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Lu, Qiongxuan
Publikationer (4 of 4) Visa alla publikationer
Pu, L., Wang, J., Lu, Q., Nilsson, L., Philbrook, A., Pandey, A., . . . Chen, C. (2023). Dissecting the genetic landscape of GPCR signaling through phenotypic profiling in  C. elegans. Nature Communications, 14, Article ID 8410.
Öppna denna publikation i ny flik eller fönster >>Dissecting the genetic landscape of GPCR signaling through phenotypic profiling in  C. elegans
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2023 (Engelska)Ingår i: Nature Communications, E-ISSN 2041-1723, Vol. 14, artikel-id 8410Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

G protein-coupled receptors (GPCRs) mediate responses to various extracellular and intracellular cues. However, the large number of GPCR genes and their substantial functional redundancy make it challenging to systematically dissect GPCR functions in vivo. Here, we employ a CRISPR/Cas9-based approach, disrupting 1654 GPCR-encoding genes in 284 strains and mutating 152 neuropeptide-encoding genes in 38 strains in C. elegans. These two mutant libraries enable effective deorphanization of chemoreceptors, and characterization of receptors for neuropeptides in various cellular processes. Mutating a set of closely related GPCRs in a single strain permits the assignment of functions to GPCRs with functional redundancy. Our analyses identify a neuropeptide that interacts with three receptors in hypoxia-evoked locomotory responses, unveil a collection of regulators in pathogen-induced immune responses, and define receptors for the volatile food-related odorants. These results establish our GPCR and neuropeptide mutant libraries as valuable resources for the C. elegans community to expedite studies of GPCR signaling in multiple contexts.

Ort, förlag, år, upplaga, sidor
Springer Nature, 2023
Nationell ämneskategori
Neurovetenskaper
Identifikatorer
urn:nbn:se:umu:diva-217489 (URN)10.1038/s41467-023-44177-z (DOI)001127589400005 ()38110404 (PubMedID)2-s2.0-85180225404 (Scopus ID)
Forskningsfinansiär
Vetenskapsrådet, 2018-02914Vetenskapsrådet, 2021-06602Vetenskapsrådet, 2018-02216
Anmärkning

Originally included in thesis in manuscript form. 

Tillgänglig från: 2023-12-05 Skapad: 2023-12-05 Senast uppdaterad: 2025-04-24Bibliografiskt granskad
Pu, L., Zhao, L., Lu, Q. & Chen, C. (2023). Hypoxia induces food leaving in C. elegans. microPublication Biology, Article ID 000776.
Öppna denna publikation i ny flik eller fönster >>Hypoxia induces food leaving in C. elegans
2023 (Engelska)Ingår i: microPublication Biology, ISSN 2578-9430, artikel-id 000776Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Hypoxia alters eating behavior in different animals. In C. elegans, hypoxia induces a strong food leaving response. We found that this behavior was independent of the known O 2 response mechanisms including acute O2 sensation and HIF-1 signaling of chronic hypoxia response. Mutating egl-3 and egl-21, encoding the neuropeptide pro-protein convertase and carboxypeptidase, led to defects in hypoxia induced food leaving, suggesting that neuropeptidergic signaling was required for this response. However, we failed to identify any neuropeptide mutants that were severely defective in hypoxia induced food leaving, suggesting that multiple neuropeptides act redundantly to modulate this behavior.

Ort, förlag, år, upplaga, sidor
California Institute of Technology, 2023
Nationell ämneskategori
Neurovetenskaper Biokemi Molekylärbiologi
Identifikatorer
urn:nbn:se:umu:diva-208120 (URN)10.17912/micropub.biology.000776 (DOI)37033703 (PubMedID)
Tillgänglig från: 2023-05-09 Skapad: 2023-05-09 Senast uppdaterad: 2025-02-20Bibliografiskt granskad
Lu, Q., Vladareanu, I., Zhao, L., Nilsson, L., Henriksson, J. & Chen, C. IL-17 undermines longevity and stress tolerance by inhibiting a protective transcriptional network.
Öppna denna publikation i ny flik eller fönster >>IL-17 undermines longevity and stress tolerance by inhibiting a protective transcriptional network
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(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Nyckelord
IL-17, NHR-49, longevity and oxidative stress
Nationell ämneskategori
Neurovetenskaper Biokemi Molekylärbiologi
Identifikatorer
urn:nbn:se:umu:diva-208124 (URN)10.1101/2023.01.13.523898 (DOI)
Tillgänglig från: 2023-05-09 Skapad: 2023-05-09 Senast uppdaterad: 2025-02-20
Zhao, L., Nilsson, L., Pu, L., Wang, J., Lu, Q., Vladareanu, I. & Chen, C.Neuropeptidergic signaling modulates acute response to hypoxia.
Öppna denna publikation i ny flik eller fönster >>Neuropeptidergic signaling modulates acute response to hypoxia
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(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Nyckelord
neuropeptide, acute hypoxia, GPCR, C. elegans
Nationell ämneskategori
Neurovetenskaper
Identifikatorer
urn:nbn:se:umu:diva-208119 (URN)
Tillgänglig från: 2023-05-09 Skapad: 2023-05-09 Senast uppdaterad: 2023-05-10
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