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Artikel ; Online: Controling the cytoskeleton during CEACAM3-mediated phagocytosis.

Kuiper, Johannes W P / Gregg, Helena L / Schüber, Meike / Klein, Jule / Hauck, Christof R

European journal of cell biology

2024  Band 103, Heft 1, Seite(n) 151384

Abstract: Phagocytosis, an innate defense mechanism of multicellular animals, is initiated by specialized surface receptors. A phagocytic receptor expressed by human polymorphonuclear granulocytes, the major professional phagocytes in our body, is one of the ... ...

Abstract Phagocytosis, an innate defense mechanism of multicellular animals, is initiated by specialized surface receptors. A phagocytic receptor expressed by human polymorphonuclear granulocytes, the major professional phagocytes in our body, is one of the fastest evolving human proteins implying a special role in human biology. This receptor, CEACAM3, is a member of the CarcinoEmbryonic Antigen-related Cell Adhesion Molecule (CEACAM) family and dedicated to the immediate recognition and rapid internalization of human-restricted pathogens. In this focused contribution, we will review the special adaptations of this protein, which co-evolves with different species of mucosa-colonizing bacteria. While the extracellular Immunoglobulin-variable (Ig
Mesh-Begriff(e) Animals ; Humans ; Phagocytosis ; Cell Adhesion Molecules ; Cytoskeleton ; Signal Transduction ; Phosphorylation ; Carcinoembryonic Antigen
Chemische Substanzen Cell Adhesion Molecules ; CEACAM3 protein, human ; Carcinoembryonic Antigen
Sprache Englisch
Erscheinungsdatum 2024-01-05
Erscheinungsland Germany
Dokumenttyp Review ; Journal Article
ZDB-ID 391967-5
ISSN 1618-1298 ; 0070-2463 ; 0171-9335
ISSN (online) 1618-1298
ISSN 0070-2463 ; 0171-9335
DOI 10.1016/j.ejcb.2024.151384
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