p2x7 receptor activation
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2021 ◽  
Vol 22 (19) ◽  
pp. 10492
Author(s):  
Sin-Lih Tan ◽  
Muruj Barri ◽  
Peace Atakpa-Adaji ◽  
Colin W. Taylor ◽  
Ewan St. John Smith ◽  
...  

The P2X4 purinergic receptor is targeted to endolysosomes, where it mediates an inward current dependent on luminal ATP and pH. Activation of P2X4 receptors was previously shown to trigger lysosome fusion, but the regulation of P2X4 receptors and their role in lysosomal Ca2+ signaling are poorly understood. We show that lysosomal P2X4 receptors are activated downstream of plasma membrane P2X7 and H1 histamine receptor stimulation. When P2X4 receptors are expressed, the increase in near-lysosome cytosolic [Ca2+] is exaggerated, as detected with a low-affinity targeted Ca2+ sensor. P2X4-dependent changes in lysosome properties were triggered downstream of P2X7 receptor activation, including an enlargement of lysosomes indicative of homotypic fusion and a redistribution of lysosomes towards the periphery of the cell. Lysosomal P2X4 receptors, therefore, have a role in regulating lysosomal Ca2+ release and the regulation of lysosomal membrane trafficking.


2021 ◽  
Vol 15 ◽  
Author(s):  
Ágatha Oliveira-Giacomelli ◽  
Lyvia Lintzmaier Petiz ◽  
Roberta Andrejew ◽  
Natalia Turrini ◽  
Jean Bezerra Silva ◽  
...  

P2X7 receptors are ion-gated channels activated by ATP. Under pathological conditions, the extensive release of ATP induces sustained P2X7 receptor activation, culminating in induction of proinflammatory pathways with inflammasome assembly and cytokine release. These inflammatory conditions, whether occurring peripherally or in the central nervous system (CNS), increase blood-brain-barrier (BBB) permeability. Besides its well-known involvement in neurodegeneration and neuroinflammation, the P2X7 receptor may induce BBB disruption and chemotaxis of peripheral immune cells to the CNS, resulting in brain parenchyma infiltration. For instance, despite common effects on cytokine release, P2X7 receptor signaling is also associated with metalloproteinase secretion and activation, as well as migration and differentiation of T lymphocytes, monocytes and dendritic cells. Here we highlight that peripheral immune cells mediate the pathogenesis of Multiple Sclerosis and Parkinson’s and Alzheimer’s disease, mainly through T lymphocyte, neutrophil and monocyte infiltration. We propose that P2X7 receptor activation contributes to neurodegenerative disease progression beyond its known effects on the CNS. This review discusses how P2X7 receptor activation mediates responses of peripheral immune cells within the inflamed CNS, as occurring in the aforementioned diseases.


2021 ◽  
Vol 16 (8) ◽  
pp. 1582
Author(s):  
Zhou-Ping Tang ◽  
Hong Deng ◽  
Ye Zhang ◽  
Gai-Gai Li ◽  
Hai-Han Yu ◽  
...  

2020 ◽  
Vol 2020 (4) ◽  
Author(s):  
Francesco Di Virgilio ◽  
Richard J. Evans ◽  
Simonetta Falzoni ◽  
Samuel J. Fountain ◽  
Michael F. Jarvis ◽  
...  

P2X receptors (nomenclature as agreed by the NC-IUPHAR Subcommittee on P2X Receptors [48, 141]) have a trimeric topology [124, 139, 188] with two putative TM domains, gating primarily Na+, K+ and Ca2+, exceptionally Cl-. The Nomenclature Subcommittee has recommended that for P2X receptors, structural criteria should be the initial criteria for nomenclature where possible. X-ray crystallography indicates that functional P2X receptors are trimeric and three agonist molecules are required to bind to a single receptor in order to activate it [139, 93, 101, 170]. Native receptors may occur as either homotrimers (e.g. P2X1 in smooth muscle) or heterotrimers (e.g. P2X2:P2X3 in the nodose ganglion [265], P2X1:P2X5 in mouse cortical astrocytes [155], and P2X2:P2X5 in mouse dorsal root ganglion, spinal cord and mid pons [52, 221]. P2X2, P2X4 and P2X7 receptor activation can also lead to influx of large cationic molecules, such as NMDG, Yo-Pro, ethidium or propidium iodide [200]. The hemi-channel pannexin-1 was initially implicated in the action of P2X7 [201], but not P2X2, receptors [40], but this interpretation is probably misleading. Convincing evidence now supports the view that the activated P2X7 receptor is immediately permeable to large cationic molecules, but influx proceeds at a much slower pace than that of the small cations Na+, K+, and Ca2+ [64].


2020 ◽  
Vol 21 (14) ◽  
pp. 4937 ◽  
Author(s):  
Elizabeth Rivas-Yáñez ◽  
Carlos Barrera-Avalos ◽  
Brian Parra-Tello ◽  
Pedro Briceño ◽  
Mariana V. Rosemblatt ◽  
...  

The P2X7 receptor is a ligand-gated, cation-selective channel whose main physiological ligand is ATP. P2X7 receptor activation may also be triggered by ARTC2.2-dependent ADP ribosylation in the presence of extracellular NAD. Upon activation, this receptor induces several responses, including the influx of calcium and sodium ions, phosphatidylserine externalization, the formation of a non-selective membrane pore, and ultimately cell death. P2X7 receptor activation depends on the availability of extracellular nucleotides, whose concentrations are regulated by the action of extracellular nucleotidases such as CD39 and CD38. The P2X7 receptor has been extensively studied in the context of the immune response, and it has been reported to be involved in inflammasome activation, cytokine production, and the migration of different innate immune cells in response to ATP. In adaptive immune responses, the P2X7 receptor has been linked to T cell activation, differentiation, and apoptosis induction. In this review, we will discuss the evidence of the role of the P2X7 receptor on T cell differentiation and in the control of T cell responses in inflammatory conditions.


2020 ◽  
Vol 133 (5) ◽  
pp. jcs237560 ◽  
Author(s):  
Luiz Eduardo Baggio Savio ◽  
Paola de Andrade Mello ◽  
Stephanie Alexia Cristina Silva Santos ◽  
Júlia Costa de Sousa ◽  
Suellen D. S. Oliveira ◽  
...  

2020 ◽  
Vol 1864 (1) ◽  
pp. 129461 ◽  
Author(s):  
Ygor Marinho ◽  
Camila Marques-da-Silva ◽  
Patricia Teixeira Santana ◽  
Mariana Martins Chaves ◽  
Augusto Shuiti Tamura ◽  
...  

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