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Intestinal barrier dysfunction is a hallmark of gastrointestinal disorders, including inflammatory bowel diseases (IBD). In IBD, the disruption of the gut barrier causes liquid loss and persistent immune response. Understanding the cellular events underlying epithelial barrier disruption during chro...
2026-04-01 | MTBLS14166 | MetaboLights
Sarcomeres, the basic contractile units of striated muscle cells, contain arrays of thin (actin) and thick (myosin) filaments that slide past each other during contraction. The Ig-like domain containing protein myotilin provides structural integrity to Z-discs—the boundaries between adjacent sarcome...
ORGANISM(S): Homo sapiens (Human) 
2021-02-22 | PXD024301 | Pride
Membrane deformation by one-dimensional (1D) wetting, a physical process driven by the interaction of the plasma membrane with adhesive nanofibers, triggers the formation of filopodium-like plasma membrane protrusions. In these protrusions, F-actin reorganization occurs after membrane deformation. H...
ORGANISM(S): Neisseria meningitidis serogroup C (strain 8013) Homo sapiens (Human) 
2026-05-13 | PXD045648 | Pride
Transcriptome analysis after disruption of nuclear F-actin in mouse embryos
Filamentous actin (F-actin) is one of the major cytoskeleton proteins present in dendritic spines and it is an essential component for defining dendritic spine morphology. We have shown that synaptosomal F-actin levels were significantly decreased in APP/PS1 mice as early as one month of age. The mo...
ORGANISM(S): Mus musculus (Mouse) 
2024-10-17 | PXD050802 | Pride
F-actin dynamics couples sphingolipid metabolism to epithelial barrier integrity in chronic colitis
We find that filamentous actin (F-actin) is formed in pronuclei of mouse zygotes, disruption of which resulted in abnormal development of mouse embryos. To further explain the molecular mechanism, transcriptome analysis was performed following the artificial disruption of nuclear F-actin by overexpr...
ORGANISM(S): Mus musculus 
2020-06-30 | GSE126317 | GEO
The regulatory effect and mechanism of F-actin gene on the response of cadmium toxicity in farmland Pardosa pseudoannulata
F-actin dynamics regulates mammalian organ growth and cell fate maintenance
Reveal the sequence characteristics of key genes of F-actin; RNAi technology was used to investigate the regulatory effect of F-actin gene on cadmium contamination of Pardosa pseudoannulata, and to elucidate the response mechanism of F-actin in regulating spiders to cadmium pollution.
ORGANISM(S): Pardosa pseudoannulata 
2025-06-30 | GSE284523 | GEO
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