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1.
Cells ; 13(4)2024 Feb 14.
Artigo em Inglês | MEDLINE | ID: mdl-38391953

RESUMO

Interactions among leukocytes and leukocytes with immune-associated auxiliary cells represent an essential feature of the immune response that requires the involvement of cell adhesion molecules (CAMs). In the immune system, CAMs include a wide range of members pertaining to different structural and functional families involved in cell development, activation, differentiation and migration. Among them, ß2 integrins (LFA-1, Mac-1, p150,95 and αDß2) are predominantly involved in homotypic and heterotypic leukocyte adhesion. ß2 integrins bind to intercellular (I)CAMs, actin cytoskeleton-linked receptors belonging to immunoglobulin superfamily (IgSF)-CAMs expressed by leukocytes and vascular endothelial cells, enabling leukocyte activation and transendothelial migration. ß2 integrins have long been viewed as the most important ICAMs partners, propagating intracellular signalling from ß2 integrin-ICAM adhesion receptor interaction. In this review, we present previous evidence from pioneering studies and more recent findings supporting an important role for ICAMs in signal transduction. We also discuss the contribution of immune ICAMs (ICAM-1, -2, and -3) to reciprocal cell signalling and function in processes in which ß2 integrins supposedly take the lead, paying particular attention to T cell activation, differentiation and migration.


Assuntos
Moléculas de Adesão Celular , Células Endoteliais , Humanos , Células Endoteliais/metabolismo , Moléculas de Adesão Celular/metabolismo , Antígeno-1 Associado à Função Linfocitária/metabolismo , Antígeno de Macrófago 1 , Antígenos CD18 , Comunicação
2.
Front Immunol ; 13: 951280, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-36238292

RESUMO

Activation of the integrin phagocytic receptors CR3 (αMß2, CD11b/CD18) and CR4 (αXß2, CD11c/CD18) requires Rap1 activation and RIAM function. RIAM controls integrin activation by recruiting Talin to ß2 subunits, enabling the Talin-Vinculin interaction, which in term bridges integrins to the actin-cytoskeleton. RIAM also recruits VASP to phagocytic cups and facilitates VASP phosphorylation and function promoting particle internalization. Using a CRISPR-Cas9 knockout approach, we have analyzed the requirement for RIAM, VASP and Vinculin expression in neutrophilic-HL-60 cells. All knockout cells displayed abolished phagocytosis that was accompanied by a significant and specific reduction in ITGAM (αM), ITGAX (αX) and ITGB2 (ß2) mRNA, as revealed by RT-qPCR. RIAM, VASP and Vinculin KOs presented reduced cellular F-actin content that correlated with αM expression, as treatment with the actin filament polymerizing and stabilizing drug jasplakinolide, partially restored αM expression. In general, the expression of αX was less responsive to jasplakinolide treatment than αM, indicating that regulatory mechanisms independent of F-actin content may be involved. The Serum Response Factor (SRF) was investigated as the potential transcription factor controlling αMß2 expression, since its coactivator MRTF-A requires actin polymerization to induce transcription. Immunofluorescent MRTF-A localization in parental cells was primarily nuclear, while in knockouts it exhibited a diffuse cytoplasmic pattern. Localization of FHL-2 (SRF corepressor) was mainly sub-membranous in parental HL-60 cells, but in knockouts the localization was disperse in the cytoplasm and the nucleus, suggesting RIAM, VASP and Vinculin are required to maintain FHL-2 close to cytoplasmic membranes, reducing its nuclear localization and inhibiting its corepressor activity. Finally, reexpression of VASP in the VASP knockout resulted in a complete reversion of the phenotype, as knock-ins restored αM expression. Taken together, our results suggest that RIAM, VASP and Vinculin, are necessary for the correct expression of αMß2 and αXß2 during neutrophilic differentiation in the human promyelocytic HL-60 cell line, and strongly point to an involvement of these proteins in the acquisition of a phagocytic phenotype.


Assuntos
Actinas , Talina , Proteínas Adaptadoras de Transdução de Sinal , Moléculas de Adesão Celular , Proteínas Correpressoras , Células HL-60 , Humanos , Integrina alfaXbeta2 , Integrinas/metabolismo , Antígeno de Macrófago 1 , Proteínas de Membrana , Proteínas dos Microfilamentos , Neutrófilos/metabolismo , Fosfoproteínas , RNA Mensageiro , Fator de Resposta Sérica , Talina/genética , Talina/metabolismo , Vinculina/genética , Vinculina/metabolismo
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