| 1998 |
C. elegans ODR-4 encodes a novel membrane protein expressed exclusively on intracellular membranes of chemosensory neurons, where it acts cell-autonomously to facilitate odorant receptor folding or localization to olfactory cilia. Loss of odr-4 or odr-8 prevents localization of a subset of seven-transmembrane odorant receptors (but not ion channels, G-alpha proteins, or other receptor types) to cilia. |
Genetic loss-of-function (odr-4 and odr-8 mutants), cell-type-specific expression analysis, subcellular localization by imaging |
Cell |
High |
9590179
|
| 2000 |
Mammalian ODR-4 (human homolog) facilitates trafficking of rat olfactory receptor U131 to the plasma membrane in odora and CHO cells, demonstrating a conserved role in GPCR trafficking from ER to plasma membrane across species. |
Heterologous expression of ODR-4 in odora and CHO cell lines, plasma membrane trafficking assay |
The Journal of biological chemistry |
Medium |
11060288
|
| 2002 |
ODR-4 and ODR-8 are required for localizing sensory chemoreceptors to cilia in nociceptive neurons ASH and ADL, and odr-4 mutant social feeding phenotype is suppressed by osm-3 mutations, placing odr-4 upstream or in opposition to the osm-3 pathway in regulating social feeding behavior. |
Genetic epistasis (odr-4; osm-3 double mutants), neuron ablation, behavioral assays |
Nature |
Medium |
12410303
|
| 2006 |
ODR-4, together with TRP channel subunits OCR-2 and OSM-9, acts in nociceptive neurons ASH and ADL to promote avoidance of high O2 and aggregation behavior, supporting ODR-4's role in functional chemosensory receptor presentation at cilia. |
Genetic loss-of-function, behavioral assays (O2 avoidance, aggregation) |
Current biology : CB |
Medium |
16581509
|
| 2014 |
ODR-4 encodes a conserved tail-anchored transmembrane protein that physically interacts with ODR-8/UfSP2 (the C. elegans ortholog of Ufm1-specific protease 2) at the ER membrane. This ODR-4/ODR-8 complex promotes folding, maturation, or ER export of GPCRs such as ODR-10. ODR-4 also physically binds the GPCR ODR-10. The human orthologs ODR4 (C1orf27) and UfSP2 also physically interact, suggesting evolutionary conservation. The protease activity of ODR-8/UfSP2 is dispensable for GPCR trafficking, and ufm-1 deletion does not alter chemoreceptor cilia trafficking. |
Co-immunoprecipitation (physical interaction between ODR-4, ODR-8, and ODR-10 at ER), genetic rescue with catalytic-dead ODR-8 mutants, ufm-1 deletion epistasis, subcellular localization |
PLoS genetics |
High |
24603482
|
| 2005 |
A full-length human cDNA homologous to C. elegans ODR-4 was isolated (C1orf27/FLJ20505), expressed in 41 of 44 human, mouse, and rat tissues, and shares predicted structural features with orthologs, suggesting a conserved ubiquitous function in GPCR trafficking. |
RecA-based gene enrichment, cDNA cloning, tissue expression analysis, bioinformatic structural comparison |
Genomics |
Low |
15718105
|
| 2022 |
Human C1orf27 (ODR4 ortholog) physically associates with α2A-adrenergic receptor (α2A-AR) specifically via its third intracellular loop and C-terminus. siRNA knockdown or CRISPR-Cas9 knockout of C1orf27 markedly impedes ER-to-Golgi export kinetics of newly synthesized α2A-AR (half-time prolonged >65%) and significantly inhibits surface transport of α2A-AR, β2-AR, and dopamine D2 receptor, but not epidermal growth factor receptor. |
siRNA knockdown, CRISPR-Cas9 knockout, RUSH (retention using selective hooks) ER-to-Golgi export assay, bioluminescence resonance energy transfer (BRET) assay, ELISA surface transport assay, co-immunoprecipitation mapping of interaction domains |
The Journal of biological chemistry |
High |
35551911
|
| 2026 |
Human C1orf27 (ODR4) and UFSP2 form a complex at the ER membrane; UFSP2 requires C1orf27 for its ER recruitment. C1orf27, UFSP2, and cargo GPCRs form a multi-protein complex, and GPCR interaction with C1orf27 is required for their ER export and forward delivery to the Golgi and cell surface. UFSP2 catalytic activity is dispensable for ER recruitment but essential for ER export of GPCRs. Structural analysis indicates UFSP2 and C1orf27 are diverged from a C. elegans ODR8-like protein. |
Co-immunoprecipitation (multi-protein complex), UFSP2 recruitment assay, GPCR trafficking assays, catalytic mutant analysis, structural analysis |
iScience |
High |
42088365
|