Hedgehog–FGF signaling axis patterns anterior mesoderm during gastrulation

Author:

Guzzetta AlexanderORCID,Koska Mervenaz,Rowton Megan,Sullivan Kaelan R.ORCID,Jacobs-Li Jessica,Kweon Junghun,Hidalgo Hunter,Eckart HeatherORCID,Hoffmann Andrew D.,Back RebeccaORCID,Lozano Stephanie,Moon Anne M.,Basu Anindita,Bressan Michael,Pott SebastianORCID,Moskowitz Ivan P.

Abstract

The mechanisms used by embryos to pattern tissues across their axes has fascinated developmental biologists since the founding of embryology. Here, using single-cell technology, we interrogate complex patterning defects and define a Hedgehog (Hh)–fibroblast growth factor (FGF) signaling axis required for anterior mesoderm lineage development during gastrulation. Single-cell transcriptome analysis of Hh-deficient mesoderm revealed selective deficits in anterior mesoderm populations, culminating in defects to anterior embryonic structures, including the pharyngeal arches, heart, and anterior somites. Transcriptional profiling of Hh-deficient mesoderm during gastrulation revealed disruptions to both transcriptional patterning of the mesoderm and FGF signaling for mesoderm migration. Mesoderm-specificFgf4/Fgf8double-mutants recapitulated anterior mesoderm defects and Hh-dependent GLI transcription factors modulated enhancers at FGF gene loci. Cellular migration defects during gastrulation induced by Hh pathway antagonism were mitigated by the addition of FGF4 protein. These findings implicate a multicomponent signaling hierarchy activated by Hh ligands from the embryonic node and executed by FGF signals in nascent mesoderm to control anterior mesoderm patterning.

Funder

HHS | NIH | National Heart, Lung, and Blood Institute

HHS | NIH | National Institute of General Medical Sciences

HHS | NIH | Eunice Kennedy Shriver National Institute of Child Health and Human Development

American Heart Association

U.S. Department of Energy

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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