ArticleBMC developmental biology2019
Electrochemical gradients are involved in regulating cytoskeletal patterns during epithelial morphogenesis in the Drosophila ovary.
Article in BMC developmental biology, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed, 16 citations in OpenAlex.
- Article
- Article
- Information integration during bioelectric regulation of morphogenesis of the embryonic frog brain.iScience · 2023Article
- Cytoelectric coupling: Electric fields sculpt neural activity and "tune" the brain's infrastructure.Progress in neurobiology · 2023Article
- Single-cell intracellular pH dynamics regulate the cell cycle by timing the G1 exit and G2 transition.Journal of cell science · 2023Article
- α-Synuclein Promotes Neuronal Dysfunction and Death by Disrupting the Binding of Ankyrin to β-Spectrin.The Journal of neuroscience : the official journal of the Society for Neuroscience · 2023Article
- Analysing bioelectrical phenomena in the Drosophila ovary with genetic tools: tissue-specific expression of sensors for membrane potential and intracellular pH, and RNAi-knockdown of mechanisms involved in ion exchange.BMC developmental biology · 2020Article
- Bioelectrical and cytoskeletal patterns correlate with altered axial polarity in the follicular epithelium of the Drosophila mutant gurken.BMC developmental biology · 2020Article
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Authors and funding
2 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundDuring Drosophila oogenesis, the follicular epithelium differentiates into several morphologically distinct follicle-cell populations. Characteristic bioelectrical properties make this tissue a suitable model system for studying connections between electrochemical signals and the organisation of the cytoskeleton. Recently, we have described stage-specific transcellular antero-posterior and dorso-ventral gradients of intracellular pH (pH
resultsThe bMF- and MT-patterns in developmental stages 8 to 12 were visualised using labelled phalloidin and an antibody against acetylated α-tubulin as well as follicle-cell specific expression of GFP-actin and GFP-α-tubulin. Obviously, stage-specific changes of the pH
conclusionsWe conclude that the pH
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