Javascript must be enabled to continue!
Regulation of ventral midbrain patterning by Hedgehog signaling
View through CrossRef
In the developing ventral midbrain, the signaling molecule sonic hedgehog(SHH) is sufficient to specify a striped pattern of cell fates (midbrain arcs). Here, we asked whether and precisely how hedgehog (HH) signaling might be necessary for ventral midbrain patterning. By blocking HH signaling by in ovo misexpression of Ptc1Δloop2,we show that HH signaling is necessary and can act directly at a distance to specify midbrain cell fates. Ventral midbrain progenitors extinguish their dependence upon HH in a spatiotemporally complex manner, completing cell-fate specification at the periphery by Hamburger and Hamilton stage 13. Thus,patterning at the lateral periphery of the ventral midbrain is accomplished early, when the midbrain is small and the HH signal needs to travel relatively short distances (approximately 30 cell diameters). Interestingly, single-cell injections demonstrate that patterning in the midbrain occurs within the context of cortex-like radial columns of cells that can share HH blockade and are cytoplasmically connected by gap junctions. HH blockade results in increased cell scatter, disrupting the spatial coherence of the midbrain arc pattern. Finally, HH signaling is required for the integrity and the signaling properties of the boundaries of the midbrain (e.g. the midbrain-hindbrain boundary, the dorsoventral boundary), its perturbations resulting in abnormal cell mixing across `leaky' borders.
The Company of Biologists
Title: Regulation of ventral midbrain patterning by Hedgehog signaling
Description:
In the developing ventral midbrain, the signaling molecule sonic hedgehog(SHH) is sufficient to specify a striped pattern of cell fates (midbrain arcs).
Here, we asked whether and precisely how hedgehog (HH) signaling might be necessary for ventral midbrain patterning.
By blocking HH signaling by in ovo misexpression of Ptc1Δloop2,we show that HH signaling is necessary and can act directly at a distance to specify midbrain cell fates.
Ventral midbrain progenitors extinguish their dependence upon HH in a spatiotemporally complex manner, completing cell-fate specification at the periphery by Hamburger and Hamilton stage 13.
Thus,patterning at the lateral periphery of the ventral midbrain is accomplished early, when the midbrain is small and the HH signal needs to travel relatively short distances (approximately 30 cell diameters).
Interestingly, single-cell injections demonstrate that patterning in the midbrain occurs within the context of cortex-like radial columns of cells that can share HH blockade and are cytoplasmically connected by gap junctions.
HH blockade results in increased cell scatter, disrupting the spatial coherence of the midbrain arc pattern.
Finally, HH signaling is required for the integrity and the signaling properties of the boundaries of the midbrain (e.
g.
the midbrain-hindbrain boundary, the dorsoventral boundary), its perturbations resulting in abnormal cell mixing across `leaky' borders.
Related Results
Abstract 1711: Regulation of hedgehog signaling by the estrogen receptors
Abstract 1711: Regulation of hedgehog signaling by the estrogen receptors
Abstract
The likelihood of developing prostate cancer increases with age; hence with the increasing lifespan of Americans the prevalence of prostate cancer is also i...
Hedgehog Signaling and Embryonic Craniofacial Disorders
Hedgehog Signaling and Embryonic Craniofacial Disorders
Since its initial discovery in a Drosophila mutagenesis screen, the Hedgehog pathway has been revealed to be instrumental in the proper development of the vertebrate face. Vertebra...
Hedgehog Signaling Alters Adipocyte Maturation of Human Mesenchymal Stem Cells
Hedgehog Signaling Alters Adipocyte Maturation of Human Mesenchymal Stem Cells
Abstract
Human stem cells are powerful tools by which to investigate molecular mechanisms of cell growth and differentiation under normal and pathological conditions...
Control of somite patterning by Sonic hedgehog and its downstream signal response genes
Control of somite patterning by Sonic hedgehog and its downstream signal response genes
ABSTRACT
In the avian embryo, previous work has demonstrated that the notochord provides inductive signals to activate myoD and pax1 regulatory genes, which are expr...
Macro- and Micro-Structural Alterations in the Midbrain in Early Psychosis
Macro- and Micro-Structural Alterations in the Midbrain in Early Psychosis
AbstractIntroductionEarly psychosis (EP) is a critical period in the course of psychotic disorders during which the brain is thought to undergo rapid and significant functional and...
FAP-intrinsic Hedgehog signaling controls intramuscular adipogenesis, fibrosis, and myofiber regeneration
FAP-intrinsic Hedgehog signaling controls intramuscular adipogenesis, fibrosis, and myofiber regeneration
Summary
Fibro/adipogenic progenitors (FAPs) are multipotent stromal cells that support myofiber regeneration, but can also give rise to intramusc...
Hedgehog Ligands and Receptors Are Deregulated in Myelodysplastic Syndromes
Hedgehog Ligands and Receptors Are Deregulated in Myelodysplastic Syndromes
Abstract
Abstract 3817
Background:
The Hedgehog pathway has an important role in self-renew of normal and leukemi...
Outcomes of the eTEP Approach for Incisional Ventral Hernia Repair: Initial Results from Can Tho General Hospital
Outcomes of the eTEP Approach for Incisional Ventral Hernia Repair: Initial Results from Can Tho General Hospital
Abstract
Introduction: The extended-view totally extraperitoneal (eTEP) approach has emerged as an innovative technique for incisional ventral hernia repair, offering several adv...

