| Literature DB >> 23267347 |
Lotte Frooninckx1, Liesbeth Van Rompay, Liesbet Temmerman, Elien Van Sinay, Isabel Beets, Tom Janssen, Steven J Husson, Liliane Schoofs.
Abstract
Like most organisms, the nematode Caenorhabditis elegans relies heavily on neuropeptidergic signaling. This tiny animal represents a suitable model system to study neuropeptidergic signaling networks with single cell resolution due to the availability of powerful molecular and genetic tools. The availability of the worm's complete genome sequence allows researchers to browse through it, uncovering putative neuropeptides and their cognate G protein-coupled receptors (GPCRs). Many predictions have been made about the number of C. elegans neuropeptide GPCRs. In this review, we report the state of the art of both verified as well as predicted C. elegans neuropeptide GPCRs. The predicted neuropeptide GPCRs are incorporated into the receptor classification system based on their resemblance to orthologous GPCRs in insects and vertebrates. Appointing the natural ligand(s) to each predicted neuropeptide GPCR (receptor deorphanization) is a crucial step during characterization. The development of deorphanization strategies resulted in a significant increase in the knowledge of neuropeptidergic signaling in C. elegans. Complementary localization and functional studies demonstrate that neuropeptides and their GPCRs represent a rich potential source of behavioral variability in C. elegans. Here, we review all neuropeptidergic signaling pathways that so far have been functionally characterized in C. elegans.Entities:
Keywords: Caenorhabditis elegans; G protein-coupled receptor; GPCR deorphanization; nematoda; neuropeptidergic signaling
Year: 2012 PMID: 23267347 PMCID: PMC3527849 DOI: 10.3389/fendo.2012.00167
Source DB: PubMed Journal: Front Endocrinol (Lausanne) ISSN: 1664-2392 Impact factor: 5.555
List of orphan and deorphanized neuropeptide GPCRs in .
| Receptor group | Gene sequence name | Protein | WormBase ID | Ligand-encoding precursor gene (Liganda) | Putative role in | Reference | |
|---|---|---|---|---|---|---|---|
| Neuropeptide Y/RFamide-like receptors | C39E6.6 | NPR-1 | WP:CE06941 | Feeding behavior; aerotaxis; thermal avoidance; ethanol tolerance; innate immunity | de Bono and Bargmann ( | ||
| T05A1.1a | NPR-2a | WP:CE32924 | / | Fat storage; locomotionb | Keating et al. ( | ||
| T05A1.1b | NPR-2b | WP:CE32925 | / | ||||
| C10C6.2 | NPR-3 | WP:CE08056 | Locomotionb | Keating et al. ( | |||
| C16D6.2 | NPR-4 | WP:CE37317 | Fat storage; olfaction; foraging; reproductionb | Keating et al. ( | |||
| Y58G8A.4a | NPR-5a | WP:CE33345 | Fat storage; dauer formation | Kubiak et al. ( | |||
| Y58G8A.4b | NPR-5b | WP:CE36962 | Lowery et al. ( | ||||
| F41E7.3 | NPR-6 | WP:CE31509 WP:CE31509 | Reproductionb | Keating et al. ( | |||
| F35G8.1 | NPR-7 | WP:CE39498 | / | Fat storage; locomotionb | Keating et al. ( | ||
| C56G3.1a | NPR-8a | WP:CE04283 | / | / | c | ||
| C56G3.1b | NPR-8b | WP:CE30923 | / | / | c | ||
| C53C7.1a | NPR-10a | WP:CE19767 | / | Lowery et al. ( | |||
| C25G6.5 | NPR-11 | WP:CE47199 | Local search behavior; olfactory adaptation, reproductionb | Keating et al. ( | |||
| T22D1.12 | NPR-12 | WP:CE17256 | / | Reproductionb | Rual et al. ( | ||
| ZC412.1 | NPR-13 | WP:CE35920 | / | / | c | ||
| W05B5.2 | NPR-14 | WP:CE42751 | / | / | c | ||
| T07D4.1 | NPR-20 | WP:CE46449 | / | / | c | ||
| T23C6.5 | NPR-21 | WP:CE35783 | / | / | c | ||
| C02B8.5 | FRPR-1 | WP:CE47103 | / | / | |||
| C05E7.4 | FRPR-2 | WP:CE46227 | / | / | |||
| C26F1.6 | FRPR-3 | WP:CE06880 | Reproductionb | Keating et al. ( | |||
| C54A12.2 | FRPR-4 | WP:CE36809 | / | / | c | ||
| C56A3.3a | FRPR-5a | WP:CE45431 | / | / | c | ||
| C56A3.3b | FRPR-5b | WP:CE45452 | / | / | c | ||
| F21C10.12 | FRPR-6 | WP:CE32868 | / | / | c | ||
| F53A9.5 | FRPR-8 | WP:CE43844 | / | / | c | ||
| F53B7.2a | FRPR-9a | WP:CE44099 | / | / | c | ||
| F53B7.2b | FRPR-9b | WP:CE44063 | / | / | c | ||
| K06C4.8 | FRPR-11 | WP:CE11816 | / | / | c | ||
| K06C4.9 | FRPR-12 | WP:CE29506 | / | / | c | ||
| K07E8.5 | FRPR-14 | WP:CE35992 | / | / | c | ||
| K10C8.2 | FRPR-15 | WP:CE42140 | / | / | c | ||
| R12C12.3 | FRPR-16 | WP:CE02848 | / | / | c | ||
| T14C1.1 | FRPR-17 | WP:CE34212 | / | / | |||
| T19F4.1a | FRPR-18a | WP:CE29348 | / | Mertens et al. ( | |||
| T19F4.1b | FRPR-18b | WP:CE29349 | / | ||||
| Y41D4A.8 | FRPR-19 | WP:CE21846 | / | / | c | ||
| C30B5.5 | FRPR-20 | WP:CE02524 | / | / | c | ||
| C09F12.3 | C09F12.3 | WP:CE33973 | / | / | d | ||
| D1014.2 | D1014.2 | WP:CE44520 | / | / | |||
| Somatostatin and galanin-like receptors | ZK455.3 | NPR-9 | WP:CE03814 | / | Fat storage; roaming behavior | Bendena et al. ( | |
| F56B6.5a | NPR-16a | WP:CE31186 | / | Lipid metabolismb | Ashrafi et al. ( | ||
| F56B6.5b | NPR-16b | WP:CE39375 | / | ||||
| C06G4.5 | NPR-17 | WP:CE38997 | / | / | c | ||
| C43C3.2a | NPR-18a | WP:CE01524 | / | / | c | ||
| C43C3.2b | NPR-18b | WP:CE47537 | / | / | c | ||
| C43C3.2c | NPR-18c | WP:CE47497 | / | / | c | ||
| C43C3.2d | NPR-18d | WP:CE47523 | / | / | c | ||
| C43C3.2e | NPR-18e | WP:CE47594 | / | / | c | ||
| C43C3.2f | NPR-18f | WP:CE47636 | / | / | c | ||
| C43C3.2g | NPR-18g | WP:CE47570 | / | / | c | ||
| R106.2 | NPR-24 | WP:CE39612 | / | / | c | ||
| T02E9.1 | NPR-25 | WP:CE13062 | / | Locomotionb | Keating et al. ( | ||
| T02D1.6 | NPR-26 | WP:CE30684 | / | / | c | ||
| F42C5.2 | NPR-27 | WP:CE47648 | / | / | c | ||
| F55E10.7 | NPR-28 | WP:CE40072 | / | / | |||
| ZC84.4 | NPR-29 | WP:CE24711 | / | / | |||
| H10E21.2 | NPR-30 | WP:CE43737 | / | / | |||
| Y116A8B.5 | NPR-32 | WP:CE46735 | / | / | |||
| Y54E2A.1 | Y54E2A.1 | WP:CE31259 | / | / | c | ||
| C17H11.1 | C17H11.1 | WP:CE29584 | / | / | d | ||
| C24B5.1 | C24B5.1 | WP:CE36981 | / | / | d | ||
| F57A8.4 | F57A8.4 | WP:CE05985 | / | / | c | ||
| W10C4.1 | W10C4.1 | WP:CE39426 | / | / | d | ||
| Tachykinin (neurokinin)-like receptors | C38C10.1 | TKR-1 | WP:CE44282 | / | Lipid metabolismb | Ashrafi et al. ( | |
| AC7.1a | TKR-3a | WP:CE38261 | / | Reproductionb | Kamath et al. ( | ||
| AC7.1b | TKR-3b | WP:CE38262 | / | ||||
| T27D1.3 | NPR-15 | WP:CE43181 | / | / | c | ||
| Y59H11AL.1a | NPR-22a | WP:CE31260 | / | Mertens et al. ( | |||
| Y59H11AL.1b | NPR-22b | WP:CE38456 | / | / | c | ||
| C49A9.7 | C49A9.7 | WP:CE16937 | / | / | c | ||
| C50F7.1a | C50F7.1a | WP:CE33574 | / | / | c | ||
| C50F7.1b | C50F7.1b | WP:CE04239 | / | / | c | ||
| F31B9.1 | NPR-33 | WP:CE17727 | / | / | c | ||
| T11F9.1a | T11F9.1a | WP:CE47396 | / | / | c | ||
| T11F9.1b | T11F9.1b | WP:CE47310 | / | / | c | ||
| Cholecystokinin/gastrin-like receptors | T23B3.4 | CKR-1 | WP:CE45656 | / | Reproductionb | Rual et al. ( | |
| Y39A3B.5c/b | CKR-2a | (GenBank database accession number EU346943) | Locomotion; fat storage; amylase activity/secretion | Janssen et al. ( | |||
| Y39A3B.5c/d | CKR-2b | (GenBank database EU346944 accession number) | |||||
| Gonadotropin | F54D7.3a | GNRR-1a | WP:CE17102 | Reproductionb | Lindemans et al. ( | ||
| releasing hormone, oxytocin, vasopressin-like receptors | F45D7.3b | GNRR-1b | WP:CE46861 | / | / | c | |
| C15H11.2a | GNRR-2a | WP:CE08179 | / | / | |||
| C15H11.2b | GNRR-2b | WP:CE45186 | / | / | |||
| ZC374.1 | GNRR-3 | WP:CE40886 | / | / | |||
| C41G11.4a | GNRR-4a | WP:CE29716 | / | / | |||
| C41G11.4b | GNRR-4b | WP:CE30896 | / | / | |||
| C41G11.4c | GNRR-4c | WP:CE35428 | / | / | |||
| H22D07.1 | GNRR-5 | WP:CE33129 | / | / | |||
| F13D2.2 | GNRR-6 | WP:CE03194 | / | Locomotionb | Kamath et al. ( | ||
| F13D2.3 | GNRR-7 | WP:CE33996 | / | / | |||
| Y105C5A.23 | GNRR-8 | WP:CE24056 | / | Reproductionb | Ceron et al. ( | ||
| T07D10.2 | NTR-1 | WP:CE13377 | Gustatory associative learning, reproduction | Beets et al. ( | |||
| F14F4.1 | NTR-2 | WP:CE17670 | / | / | c | ||
| Neurotensin, neuromedin U, growth hormone secretagogue, thyrotropin releasing hormone-like receptors | C48C5.1 | NMUR-1 | WP:CE45664 | / | / | c | |
| K10B4.4 | NMUR-2 | WP:CE38395 | / | Lindemans et al. ( | |||
| F02E8.2a | NMUR-3a | WP:CE33990 | / | / | c | ||
| F02E8.2b | NMUR-3b | WP:CE07017 | / | / | c | ||
| C30F12.6 | NMUR-4 | WP:CE16886 | / | Reproductionb | Ceron et al. ( | ||
| F57H12.4 | FRPR-10 | WP:CE43724 | / | / | c | ||
| F57B7.1a | DMSR-1a | WP:CE05989 | / | / | e | ||
| F57B7.1b | DMSR-1b | WP:CE31009 | / | / | e | ||
| C46F4.1a C46F4.1b | EGL-6a EGL-6b | WP:CE04219 WP:CE43400 | Reproduction | Trent et al. ( | |||
| B0563.6a | B0563.6a | WP:CE29551 | / | / | e | ||
| B0563.6b | B0563.6b | WP:CE33513 | / | / | e | ||
| B0563.6c | B0563.6c | WP:CE41751 | / | / | e | ||
| R03A10.6 | SPRR-1 | WP:CE43810 | / | / | d | ||
| F42D1.3 | SPRR-2 | WP:CE31511 | / | / | d | ||
| F39B3.2 | FRPR-7 | WP:CE30978 | / | / | d | ||
| K03H6.5 | K03H6.5 | WP:CE39585 | / | / | d | ||
| / | C48C5.3 | AEXR-3 | WP:CE04226 | / | / | c | |
| / | T10E10.3 | T10E10.3 | WP:CE35766 | / | / | d | |
| / | T21H3.5 | T21H3.5 | WP:CE13906 | / | / | d | |
| / | Y70D2A.1 | Y70D2A.1 | WP:CE34231 | / | / | d | |
| / | ZK1307.7a | ZK1307.7a | WP:CE37863 | / | / | d | |
| / | ZK1307.7b | ZK1307.7b | WP:CE46539 | / | / | d | |
| / | B0034.5 | B0034.5 | WP:CE45030 | / | / | d | |
| / | B0334.6 | B0334.6 | WP:CE30473 | / | / | d | |
| / | C18B12.2 | SEB-3 | WP:CE23557CE23557 | Locomotion; stress response; ethanol tolerance | Jee et al. ( | ||
| B0457.1a | LAT-1a | WP:CE02945 | / | / | f | ||
| B0457.1b | LAT-1b | WP:CE32789 | / | / | f | ||
| B0286.2a | LAT-2a | WP:CE36968 | / | / | f | ||
| C18B12.2 | C18B12.2 | WP:CE23557 | / | / | f,g | ||
| ZK643.3a | SECR-1a | WP:CE33750 | / | / | f,g | ||
| ZK643.3b | SECR-1b | WP:CE01112 | / | / | f,g | ||
| C13B9.4a | PDFR-1a | WP:CE30860 | Locomotion; reproduction | Janssen et al. ( | |||
| C13B9.4b | PDFR-1b | WP:CE370787 | |||||
| C13B9.4c | PDFR-1c | WP:CE37088 | |||||
GPCRs are ranked according to the GRAFS classification system. Deorphanized neuropeptide GPCRs are marked in gray. Underlined neuropeptides are most potent to be the endogenous ligands (.
Figure 1The classical G protein signaling pathway (L, ligand; CM, cell membrane; GDP, guanosine diphosphate; GTP, guanosine triphosphate; AC, adenylate cyclase; cAMP, cyclic adenosine monophosphate; ATP, adenosine triphosphate; PKA, protein kinase A; PLCβ, phospholipase Cβ; PIP2, phosphatidylinositol 4,5-bisphosphate; DAG, diacylglycerol; IP3, inositol-1,4,5-trisphosphate; ER, endoplasmatic reticulum; PKC, protein kinase C; GEF, guanine nucleotide exchange factor).
Figure 2Inhibiton of the RMG inter/motor neuron by NPR-1. The RMG neuron is the hub of a gap junction network connecting the ADL, ASH, URX, ASK, and AWB sensory neurons, which are known to trigger aggregation. NPR-1 inhibits this gap junction driven activation of RMG (figure adapted from Macosko et al., 2009).
Figure 3Regulation of aerotaxis by NPR-1. C. elegans detects oxygen through the URX, PQR, AQR, SDQ neurons. Oxygen sensing in these neurons is mediated by soluble guanylate cyclase homologs (sGC-35 and sGC-36). When ambient oxygen levels decrease, cGMP levels rise and the cGMP gated TAX-2/TAX-4 ion channel opens, which leads to the depolarization of the neurons. Activation of NPR-1 in the presence of food inhibits this activation (Cheung et al., 2005; Chang et al., 2006).
Figure 4Hypothetical model in which the detection of nutrition by sensory neurons (AWC, AFD, and ASE) is coupled to the release of FLP-18 neuropeptides from AIY interneurons and subsequent signaling through the RFamide-like receptors NPR-4 and NPR-5. By acting on NPR-4 in the intestine and NPR-5 in ciliated neurons, FLP-18 neuropeptides control fat storage. Signaling through NPR-4 in RIV and AVA neurons also modulates responses to odor and foraging behavior. Another food-dependent decision, dauer formation, is regulated by FLP-18 action on NPR-5 in the ASJ neurons (figure adapted from Cohen et al., 2009).
Figure 5Neuropeptide feedback regulation of the AWC sensory neurons. The AIA interneurons are inhibited via the glutamate-gated chloride channel GLC-3 upon release of the neurotransmitter glutamate from the AWC neurons. Alternatively, when odor is sensed, the AWC neurons release NLP-1, which in turn activates NPR-11 on the AIA interneurons. Upon activation of NPR-11, INS-1 is released, inhibiting AWC activity and thereby reducing its inhibition on AIA (adapted from Chalasani et al., 2010).
Figure 6Upon muscle contraction, NLP-12 neuropeptides are released by a single tail neuron, DVA. Subsequent activation of the NLP-12 receptor, CKR-2, potentiates transmission at cholinergic neuromuscular junctions, thereby providing a mechanism for proprioceptive control of locomotion (Hu et al., 2011). NLP-12 signaling through CKR-2 also appears to be involved in the regulation of fat storage and digestive enzyme production (Janssen et al., 2008b).
Figure 7Unfavorable conditions cause the release of FLP-17 neuropeptides from BAG neurons. These neurohormones activate EGL-6 in HSN neurons in order to inhibit egg-laying. Release of FLP-10 by the vulva and spermatheca along with subsequent signaling via EGL-6 also inhibits egg-laying. How parts of the hermaphrodite’s reproductive system might inhibit egg-laying is not yet fully understood. In parallel to peptidergic inhibition, cholinergic signals inhibit egg-laying upon unfavorable conditions (Ringstad and Horvitz, 2008).
List of sequences of neuropeptide ligands produced by neuropeptide precursors and sorted according to the neuropeptide .
| Neuropeptide GPCR | Neuropeptide gene | Neuropeptide precursor gene | Neuropeptide sequence |
|---|---|---|---|
| NPR-1 | FLP-18-1 | (DFD)GAMPGVLRFG | |
| FLP-18-2 | EMPGVLRFG | ||
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-18-4 | EIPGVLRFG | ||
| FLP-18-5 | SEVPGVLRFG | ||
| FLP-18-6 | DVPGVLRFG | ||
| FLP-21 | GLGPRPLRFG | ||
| NPR-3 | FLP-15-1 | GGPQGPLRFG | |
| FLP-15-2 | RGPSGPLRFG | ||
| NPR-4 | FLP-1-6 | (K)PNFLRFG | |
| FLP-4-2 | ASPSFIRFG | ||
| FLP-18-1 | (DFD)GAMPGVLRFG | ||
| FLP-18-2 | EMPGVLRFG | ||
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-18-4 | EIPGVLRFG | ||
| FLP-18-5 | SEVPGVLRFG | ||
| FLP-18-6 | DVPGVLRFG | ||
| NPR-5a | FLP-1-2 | SQPNFLRFG | |
| FLP-3-1 | SPLGTMRFG | ||
| FLP-3-3 | SAEPFGTMRFG | ||
| FLP-3-6 | EDGNAPFGTMRFG | ||
| FLP-3-8 | SADDSAPFGTMRFG | ||
| FLP-18-1 | (DFD)GAMPGVLRFG | ||
| FLP-18-2 | EMPGVLRFG | ||
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-18-4 | EIPGVLRFG | ||
| FLP-18-5 | SEVPGVLRFG | ||
| FLP-18-6 | DVPGVLRFG | ||
| FLP-21 | GLGPRPLRFG | ||
| NPR-5b | FLP-1-2 | SQPNFLRFG | |
| FLP-3-1 | SPLGTMRFG | ||
| FLP-3-3 | SAEPFGTMRFG | ||
| FLP-3-6 | EDGNAPFGTMRFG | ||
| FLP-3-8 | SADDSAPFGTMRFG | ||
| FLP-4-2 | ASPSFIRFG | ||
| FLP-18-1 | (DFD)GAMPGVLRFG | ||
| FLP-18-2 | EMPGVLRFG | ||
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-18-4 | EIPGVLRFG | ||
| FLP-18-5 | SEVPGVLRFG | ||
| FLP-18-6 | DVPGVLRFG | ||
| FLP-21 | GLGPRPLRFG | ||
| NPR-6 | FLP-18-3 | (SYFDEKK)SVPGVLRFG | |
| FLP-18-6 | DVPGVLRFG | ||
| FLP-21 | GLGPRPLRFG | ||
| NPR-10a | FLP-3-1 | SPLGTMRFG | |
| FLP-3-3 | SAEPFGTMRFG | ||
| FLP-3-5 | ASEDALFGTMRFG | ||
| FLP-3-6 | EDGNAPFGTMRFG | ||
| FLP-3-7 | EAEEPLGTMRFG | ||
| FLP-3-8 | SADDSAPFGTMRFG | ||
| NPR-10b | FLP-18-1 | (DFD)GAMPGVLRFG | |
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-18-4 | EIPGVLRFG | ||
| FLP-18-5 | SEVPGVLRFG | ||
| FLP-18-6 | DVPGVLRFG | ||
| NPR-11 | FLP-1-6 | (K)PNFLRFG | |
| FLP-5-2 | AGAKFIRFG | ||
| FLP-14 | KHEYLRFG | ||
| FLP-18-3 | (SYFDEKK)SVPGVLRFG | ||
| FLP-21 | GLGPRPLRFG | ||
| MDANAFRMSFG | |||
| FRPR-3 | FLP-7-1 | TPMQRSSMVRFG | |
| FLP-7-2 | SPMQRSSMVRFG | ||
| FLP-7-3 | SPMERSAMVRFG | ||
| FLP-11-1 | AMRNALVRFG | ||
| FRPR-18a | FLP-2-1 | LRGEPIRFG | |
| FRPR-18b | FLP-2-2 | SPREPIRFG | |
| NPR-22a | FLP-1-6 | (K)PNFLRFG | |
| FLP-7-1 | TPMQRSSMVRFG | ||
| FLP-7-2 | SPMQRSSMVRFG | ||
| FLP-7-3 | SPMERSAMVRFG | ||
| FLP-7-4 | SPMDRSKMVRFG | ||
| FLP-9 | KPSFVRFG | ||
| FLP-11-1 | AMRNALVRFG | ||
| FLP-11-2 | ASGGMRNALVRFG | ||
| FLP-11-3 | NGAPQPFVRFG | ||
| FLP-13-4 | AADGAPLIRFG | ||
| FLP-22 | SPSAKWMRFG | ||
| CKR-2a | FLP-1-1 | SADPNFLRFG | |
| DYRPLQFG | |||
| DGYRPLQFG | |||
| CKR-2b | SSSMYDRDIMSFG | ||
| ALDGLDGSGFGFD | |||
| GNRR-1a | NLP-47 | pQMTFTDQWT | |
| NTR-1 | NTC-1 | CFLNSCPYRRYG | |
| NMUR-2 | AFFYTPRIG | ||
| EGL-6a | FLP-10 | QPKARSGYIRFG | |
| EGL-6b | FLP-17-1 | KSAFVRFG | |
| FLP-17-2 | KSQYIRFG | ||
| PDFR-1a | PDF-1a | SNAELINGLIGMDLGKLSAVG | |
| PDFR-1b | PDF-1b | SNAELINGLLSMNLNKLSGAG |