Ca2+ signaling and early embryonic patterning during the blastula and gastrula periods of zebrafish and Xenopus development.
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Summary
Data will be presented to support the suggestion that propagating waves of Ca(2+) release, followed by sequestration, may play a crucial role in: (1) Coordinating cell movements during these pattern forming events and (2) Contributing to the establishment of the basic embryonic axes, as well as (3) Helping to define the morphological boundaries of specific tissue domains and embryonic structures, including future organ anlagen.
- Type
- article
- Published
- 2006-11-01
- Cited by
- 71
- References
- 95
- Access
- Open access
- OpenAlex
- https://openalex.org/W16962186
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24349317
Keywords
Mathematics education, Higher education, Computer science, Psychology, Economic growth
References
- A major developmental transition in early Xenopus embryos: I. characterization and timing of cellular changes at the midblastula stage.
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- Gastrulation : from cells to embryo
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- Interaction of Wnt and a Frizzled homologue triggers G-protein-linked phosphatidylinositol signalling
- The versatility and universality of calcium signalling
- Calcium oscillations increase the efficiency and specificity of gene expression
- Frizzled-7 signalling controls tissue separation during Xenopus gastrulation
- Cell-permeant caged InsP3 ester shows that Ca2+ spike frequency can optimize gene expression
- Calcium and spreading behaviour of amphibian blastula and gastrula cells.
- Origin and organization of the zebrafish fate map.
- Regional expression, pattern and timing of convergence and extension during gastrulation of Xenopus laevis.
- The zebrafish midblastula transition.
- Role of inositol 1,4,5-trisphosphate receptor in ventral signaling in Xenopus embryos.
- From egg to embryo
- Activation of protein kinase C triggers premature compaction in the four-cell stage mouse embryo.
- Pacemaker region in a rhythmically contracting embryonic epithelium, the enveloping layer of Oryzias latipes, a teleost.
- Xenopus Cdc42 regulates convergent extension movements during gastrulation through Wnt/Ca2+ signaling pathway.
- Involvement of p21ras in Xenopus mesoderm induction
- Organization of early development by calcium patterns
Cited by
- Src-family Tyrosine Kinases in Oogenesis, Oocyte Maturation, and Fertilization: An Evolutionary Perspective
- Wnt5b signaling in zebrafish development and disease
- Calcium imaging in the zebrafish.
- The effects of temperature on the dispersion and reaggregation stages of development in the annual killifish, Austrofundulus limnaeus
- Molecular characterization of novel ADP-ribosyl cyclases from the sea urchin
- CAMK-II: AN INTEGRAL PROTEIN IN CELL MIGRATION
- Dynamic ATP signalling and neural development
- Inhibition of stored Ca2+ release disrupts convergence‐related cell movements in the lateral intermediate mesoderm resulting in abnormal positioning and morphology of the pronephric anlagen in intact zebrafish embryos
- Visualization of stochastic Ca2+ signals in the formed somites during the early segmentation period in intact, normally developing zebrafish embryos
- Development of Ca2+ signaling mechanisms and cell motility in presumptive ectodermal cells during amphibian gastrulation
- Necessary role for intracellular Ca2+ transients in initiating the apical‐basolateral thinning of enveloping layer cells during the early blastula period of zebrafish development
- Zebrafish epiboly: Spreading thin over the yolk
- Q-RRBS: a quantitative reduced representation bisulfite sequencing method for single-cell methylome analyses
- Identification of CC2D2A as a Meckel syndrome gene adds an important piece to the ciliopathy puzzle.
- Calcium fluxes in dorsal forerunner cells antagonize β-catenin and alter left-right patterning
- Establishment of a transitory dorsal-biased window of localized Ca2+ signaling in the superficial epithelium following the mid-blastula transition in zebrafish embryos.
- The apoptotic regulator Nrz controls cytoskeletal dynamics via the regulation of Ca2+ trafficking in the zebrafish blastula.
- Control of kidney development by calcium ions.
- Calcium signaling in developing embryos: focus on the regulation of cell shape changes and collective movements.
- Misoprostol elevates intracellular calcium in Neuro-2a cells via protein kinase A.
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