- EMDB-33069: Cryo-EM structure of neuropeptide Y Y1 receptor in complex with N... -
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データベース: EMDB / ID: EMD-33069
タイトル
Cryo-EM structure of neuropeptide Y Y1 receptor in complex with NPY and Gi
マップデータ
試料
複合体: Neuropeptide Y Y1 receptor in complex with NPY and Gi
複合体: Neuropeptide Y Y1 receptor and Gi
タンパク質・ペプチド: Neuropeptide Y receptor type 1
タンパク質・ペプチド: Guanine nucleotide-binding protein G(i) subunit alpha-1
タンパク質・ペプチド: Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1
タンパク質・ペプチド: Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2
複合体: Neuropeptide Y
タンパク質・ペプチド: Neuropeptide Y
機能・相同性
機能・相同性情報
pancreatic polypeptide receptor activity / peptide YY receptor activity / neuropeptide Y receptor activity / positive regulation of appetite / neuropeptide Y receptor binding / intestinal epithelial cell differentiation / synaptic signaling via neuropeptide / neuropeptide receptor activity / adult feeding behavior / neuropeptide hormone activity ...pancreatic polypeptide receptor activity / peptide YY receptor activity / neuropeptide Y receptor activity / positive regulation of appetite / neuropeptide Y receptor binding / intestinal epithelial cell differentiation / synaptic signaling via neuropeptide / neuropeptide receptor activity / adult feeding behavior / neuropeptide hormone activity / neuropeptide binding / feeding behavior / neuronal dense core vesicle / central nervous system neuron development / outflow tract morphogenesis / G protein-coupled receptor signaling pathway, coupled to cyclic nucleotide second messenger / regulation of multicellular organism growth / neuropeptide signaling pathway / FOXO-mediated transcription of oxidative stress, metabolic and neuronal genes / positive regulation of protein localization to cell cortex / Adenylate cyclase inhibitory pathway / T cell migration / D2 dopamine receptor binding / response to prostaglandin E / G protein-coupled serotonin receptor binding / adenylate cyclase regulator activity / adenylate cyclase-inhibiting serotonin receptor signaling pathway / sensory perception of pain / calcium channel regulator activity / cellular response to forskolin / regulation of mitotic spindle organization / Peptide ligand-binding receptors / GABA-ergic synapse / locomotory behavior / Regulation of insulin secretion / positive regulation of cholesterol biosynthetic process / G protein-coupled receptor binding / adenylate cyclase-inhibiting G protein-coupled receptor signaling pathway / G protein-coupled receptor activity / cerebral cortex development / adenylate cyclase-modulating G protein-coupled receptor signaling pathway / regulation of blood pressure / G-protein beta/gamma-subunit complex binding / response to peptide hormone / centriolar satellite / Olfactory Signaling Pathway / Activation of the phototransduction cascade / G beta:gamma signalling through PLC beta / Presynaptic function of Kainate receptors / Thromboxane signalling through TP receptor / G protein-coupled acetylcholine receptor signaling pathway / G-protein activation / Activation of G protein gated Potassium channels / Inhibition of voltage gated Ca2+ channels via Gbeta/gamma subunits / glucose metabolic process / 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 / Sensory perception of sweet, bitter, and umami (glutamate) taste / neuron projection development / photoreceptor disc membrane / Glucagon-type ligand receptors / Adrenaline,noradrenaline inhibits insulin secretion / Vasopressin regulates renal water homeostasis via Aquaporins / GDP binding / G alpha (z) signalling events / Glucagon-like Peptide-1 (GLP1) regulates insulin secretion / cellular response to catecholamine stimulus / ADORA2B mediated anti-inflammatory cytokines production / ADP signalling through P2Y purinoceptor 1 / G beta:gamma signalling through PI3Kgamma / Cooperation of PDCL (PhLP1) and TRiC/CCT in G-protein beta folding / adenylate cyclase-activating dopamine receptor signaling pathway / GPER1 signaling / Inactivation, recovery and regulation of the phototransduction cascade / cellular response to prostaglandin E stimulus / heterotrimeric G-protein complex / G alpha (12/13) signalling events / sensory perception of taste / extracellular vesicle / signaling receptor complex adaptor activity / Thrombin signalling through proteinase activated receptors (PARs) / G protein activity / GTPase binding / retina development in camera-type eye / Ca2+ pathway / midbody / cell cortex / High laminar flow shear stress activates signaling by PIEZO1 and PECAM1:CDH5:KDR in endothelial cells / G alpha (i) signalling events / 加水分解酵素; 酸無水物に作用; GTPに作用・細胞または細胞小器官の運動に関与 / G alpha (s) signalling events / phospholipase C-activating G protein-coupled receptor signaling pathway / chemical synaptic transmission / G alpha (q) signalling events / Ras protein signal transduction / Extra-nuclear estrogen signaling 類似検索 - 分子機能
Neuropeptide Y1 receptor / Neuropeptide Y receptor family / Pancreatic hormone-like / Pancreatic hormone-like, conserved site / Pancreatic hormone peptide / Pancreatic hormone family signature. / Pancreatic hormone family profile. / Pancreatic hormones / neuropeptide F / peptide YY family / G-protein alpha subunit, group I / Guanine nucleotide binding protein (G-protein), alpha subunit ...Neuropeptide Y1 receptor / Neuropeptide Y receptor family / Pancreatic hormone-like / Pancreatic hormone-like, conserved site / Pancreatic hormone peptide / Pancreatic hormone family signature. / Pancreatic hormone family profile. / Pancreatic hormones / neuropeptide F / peptide YY family / G-protein alpha subunit, group I / Guanine nucleotide binding protein (G-protein), alpha subunit / G protein alpha subunit, helical insertion / G-protein alpha subunit / G-alpha domain profile. / G protein alpha subunit / Guanine nucleotide-binding protein, beta subunit / G-protein, beta subunit / G-protein coupled receptors family 1 signature. / G protein-coupled receptor, rhodopsin-like / GPCR, rhodopsin-like, 7TM / G-protein coupled receptors family 1 profile. / 7 transmembrane receptor (rhodopsin family) / G-protein beta WD-40 repeat / WD40 repeat, conserved site / Trp-Asp (WD) repeats signature. / WD domain, G-beta repeat / Trp-Asp (WD) repeats profile. / Trp-Asp (WD) repeats circular profile. / WD40 repeats / WD40 repeat / WD40-repeat-containing domain superfamily / WD40/YVTN repeat-like-containing domain superfamily / P-loop containing nucleoside triphosphate hydrolase 類似検索 - ドメイン・相同性
Pro-neuropeptide Y / Neuropeptide Y receptor type 1 / Guanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-1 / Guanine nucleotide-binding protein G(i) subunit alpha-1 類似検索 - 構成要素
ジャーナル: Sci Adv / 年: 2022 タイトル: Receptor-specific recognition of NPY peptides revealed by structures of NPY receptors. 著者: Tingting Tang / Qiuxiang Tan / Shuo Han / Anne Diemar / Kristin Löbner / Hongyu Wang / Corinna Schüß / Victoria Behr / Karin Mörl / Mu Wang / Xiaojing Chu / Cuiying Yi / Max Keller / ...著者: Tingting Tang / Qiuxiang Tan / Shuo Han / Anne Diemar / Kristin Löbner / Hongyu Wang / Corinna Schüß / Victoria Behr / Karin Mörl / Mu Wang / Xiaojing Chu / Cuiying Yi / Max Keller / Jacob Kofoed / Steffen Reedtz-Runge / Anette Kaiser / Annette G Beck-Sickinger / Qiang Zhao / Beili Wu / 要旨: In response to three highly conserved neuropeptides, neuropeptide Y (NPY), peptide YY, and pancreatic polypeptide (PP), four G protein-coupled receptors mediate multiple essential physiological ...In response to three highly conserved neuropeptides, neuropeptide Y (NPY), peptide YY, and pancreatic polypeptide (PP), four G protein-coupled receptors mediate multiple essential physiological processes, such as food intake, vasoconstriction, sedation, and memory retention. Here, we report the structures of the human Y, Y, and Y receptors in complex with NPY or PP, and the G protein. These structures reveal distinct binding poses of the peptide upon coupling to different receptors, reflecting the importance of the conformational plasticity of the peptide in recognizing the NPY receptors. The N terminus of the peptide forms extensive interactions with the Y receptor, but not with the Y and Y receptors. Supported by mutagenesis and functional studies, subtype-specific interactions between the receptors and peptides were further observed. These findings provide insight into key factors that govern NPY signal recognition and transduction, and would enable development of selective drugs.