A Scube2-Shh feedback loop links morphogen release and spread to morphogen signaling to enable scale invariant patterning of the ventral neural tube
Collins, Z.; Cha, A.; Qin, A.; Ishimatsu, K.; Tsai, T.; Megason, S.; Swinburne, I.; Li, P.
Show abstract
To enable robust patterning, morphogen systems should be resistant to variations in gene expression and tissue size. Here we explore how the Sonic Hedgehog (Shh) morphogen gradient in the ventral neural tube enables scaled patterning in embryos of varying sizes. Using zebrafish eggs that have been surgically reduced in size, we find that ventral neural tube patterning remains proportional in smaller embryos. Intriguingly, a secreted protein implicated in Shh release, Scube2, is expressed in the dorsal-intermediate neural tube far from Shh producing cells. Overexpression of scube2 expands the Shh gradient whereas loss of scube2 causes gradient contraction. Conversely, upregulation of Shh represses scube2 expression while Shh downregulation increases scube2 expression thus establishing a negative feedback loop. This regulatory feedback is necessary for scaling, as demonstrated by its loss in scube2 overexpressing embryos. Using mathematical modeling, we show that feedback control on diffusion and release rates of Shh allows the morphogen gradient to be robust to differences in field length and Shh gene dosage. We conclude that Scube2 promotes release and diffusion of Shh to allow gradient scaling in an extension to the expander-repressor model. Summary StatementThe Shh morphogen gradient can scale to different size tissues by feedback between Scube2 mediated release and diffusion of Shh and Shh based inhibition of Scube2 expression
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Combinatorial patterns of graded RhoA activation and uniform F-actin depletion promote tissue curvature 98%
- Voltage-gated sodium channel activity mediates sea urchin larval skeletal patterning through spatial regulation of Wnt5 expression 97%
- Cell polarity determinant Dlg1 facilitates epithelial invagination by promoting tissue-scale mechanical coordination 97%
Similar papers in this journal
- Mechanical bistability of the mesoderm epithelium facilitates mesoderm invagination during Drosophila gastrulation 98%
- Global analysis of cell behavior and protein localization dynamics reveals region-specific functions for Shroom3 and N-cadherin during neural tube closure. 97%
- Cell-autonomous timing drives the vertebrate segmentation clock's wave pattern 97%
Similar papers in this journal
- Apcdd1 is a dual BMP/Wnt inhibitor in the developing nervous system and skin 97%
- Basal epidermis collective migration and local Sonic hedgehog signaling promote skeletal branching morphogenesis in zebrafish fins 97%
- Canonical Wnt pathway modulation is required to correctly execute multiple independent cellular dynamic programs during cranial neural tube closure 97%
Similar papers in this journal
- Nodal signaling establishes a competency window for stochastic cell fate switching 98%
- Guidance by followers ensures long-range coordination of cell migration through α-Catenin mechanoperception 96%
- Myosin waves and a mechanical asymmetry guide the oscillatory migration of Drosophila cardiac progenitors 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.