| Literature DB >> 31440138 |
Robin Kopp1, Anna Krautloher1, Antonio Ramírez-Fernández1, Annette Nicke1.
Abstract
Extracellular adenine nucleotides play important roles in cell-cell communication and tissue homeostasis. High concentrations of extracellular ATP released by dying cells are sensed as a danger signal by the P2X7 receptor, a non-specific cation channel. Studies in P2X7 knockout mice and numerous disease models have demonstrated an important role of this receptor in inflammatory processes. P2X7 activation has been shown to induce a variety of cellular responses that are not usually associated with ion channel function, for example changes in the plasma membrane composition and morphology, ectodomain shedding, activation of lipases, kinases, and transcription factors, as well as cytokine release and apoptosis. In contrast to all other P2X family members, the P2X7 receptor contains a long intracellular C-terminus that constitutes 40% of the whole protein and is considered essential for most of these effects. So far, over 50 different proteins have been identified to physically interact with the P2X7 receptor. However, few of these interactions have been confirmed in independent studies and for the majority of these proteins, the interaction domains and the physiological consequences of the interactions are only poorly described. Also, while the structure of the P2X7 extracellular domain has recently been resolved, information about the organization and structure of its C-terminal tail remains elusive. After shortly describing the structure and assembly of the P2X7 receptor, this review gives an update of the identified or proposed interaction domains within the P2X7 C-terminus, describes signaling pathways in which this receptor has been involved, and provides an overlook of the identified interaction partners.Entities:
Keywords: C-terminus; P2X7 (purino) receptor; network; protein-protein interaction (PPI); signaling/signaling pathways
Year: 2019 PMID: 31440138 PMCID: PMC6693442 DOI: 10.3389/fnmol.2019.00183
Source DB: PubMed Journal: Front Mol Neurosci ISSN: 1662-5099 Impact factor: 5.639
FIGURE 1Schematic representation of the human P2X7 receptor depicting details of its intracellular C-terminus. (A) Homology model (https://swissmodel. expasy.org/) based on the crystal structure of the panda P2X7 in the closed, apo state (PDB ID: 5U1L) is shown with the three P2X7 subunits represented in gray, brown, and purple. Note the dolphin-shaped structure of a single subunit with the transmembrane regions representing the fluke. The structure of the intracellular C-terminus has not been determined. The estimated length of one unfolded C-terminus is represented in scale to the crystallized domains. (B) Amino acid sequence of the human P2X7 intracellular C-terminus representing individual amino acid residues and domains discussed in the text. Note that some of the motifs/domains are putative and species variations are not considered. Groups of palmitoylated cysteines (A–D) according are shown. A dashed line indicates partial palmitoylation (Gonnord et al., 2008). The aa sequence was drawn with Protter and manually modified: http://wlab.ethz.ch/protter/ (Omasits et al., 2014).
Published P2X7 interaction partners (adapted from http://www.p2x7.co.uk).
| ABL1 | Tyrosine-protein kinase ABL1 | P00519 | Peptide array | ||
| ACTB∗ | Actin, cytoplasmic 1 (β-actin) | P60709 | IP-MS/WB | HEK293 | |
| IP-MS | THP-1 | ||||
| ACTN4∗ | α-actinin 4 | O43707 | IP-MS/WB | HEK293 | |
| ANO6 | Anoctamin-6 | Q4KMQ2 | IP-WB | HEK293 | |
| ARRB2 | β-arrestin 2 | P32121 | IP-WB | CaSKI / HEK293 | |
| Bgn | Biglycan | P21810 | IP-WB | Peritoneal macrophages | |
| CALM1∗ | Calmodulin | P0DP23 | IP-WB | HEK293 | |
| CASK | Peripheral plasma membrane protein CASK | O14936 | Y2H | Liver cDNA library | |
| Cav1/3 | Caveolin-1 | Q03135 | PD/IP-WB | Alveolar epithelial E10 cells | |
| nPAGE/IP-WB | Alveolar epithelial E10 cells | ||||
| nPAGE-WB | HL-1 | ||||
| Caveolin-3 | P56539 | nPAGE-WB | HL-1 | ||
| CD14 | Monocyte differentiation antigen CD14 | P08571 | IP-WB | HEK293 | |
| CD44 | CD44 antigen | P16070 | IP-WB | CHO-K1 | |
| CLTA/B/C/D | Clathrin | IP-WB | CaSKI / HEK293 | ||
| CYFIP1 | Cytoplasmic FMR1-interacting protein 1 | Q7L576 | IP-WB | Mouse prefrontal cortex | |
| DEFA1 | Neutrophil defensin 1 | P59665 | PD-WB | HEK293 | |
| DNM1 | Dynamin-1 | Q05193 | IP-WB | CaSKI / HEK293 | |
| EFNB3 | Ephrin-B3 | Q15768 | Y2H | Liver cDNA library | |
| EMP1/2/3 | Epithelial membrane protein 1/2/3 | P54849, P54851, P54852 | Y2H, PD/IP-WB | HEK293 | |
| Fyn | Tyrosine-protein kinase Fyn | P06241 | IP-WB | OPCs, HEK293 | |
| GRB2 | Growth factor receptor-bound protein 2 | P62993 | Peptide array | ||
| GRK3 | β-adrenergic receptor kinase 2 | P35626 | IP-WB | CaSKI / HEK293 | |
| HSP90AB1∗ | Heat shock protein HSP 90-β | P08238 | IP-MS/WB | HEK293 | |
| IP-WB | HEK293, peritoneal macrophages | ||||
| IP-MS | HEK293 | ||||
| IP-WB | PC12 | ||||
| HSPA1A∗ | Heat shock 70 kDa protein 1A/1B | P0DMV8 | IP-MS/WB | HEK293 | |
| IP-MS | HEK293 | ||||
| HSPA8∗ | Heat shock cognate 71 kDa protein | P11142 | IP-MS/WB | HEK293 | |
| ITGB2 | Integrin β-2 | P05107 | IP-MS/WB | HEK293 | |
| LAMA3 | Laminin subunit α-3 | Q16787 | IP-MS/WB | HEK293 | |
| MPP3 | MAGUK p55 subfamily member 3 | Q13368 | IP-MS/WB | HEK293 | |
| MYH9∗ | Myosin-9 (Myosin heavy chain, non-muscle IIa) | P35579 | IP-MS/WB | THP-1 | |
| MyD88 | Myeloid differentiation primary response protein MyD88 | Q99836 | IP-WB | HEK293 | |
| MYL12A/B∗ | Myosin regulatory light chain 12A, Myosin regulatory light chain 12B | P19105 O14950 | IP-MS | THP-1 | |
| MYO5A | Unconventional myosin-Va | Q9Y4I1 | IP-MS/WB | HEK293 | |
| NCK1 | Cytoplasmic protein NCK1 | P16333 | Peptide array | ||
| NLRP2/3 | NACHT, LRR and PYD domains-containing protein 2 | Q9NX02 | IP-WB | Astrocytes | |
| NACHT, LRR and PYD domains-containing protein 3 | Q9NX02 | IP-WB | N13 microglia | ||
| NME2 | Nucleoside diphosphate kinase B | P22392 | IP-MS | HEK293 | |
| NOS1 | Nitric oxide synthase, brain | P29475 | IP-WB | Mouse brain | |
| P2RX4 | P2X4 Receptor | Q99571 | IP-WB | HEK293, BMDM | |
| IP-WB | BMDM | ||||
| nPAGE/IP-WB | Alveolar epithelial E10 cells | ||||
| PD/IP-WB | tsA 201 | ||||
| IP-WB | Primary gingival epithelial cells | ||||
| IP-WB | HEK293 | ||||
| PANX1 | Pannexin-1 | Q96RD7 | IP-WB | HEK293 | |
| IP-WB | J774.2 | ||||
| IP-WB | Primary neurons | ||||
| IP-WB | HEK293 | ||||
| IP-WB | N2a | ||||
| IP-WB | HPDL | ||||
| PD-WB | N2a | ||||
| PI4KA | Phosphatidylinositol 4-kinase α | P42356 | IP-MS/WB | HEK293 | |
| PPIP5K1 | Inositol hexakisphosphate and diphosphoinositol-pentakisphosphate kinase 1 | Q6PFW1 | IP-MS | THP-1 | |
| PMP22 | Peripheral myelin protein 22 | Q01453 | Y2H, PD-WB | HEK293 | |
| PRKCG | Protein kinase C γ type | P05129 | IP-WB | Astrocyte cell line (RBA-2) | |
| PTPN6 | Tyrosine-protein phosphatase non-receptor type 6 | P29350 | IP-MS | THP-1 | |
| PTPRB | Receptor-type tyrosine-protein phosphatase β | P23467 | IP-MS | HEK293 | |
| PYCARD | Apoptosis-associated speck-like protein containing a CARD (ASC) | Q9ULZ3 | IP-WB | Primary neurons | |
| IP-WB | Astrocytes | ||||
| Snca | α-synuclein | P37840 | IP-WB | Microglia cell line BV2 | |
| SVIL | Supervillin | O95425 | IP-MS/WB | HEK293 | |
| Tlr2/4 | Toll-like receptor 2/4 | O60603 O00206 | IP-WB | Peritoneal macrophages | |
| TM9SF1 | Transmembrane 9 superfamily member 1 | O15321 | Y2H | Liver cDNA library | |
| TPR | Nucleoprotein TPR | P12270 | IP-MS | HEK293 | |
| TRIM21∗ | E3 ubiquitin-protein ligase TRIM21 (52 kDa Ro protein) | P19474 | IP-MS | THP-1; HEK293 | |
| TUBB∗ | Tubulin β chain | P07437 | IP-MS | HEK293 |
FIGURE 2Interaction network of published P2X7 interaction partners. Proteins were analyzed using STRING database (v11.0; Szklarczyk et al., 2019). Twenty-two proteins are involved in function of the innate immune system (shown in red). The thickness of the connecting lines indicates the strength of data support for physical and/or functional associations.