thank Martina Greunz-Schindler for technical support, and Thomas Minchington and James Briscoe for comments on the manuscript. RDJGH, MM and MZ were supported by a grant from the Priority Research Area DigiWorld under the Strategic Programme Excellence Initiative at Jagiellonian University. The research was supported by the Polish National Agency for Academic Exchange, PN/PPO/2018/1/00011/U/00001 which paid the salary of MM and MZ up to Feb 2023. The research received support from National Science Center, Poland, 2021/42/E/NZ2/00188 which paid salary of MZ. Work in the AK labis supported by ISTA to KK and AK, the European Research Council under Horizon Europe: grant 101044579 to AK, and Austrian Science Fund (FWF): Grant DOI 10.55776/F78 to AK. The salaries of AK and KK were paid by ISTA. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
Volume
20
Article Number
e1012508
ISSN
eISSN
IST-REx-ID

Cite this

Ho RDJG, Kishi K, Majka M, Kicheva A, Zagórski MP. Dynamics of morphogen source formation in a growing tissue. PLoS Computational Biology. 2024;20. doi:10.1371/journal.pcbi.1012508
Ho, R. D. J. G., Kishi, K., Majka, M., Kicheva, A., & Zagórski, M. P. (2024). Dynamics of morphogen source formation in a growing tissue. PLoS Computational Biology. Public Library of Science. https://doi.org/10.1371/journal.pcbi.1012508
Ho, Richard D.J.G., Kasumi Kishi, Maciej Majka, Anna Kicheva, and Marcin P Zagórski. “Dynamics of Morphogen Source Formation in a Growing Tissue.” PLoS Computational Biology. Public Library of Science, 2024. https://doi.org/10.1371/journal.pcbi.1012508.
R. D. J. G. Ho, K. Kishi, M. Majka, A. Kicheva, and M. P. Zagórski, “Dynamics of morphogen source formation in a growing tissue,” PLoS Computational Biology, vol. 20. Public Library of Science, 2024.
Ho RDJG, Kishi K, Majka M, Kicheva A, Zagórski MP. 2024. Dynamics of morphogen source formation in a growing tissue. PLoS Computational Biology. 20, e1012508.
Ho, Richard D. J. G., et al. “Dynamics of Morphogen Source Formation in a Growing Tissue.” PLoS Computational Biology, vol. 20, e1012508, Public Library of Science, 2024, doi:10.1371/journal.pcbi.1012508.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):
Main File(s)
File Name
Access Level
OA Open Access
Date Uploaded
2024-10-29
MD5 Checksum
42fa714459943cb3961b40fab8fd82c8


Export

Marked Publications

Open Data ISTA Research Explorer

Sources

PMID: 39401260
PubMed | Europe PMC

Search this title in

Google Scholar