PUBLICATION
Sulfatase modifying factors control the timing of zebrafish convergence and extension morphogenesis
- Authors
- Cervino, A.S., Basu, A., Weiss, R.J., Kaur Bajwa, G., Marín-Juez, R., Grimm, S.L., Coarfa, C., Williams, M.K.
- ID
- ZDB-PUB-260401-13
- Date
- 2026
- Source
- Nature communications : (Journal)
- Registered Authors
- Marín-Juez, Rubén, Williams, Margot
- Keywords
- none
- MeSH Terms
- none
- PubMed
- 41917030 Full text @ Nat. Commun.
Citation
Cervino, A.S., Basu, A., Weiss, R.J., Kaur Bajwa, G., Marín-Juez, R., Grimm, S.L., Coarfa, C., Williams, M.K. (2026) Sulfatase modifying factors control the timing of zebrafish convergence and extension morphogenesis. Nature communications. :.
Abstract
Convergence and extension (C&E) cell movements that elongate the primary embryonic axis are precisely timed during vertebrate gastrulation, but mechanisms controlling their onset remain unknown. Using zebrafish embryonic explants that recapitulate C&E and its timing, we identified sulfatase modifying factor 2 (sumf2) as a candidate trigger gene for C&E onset. sumf2 and its paralog sumf1 encode negative and positive sulfatase regulators, respectively, whose expression levels invert and increase heparan sulfate sulfation during gastrulation. Overexpressing sumf1 or sumf2 causes delayed or precocious C&E, respectively, whereas their loss shifts C&E timing in the opposite direction. We identified Sulf1, a modifier of heparan sulfate proteoglycans (HSPGs), as their key downstream effector and found that altering heparan sulfate sulfation levels shifts C&E onset and suppresses sumf1 and sumf2 mutant phenotypes. This work supports a model in which sumf2 expression reduces sulfatase activity, rewriting HSPG sulfation patterns to promote the onset of C&E morphogenesis.
Genes / Markers
Expression
Phenotype
Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Orthology
Engineered Foreign Genes
Mapping