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Open data
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Basic information
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Title | CryoEM structure of PAR2 with endogenous tethered ligand. | |||||||||
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![]() | PAR2 / endogenous ligand / IMMUNE SYSTEM | |||||||||
Function / homology | ![]() positive regulation of neutrophil mediated killing of gram-negative bacterium / : / positive regulation of renin secretion into blood stream / positive regulation of eosinophil degranulation / mature conventional dendritic cell differentiation / leukocyte proliferation / positive regulation of glomerular filtration / regulation of chemokine (C-X-C motif) ligand 2 production / negative regulation of toll-like receptor 3 signaling pathway / positive regulation of toll-like receptor 3 signaling pathway ...positive regulation of neutrophil mediated killing of gram-negative bacterium / : / positive regulation of renin secretion into blood stream / positive regulation of eosinophil degranulation / mature conventional dendritic cell differentiation / leukocyte proliferation / positive regulation of glomerular filtration / regulation of chemokine (C-X-C motif) ligand 2 production / negative regulation of toll-like receptor 3 signaling pathway / positive regulation of toll-like receptor 3 signaling pathway / positive regulation of toll-like receptor 2 signaling pathway / thrombin-activated receptor activity / positive regulation of actin filament depolymerization / cell-cell junction maintenance / Fatty Acids bound to GPR40 (FFAR1) regulate insulin secretion / Acetylcholine regulates insulin secretion / positive regulation of toll-like receptor 4 signaling pathway / phospholipase C-activating G protein-coupled glutamate receptor signaling pathway / positive regulation of pseudopodium assembly / T cell activation involved in immune response / phospholipase C-activating serotonin receptor signaling pathway / PLC beta mediated events / positive regulation of cytokine production involved in immune response / entrainment of circadian clock / regulation of platelet activation / positive regulation of phagocytosis, engulfment / negative regulation of chemokine production / neutrophil activation / positive regulation of leukocyte chemotaxis / positive regulation of chemotaxis / negative regulation of JNK cascade / establishment of endothelial barrier / regulation of JNK cascade / regulation of canonical NF-kappaB signal transduction / positive regulation of positive chemotaxis / regulation of canonical Wnt signaling pathway / glutamate receptor signaling pathway / leukocyte migration / positive regulation of Rho protein signal transduction / regulation of blood coagulation / pseudopodium / positive regulation of interleukin-10 production / phototransduction, visible light / postsynaptic cytosol / PKA activation in glucagon signalling / hair follicle placode formation / photoreceptor outer segment / negative regulation of tumor necrosis factor-mediated signaling pathway / G-protein alpha-subunit binding / developmental growth / neuropeptide signaling pathway / D1 dopamine receptor binding / intracellular transport / vascular endothelial cell response to laminar fluid shear stress / negative regulation of insulin secretion / renal water homeostasis / Hedgehog 'off' state / adenylate cyclase-activating adrenergic receptor signaling pathway / activation of adenylate cyclase activity / positive regulation of chemokine production / enzyme regulator activity / response to prostaglandin E / positive regulation of GTPase activity / regulation of insulin secretion / cellular response to glucagon stimulus / GTPase activator activity / adenylate cyclase activator activity / Peptide ligand-binding receptors / positive regulation of superoxide anion generation / Turbulent (oscillatory, disturbed) flow shear stress activates signaling by PIEZO1 and integrins in endothelial cells / positive regulation of interleukin-1 beta production / trans-Golgi network membrane / negative regulation of protein kinase activity / positive regulation of interleukin-8 production / positive regulation of JNK cascade / negative regulation of inflammatory response to antigenic stimulus / G protein-coupled receptor binding / G protein-coupled receptor activity / bone development / positive regulation of interleukin-6 production / G-protein beta/gamma-subunit complex binding / platelet aggregation / Olfactory Signaling Pathway / cognition / Activation of the phototransduction cascade / positive regulation of type II interferon production / G beta:gamma signalling through PLC beta / Presynaptic function of Kainate receptors / Thromboxane signalling through TP receptor / G protein-coupled acetylcholine receptor signaling pathway / adenylate cyclase-activating G protein-coupled receptor signaling pathway / G-protein activation / Activation of G protein gated Potassium channels / Inhibition of voltage gated Ca2+ channels via Gbeta/gamma subunits / Prostacyclin signalling through prostacyclin receptor / G beta:gamma signalling through CDC42 / Glucagon signaling in metabolic regulation / G beta:gamma signalling through BTK / Synthesis, secretion, and inactivation of Glucagon-like Peptide-1 (GLP-1) / ADP signalling through P2Y purinoceptor 12 Similarity search - Function | |||||||||
Biological species | ![]() | |||||||||
Method | single particle reconstruction / cryo EM / Resolution: 3.1 Å | |||||||||
![]() | Lyu Z / Lyu X / McGrath AP / Kang Y | |||||||||
Funding support | 1 items
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![]() | ![]() Title: Structural basis for the activation of proteinase-activated receptors PAR1 and PAR2. Authors: Zongyang Lyu / Xiaoxuan Lyu / Andrey G Malyutin / Guliang Xia / Daniel Carney / Vinicius M Alves / Matthew Falk / Nidhi Arora / Hua Zou / Aaron P McGrath / Yanyong Kang / ![]() Abstract: Members of the proteinase-activated receptor (PAR) subfamily of G protein-coupled receptors (GPCRs) play critical roles in processes like hemostasis, thrombosis, development, wound healing, ...Members of the proteinase-activated receptor (PAR) subfamily of G protein-coupled receptors (GPCRs) play critical roles in processes like hemostasis, thrombosis, development, wound healing, inflammation, and cancer progression. Comprising PAR1-PAR4, these receptors are specifically activated by protease cleavage at their extracellular amino terminus, revealing a 'tethered ligand' that self-activates the receptor. This triggers complex intracellular signaling via G proteins and beta-arrestins, linking external protease signals to cellular functions. To date, direct structural visualization of these ligand-receptor complexes has been limited. Here, we present structural snapshots of activated PAR1 and PAR2 bound to their endogenous tethered ligands, revealing a shallow and constricted orthosteric binding pocket. Comparisons with antagonist-bound structures show minimal conformational changes in the TM6 helix and larger movements of TM7 upon activation. These findings reveal a common activation mechanism for PAR1 and PAR2, highlighting critical residues involved in ligand recognition. Additionally, the structure of PAR2 bound to a pathway selective antagonist, GB88, demonstrates how potent orthosteric engagement can be achieved by a small molecule mimicking the endogenous tethered ligand's interactions. | |||||||||
History |
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Structure visualization
Supplemental images |
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Downloads & links
-EMDB archive
Map data | ![]() | 46.5 MB | ![]() | |
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Header (meta data) | ![]() ![]() | 22.1 KB 22.1 KB | Display Display | ![]() |
FSC (resolution estimation) | ![]() | 11.9 KB | Display | ![]() |
Images | ![]() | 51.3 KB | ||
Filedesc metadata | ![]() | 7 KB | ||
Others | ![]() ![]() | 48.9 MB 48.9 MB | ||
Archive directory | ![]() ![]() | HTTPS FTP |
-Related structure data
Related structure data | ![]() 9d0aMC ![]() 9d4zC ![]() 9e7rC M: atomic model generated by this map C: citing same article ( |
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Similar structure data | Similarity search - Function & homology ![]() |
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Links
EMDB pages | ![]() ![]() |
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Related items in Molecule of the Month |
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Map
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Projections & slices | Image control
Images are generated by Spider. | ||||||||||||||||||||||||||||||||||||
Voxel size | X=Y=Z: 0.92 Å | ||||||||||||||||||||||||||||||||||||
Density |
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Symmetry | Space group: 1 | ||||||||||||||||||||||||||||||||||||
Details | EMDB XML:
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-Supplemental data
-Half map: #2
File | emd_46448_half_map_1.map | ||||||||||||
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Projections & Slices |
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Density Histograms |
-Half map: #1
File | emd_46448_half_map_2.map | ||||||||||||
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Density Histograms |
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Sample components
-Entire : Complex of PAR2 with G proteins
Entire | Name: Complex of PAR2 with G proteins |
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Components |
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-Supramolecule #1: Complex of PAR2 with G proteins
Supramolecule | Name: Complex of PAR2 with G proteins / type: complex / ID: 1 / Parent: 0 / Macromolecule list: all |
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Source (natural) | Organism: ![]() |
-Macromolecule #1: Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1
Macromolecule | Name: Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1 type: protein_or_peptide / ID: 1 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 37.285734 KDa |
Recombinant expression | Organism: ![]() ![]() |
Sequence | String: SELDQLRQEA EQLKNQIRDA RKACADATLS QITNNIDPVG RIQMRTRRTL RGHLAKIYAM HWGTDSRLLV SASQDGKLII WDSYTTNKV HAIPLRSSWV MTCAYAPSGN YVACGGLDNI CSIYNLKTRE GNVRVSRELA GHTGYLSCCR FLDDNQIVTS S GDTTCALW ...String: SELDQLRQEA EQLKNQIRDA RKACADATLS QITNNIDPVG RIQMRTRRTL RGHLAKIYAM HWGTDSRLLV SASQDGKLII WDSYTTNKV HAIPLRSSWV MTCAYAPSGN YVACGGLDNI CSIYNLKTRE GNVRVSRELA GHTGYLSCCR FLDDNQIVTS S GDTTCALW DIETGQQTTT FTGHTGDVMS LSLAPDTRLF VSGACDASAK LWDVREGMCR QTFTGHESDI NAICFFPNGN AF ATGSDDA TCRLFDLRAD QELMTYSHDN IICGITSVSF SKSGRLLLAG YDDFNCNVWD ALKADRAGVL AGHDNRVSCL GVT DDGMAV ATGSWDSFLK IWN UniProtKB: Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1 |
-Macromolecule #2: Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2
Macromolecule | Name: Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2 type: protein_or_peptide / ID: 2 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 6.504446 KDa |
Recombinant expression | Organism: ![]() ![]() |
Sequence | String: NTASIAQARK LVEQLKMEAN IDRIKVSKAA ADLMAYCEAH AKEDPLLTPV PASENPFRE UniProtKB: Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2 |
-Macromolecule #3: scFv16
Macromolecule | Name: scFv16 / type: protein_or_peptide / ID: 3 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: unidentified (others) |
Molecular weight | Theoretical: 26.679721 KDa |
Recombinant expression | Organism: ![]() ![]() |
Sequence | String: DVQLVESGGG LVQPGGSRKL SCSASGFAFS SFGMHWVRQA PEKGLEWVAY ISSGSGTIYY ADTVKGRFTI SRDDPKNTLF LQMTSLRSE DTAMYYCVRS IYYYGSSPFD FWGQGTTLTV SSGGGGSGGG GSGGGGSDIV MTQATSSVPV TPGESVSISC R SSKSLLHS ...String: DVQLVESGGG LVQPGGSRKL SCSASGFAFS SFGMHWVRQA PEKGLEWVAY ISSGSGTIYY ADTVKGRFTI SRDDPKNTLF LQMTSLRSE DTAMYYCVRS IYYYGSSPFD FWGQGTTLTV SSGGGGSGGG GSGGGGSDIV MTQATSSVPV TPGESVSISC R SSKSLLHS NGNTYLYWFL QRPGQSPQLL IYRMSNLASG VPDRFSGSGS GTAFTLTISR LEAEDVGVYY CMQHLEYPLT FG AGTKLEL KAAA |
-Macromolecule #4: Proteinase-activated receptor 2
Macromolecule | Name: Proteinase-activated receptor 2 / type: protein_or_peptide / ID: 4 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 44.173203 KDa |
Recombinant expression | Organism: ![]() ![]() |
Sequence | String: MRSPSAAWLL GAAILLAASL SCSGTIQGTN RSSKGRSLIG KVDGTSHVTG KGVTVETVFS VDEFSASVLT GKLTTVFLPI VYTIVFVVG LPSNGMALWV FLFRTKKKHP AVIYMANLAL ADLLSVIWFP LKIAYHIHGN NWIYGEALCN VLIGFFYGNM Y CSILFMTC ...String: MRSPSAAWLL GAAILLAASL SCSGTIQGTN RSSKGRSLIG KVDGTSHVTG KGVTVETVFS VDEFSASVLT GKLTTVFLPI VYTIVFVVG LPSNGMALWV FLFRTKKKHP AVIYMANLAL ADLLSVIWFP LKIAYHIHGN NWIYGEALCN VLIGFFYGNM Y CSILFMTC LSVQRYWVIV NPMGHSRKKA NIAIGISLAI WLLILLVTIP LYVVKQTIFI PALNITTCHD VLPEQLLVGD MF NYFLSLA IGVFLFPAFL TASAYVLMIR MLRSSAMDEN SEKKRKRAIK LIVTVLAMYL ICFTPSNLLL VVHYFLIKSQ GQS HVYALY IVALCLSTLN SCIDPFVYYF VSHDFRDHAK NALLCRSVRT VKQMQVSLTS KKHSRKSSSY SSSSTTVKTS Y UniProtKB: Proteinase-activated receptor 2 |
-Macromolecule #5: Guanine nucleotide-binding protein G(q) subunit alpha, Guanine nu...
Macromolecule | Name: Guanine nucleotide-binding protein G(q) subunit alpha, Guanine nucleotide-binding protein G(s) subunit alpha isoforms short chimera,Guanine nucleotide-binding protein G(s) subunit alpha isoforms short type: protein_or_peptide / ID: 5 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 41.972578 KDa |
Recombinant expression | Organism: ![]() ![]() |
Sequence | String: MGCTLSAEDK AAVERSKMID RNLREDGEKA RRELKLLLLG TGESGKSTFI KQMRIIHGSG YSDEDKRGFT KLVYQNIFTA MQAMIRAMD TLKIPYKYEH NKAHAQLVRE VDVEKVSAFE NPYVDAIKSL WNDPGIQECY DRRREYQLSD STKYYLNDLD R VADPAYLP ...String: MGCTLSAEDK AAVERSKMID RNLREDGEKA RRELKLLLLG TGESGKSTFI KQMRIIHGSG YSDEDKRGFT KLVYQNIFTA MQAMIRAMD TLKIPYKYEH NKAHAQLVRE VDVEKVSAFE NPYVDAIKSL WNDPGIQECY DRRREYQLSD STKYYLNDLD R VADPAYLP TQQDVLRVRV PTTGIIEYPF DLQKVNFHMF DVGGQRSERR KWIQCFNDVT AIIFVVDSSD YNRLQEALND FK SIWNNRW LRTISVILFL NKQDLLAEKV LAGKSKIEDY FPEFARYTTP EDATPEPGED PRVTRAKYFI RKEFVDISTA SGD GRHICY PHFTCAVDTE NARRIFNDCK DIILQMNLRE YNLV UniProtKB: Guanine nucleotide-binding protein G(q) subunit alpha, Guanine nucleotide-binding protein G(s) subunit alpha isoforms short |
-Experimental details
-Structure determination
Method | cryo EM |
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![]() | single particle reconstruction |
Aggregation state | particle |
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Sample preparation
Buffer | pH: 7 |
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Grid | Model: Quantifoil / Material: GOLD / Mesh: 300 / Support film - Material: GOLD / Support film - topology: HOLEY / Support film - Film thickness: 50 / Pretreatment - Type: GLOW DISCHARGE / Pretreatment - Time: 60 sec. |
Vitrification | Cryogen name: ETHANE |
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Electron microscopy
Microscope | TFS GLACIOS |
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Image recording | Film or detector model: TFS FALCON 4i (4k x 4k) / Average electron dose: 45.0 e/Å2 |
Electron beam | Acceleration voltage: 200 kV / Electron source: ![]() |
Electron optics | Illumination mode: FLOOD BEAM / Imaging mode: BRIGHT FIELD / Nominal defocus max: 2.0 µm / Nominal defocus min: 0.8 µm |