Please use this identifier to cite or link to this item:
https://doi.org/10.1096/fj.201700252RR
DC Field | Value | |
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dc.title | FFAR2-FFAR3 receptor heteromerization modulates short-chain fatty acid sensing | |
dc.contributor.author | Ang, Zhiwei | |
dc.contributor.author | Xiong, Ding | |
dc.contributor.author | Wu, Min | |
dc.contributor.author | Ding, Jeak Ling | |
dc.date.accessioned | 2021-07-06T09:45:41Z | |
dc.date.available | 2021-07-06T09:45:41Z | |
dc.date.issued | 2018-01-01 | |
dc.identifier.citation | Ang, Zhiwei, Xiong, Ding, Wu, Min, Ding, Jeak Ling (2018-01-01). FFAR2-FFAR3 receptor heteromerization modulates short-chain fatty acid sensing. FASEB JOURNAL 32 (1) : 289-+. ScholarBank@NUS Repository. https://doi.org/10.1096/fj.201700252RR | |
dc.identifier.issn | 08926638 | |
dc.identifier.issn | 15306860 | |
dc.identifier.uri | https://scholarbank.nus.edu.sg/handle/10635/193709 | |
dc.description.abstract | Free fatty acid receptors 2 and 3 (FFAR2/FFA2/GPR43 and FFAR3/FFA3/GPR41) are mammalian receptors for gut microbiota–derived short-chain fatty acids (SCFAs). These receptors are promising drug targets for obesity, colitis, colon cancer, asthma, and arthritis. Here, we demonstrate that FFAR2 and FFAR3 interact to form a heteromer in primary human monocytes and macrophages via proximity ligation assay, and during heterologous expression in HEK293 cells via bimolecular fluorescence complementation and fluorescence resonance energy transfer. The FFAR2-FFAR3 heteromer displayed enhanced cytosolic Ca2+ signaling (1.5-fold increase relative to homomeric FFAR2) and b-arrestin-2 recruitment (30-fold increase relative to homomeric FFAR3). The enhanced heteromer signaling was attenuated by FFAR2 antagonism (CATPB), Gaq inhibition (YM254890), or Gai inhibition (pertussis toxin). Unlike homomeric FFAR2/ 3, the heteromer lacked the ability to inhibit cAMP production but gained the ability to induce p38 phosphorylation in HEK293 and inflammatory monocytes via a CATPB- and YM254890-sensitive mechanism. Our data, taken together, reveal that FFAR2 and FFAR3 may interact to form a receptor heteromer with signaling that is distinct from the parent homomers—a novel pathway for drug targeting.Ang, Z., Xiong, D., Wu, M., Ding, J. L. FFAR2-FFAR3 receptor heteromerization modulates short-chain fatty acid sensing | |
dc.language.iso | en | |
dc.publisher | FEDERATION AMER SOC EXP BIOL | |
dc.source | Elements | |
dc.subject | Science & Technology | |
dc.subject | Life Sciences & Biomedicine | |
dc.subject | Biochemistry & Molecular Biology | |
dc.subject | Biology | |
dc.subject | Cell Biology | |
dc.subject | Life Sciences & Biomedicine - Other Topics | |
dc.subject | GPCR heteromer | |
dc.subject | FFA2/GPR43 | |
dc.subject | FFA3/GPR41 | |
dc.subject | RESONANCE ENERGY-TRANSFER | |
dc.subject | GUT MICROBIOTA | |
dc.subject | INFLAMMATORY RESPONSES | |
dc.subject | SIGNALING CASCADES | |
dc.subject | BETA-ARRESTIN | |
dc.subject | HUMAN COLON | |
dc.subject | GPR43 | |
dc.subject | ACTIVATION | |
dc.subject | INTERNALIZATION | |
dc.subject | EXPRESSION | |
dc.type | Article | |
dc.date.updated | 2021-07-06T07:51:42Z | |
dc.contributor.department | BIOLOGICAL SCIENCES | |
dc.contributor.department | DUKE-NUS MEDICAL SCHOOL | |
dc.description.doi | 10.1096/fj.201700252RR | |
dc.description.sourcetitle | FASEB JOURNAL | |
dc.description.volume | 32 | |
dc.description.issue | 1 | |
dc.description.page | 289-+ | |
dc.published.state | Published | |
Appears in Collections: | Staff Publications Elements |
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File | Description | Size | Format | Access Settings | Version | |
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FASEB J (2018) vol 32, 289-303.pdf | Published version | 1.46 MB | Adobe PDF | OPEN | Published | View/Download |
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