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Biomedical subjects

Hong Xiao

Publications and source records attributed to Hong Xiao.

At least 19 recordsLinked to original sources

Alternative complement pathway in the pathogenesis of disease mediated by anti-neutrophil cytoplasmic autoantibodies.

Clinical and experimental data indicate that anti-neutrophil cytoplasmic autoantibodies (ANCAs) cause glomerulonephritis and vasculitis. Here we report the first evidence that complement is an important mediator of ANCA disease. Transfer of anti-myeloperoxidase (MPO) IgG into wild-type mice or anti-MPO splenocytes into immune-deficient mice caused crescentic glomerulonephritis that could be completely blocked by complement depletion. The role of specific complement activation pathways was investigated using mice with knockout of the common pathway component C5, classic and lectin binding pathway component C4, and alternative pathway component factor B. After injection of anti-MPO IgG, C4-/- mice developed disease comparable with wild-type disease; however, C5-/- and factor B-/- mice developed no disease. To substantiate a role for complement in human ANCA disease, IgG was isolated from patients with myeloperoxidase ANCA (MPO-ANCA) or proteinase 3 ANCA (PR3-ANCA) and from controls. Incubation of MPO-ANCA or PR3-ANCA IgG with human neutrophils caused release of factors that activated complement. IgG from healthy controls did not produce this effect. The findings suggest that stimulation of neutrophils by ANCA causes release of factors that activate complement via the alternative pathway, thus initiating an inflammatory amplification loop that mediates the severe necrotizing inflammation of ANCA disease.

Animals↗

Bone marrow-derived cells are sufficient and necessary targets to mediate glomerulonephritis and vasculitis induced by anti-myeloperoxidase antibodies.

Clinical and experimental evidence indicate that ANCA cause pauci-immune necrotizing and crescentic glomerulonephritis (NCGN) and systemic small vessel vasculitis in humans. One of the major target antigens for ANCA is myeloperoxidase (MPO). An animal model that closely resembles the human disease is induced by intravenous injection of anti-MPO IgG into mice. The likely primary pathogenic targets for the anti-MPO IgG are circulating neutrophils and monocytes, although other cells have been implicated, including endothelial cells and epithelial cells. Herein is reported a new model for anti-MPO-mediated glomerulonephritis and vasculitis that further documents the pathogenic potential of ANCA and demonstrates that bone marrow (BM)-derived cells are sufficient targets to cause anti-MPO disease in the absence of MPO in other cell type. MPO knockout (Mpo-/-) mice that were immunized with mouse MPO were exposed to irradiation and received a transplant of Mpo+/+ or Mpo-/- BM. Engraftment in mice with circulating anti-MPO resulted in development of pauci-immune NCGN in all mice and pulmonary capillaritis and splenic necrotizing arteritis in some. Anti-MPO IgG also was introduced intravenously into chimeric mice by transplantation of Mpo+/+ BM into irradiated Mpo-/- mice or Mpo-/- BM into irradiated Mpo+/+ mice. Chimeric Mpo-/- mice with circulating MPO-positive neutrophils developed NCGN, whereas chimeric Mpo+/+ mice with circulating MPO-negative neutrophils did not, thereby indicating that BM-derived cells are not only sufficient but also necessary for induction of anti-MPO disease. This novel animal model further documents ANCA IgG interactions with neutrophils as a cause of ANCA-associated glomerulonephritis and vasculitis.

Adoptive Transfer↗

Controlling gene expression in Drosophila using engineered zinc finger protein transcription factors.

Zinc finger protein transcription factors (ZFP TFs) have been designed to control the expression of endogenous genes in a variety of cells. However, thus far the use of engineered ZFP TFs in germline transgenic settings has been restricted to plants. Here we report that ZFP TFs can regulate gene expression in transgenic Drosophila. To demonstrate this, we targeted the promoter of the well-characterized fushi tarazu (ftz) gene with a ZFP TF activator using the VP16 activation domain from Herpes simplex virus, and ZFP TF repressors using the Drosophila methyl-CpG binding domain (MBD)-like Delta protein. Heat-shock-inducible expression of the ZFP TF activator and repressors resulted in reciprocal effects on ftz regulation, as deduced from changes in the staining pattern and intensity of ftz and en gene expression, and from the cuticular analysis of first instar larvae. These data demonstrate the utility of ZFP TFs as tools for controlling gene expression in the context of a metazoan organism.

Animals↗

SER-1, a Caenorhabditis elegans 5-HT2-like receptor, and a multi-PDZ domain containing protein (MPZ-1) interact in vulval muscle to facilitate serotonin-stimulated egg-laying.

Serotonin (5-HT) stimulation of egg-laying in Caenorhabditis elegans is abolished in ser-1 (ok345) animals and is rescued by ser-1 expression in vulval muscle. A PDZ binding motif (ETFL) at the SER-1 C-terminus is not essential for rescue, but facilitates SER-1 signaling. SER-1 binds specifically to PDZ domain 10 of the multi-PDZ domain protein, MPZ-1, based on GST pulldown and co-immunoprecipitation. mpz-1 is expressed in about 60 neurons and body wall and vulval muscles. In neurons, GFP-tagged MPZ-1 is punctate and colocalizes with the synaptic marker, synaptobrevin. The expression patterns of ser-1 and mpz-1 overlap in 3 pairs of neurons and vulval muscle. In addition, MPZ-1 also interacts with other GPCRs with acidic amino acids in the -3 position of their PDZ binding motifs. mpz-1 RNAi reduces 5-HT stimulated egg-laying in wild type animals and in ser-1 mutants rescued by muscle expression of SER-1. In contrast, mpz-1 RNAi has no effect on 5-HT stimulated egg-laying in ser-1 mutants rescued by expression of a truncated SER-1 that lacks the C-terminal PDZ binding motif. The overexpression of MPZ-1 PDZ domain 10 also inhibits 5-HT stimulated egg-laying. These studies suggest that the SER-1/MPZ-1 interaction facilitates SER-1 mediated signaling.

Animals↗

Initial study of two-phase laminar flow extraction chip for sample preparation for gas chromatography.

A sample preparation method for gas chromatography using a two-phase, laminar flow extraction PDMS/glass chip has been developed. A stable two-phase laminar interface was obtained by surface modification, and the organic extraction phase and the aqueous sample phase were separated effectively when the two-phase laminar flows exit the chip. Experiments were conducted on the chip to extract ephedrine from aqueous solution. Good reproducibility was obtained over the entire range of ephedrine concentration using the extraction chips (CV range 2.7%-4.5%). Effects of salt and solvent on extraction efficiency were studied.

Chromatography, Gas↗

Pathogenesis of vascular inflammation by anti-neutrophil cytoplasmic antibodies.

The reports of a newborn who developed glomerulonephritis and pulmonary hemorrhage after transplacental transfer of anti-neutrophil cytoplasmic antibody (ANCA) IgG with specificity for myeloperoxidase (MPO) is compelling clinical evidence that ANCA are pathogenic. In vitro studies indicate that ANCA activate cytokine-primed neutrophils and monocytes through both direct Fab'2 binding and Fc receptor engagement. Neutrophils that have been activated by ANCA release oxygen radicals, lytic enzymes, and inflammatory cytokines and adhere to and kill endothelial cells. A murine model caused by passive administration of mouse anti-mouse MPO IgG provides convincing evidence that ANCA IgG alone in the absence of antigen-specific T cells can cause necrotizing glomerulonephritis and vasculitis. This pathogenic process is enhanced by synergistic inflammatory factors, probably through priming of neutrophils. Immunization of rats with human MPO induces antibodies that cross-react with rat MPO and cause glomerulonephritis and vasculitis. These ANCA act in concert with chemokines to cause adherence of leukocytes to the walls of small vessels with subsequent injury. To date, animal models of disease that is induced by anti-proteinase 3 are less robust. Clinical and experimental data suggest but do not prove that the ANCA autoimmune response is initiated by an immune response to an antisense peptide of the ANCA antigen or its mimic that may be introduced into the body by an infectious pathogen. This antibody response elicits anti-idiotypic antibodies that cross-react with ANCA antigens. The pathogenesis of ANCA disease is multifactorial, with genetic and environmental factors influencing onset of the autoimmune response, the mediation of acute injury, and the induction of the chronic response to injury.

Animals↗

Case-control retrospective study of pulmonary tuberculosis in heroin-abusing patients in China.

The objective of this study was to observe the clinical significance of pulmonary tuberculosis in heroin abusers. A case-retrospective study was done to analyze clinical symptoms and severity based on chest X-rays, results of sputum bacterial test and effects of treatment. The clinical symptoms in patients with tuberculosis and heroin addiction were more severe than those in the nonheroin-addicted group. An examination of chest X-rays showed that tuberculosis lesions were involved in two or more lung fields in 80% of the heroin-addicted cases. In 73.3% of the cases, sputum bacterial tests were positive for tuberculosis. After anti-tuberculosis treatment, chest X-rays showed a recovery rate of 46.67%, caves became smaller by 41.7%, and the sputum negative conversion rate was 45.5%. There are significant differences compared with the control group (p < 0.05). The patients with pulmonary tuberculosis combined with heroin addiction had more severe clinical symptoms, more lesion zones found in their chest X-rays, higher sputum tuberculosis positive rates, and poorer treating effects.

Antitubercular Agents↗

Effect of protein kinase C on T lymphocyte proliferation and apoptosis in acute idiopathic thrombocytopenic purpura.

Previous studies have shown that T lymphocyte proliferation and apoptosis are abnormal in idiopathic thrombocytopenic purpura (ITP) children; however, the underlying regulated mechanisms in signal transductions remain unknown. In this paper, we investigated the changes of protein kinase C (PKC) activity in peripheral blood T lymphocytes and the effect of PKC on the peripheral blood T lymphocyte proliferation and apoptosis in ITP children. We demonstrated that T lymphocytes from ITP children were more susceptible to the activator (phorbol myristate acetate) and the inhibitor (H-7) of PKC. In ITP children, phorbol myristate acetate and H-7 dramatically affected T lymphocyte proliferation and apoptosis, but altered little in healthy children. Compared with healthy children, PKC activity was significantly enhanced in ITP children, increasing the expressions of Fas ligand on CD3+, CD4+ and CD8+ T cells, indicating positive correlations between PKC activity and the expressions of Fas ligand on T cells, while the relations between PKC activity and platelet count showed negative correlations. Taken together, our findings suggest that PKC signal transductions may participate in the procedure of T lymphocyte proliferation and apoptosis in ITP children. PKC activation may enhance T lymphocyte activity, suppress T cell apoptosis, and be involved in thrombocyte damage, which can be related to the immunity pathogenesis of ITP.

Acute Disease↗

[Effect of intravenous patient-controlled intravenous analgesia with small dose of ketamine during shock stage on cytokine balance in patients with severe burn].

OBJECTIVE: To investigate the influences of patient-controlled intravenous analgesia (PCIA) with small dose of ketamine solely or combined with fentanyl during shock stage on cytokine balance in patients with severe burn. METHODS: Forty-five patients with severe burn and hospitalized within 24 hours after injury were randomly divided into three groups (n=15 in each group): conventional analgesia therapy group (group CAT), patient controlled intravenous ketamine analgesia group (group PCIKA, intravenous small dose ketamine), and patient controlled intravenous ketamine and fentanyl analgesia group (group PCIKFA, intravenous small dose ketamine combined with fentanyl). In group CAT, patients received intramuscular injection of pethidine 50 mg and phenergan 25 mg when patients complained of pain. In group PCIKA, patients received intravenous infusion with a mixture of ketamine 20 g/L + droperidol 50 mg/L, and in group PCIKFA with a mixture of ketamine 10 g/L + fentanyl 5 mg/L + droperidol 50 mg/L. In two groups of PCIA, patients received loading dose of 1 ml, with background infusion of 1.5 ml/h. Pain scores and side effects of analgesics were determined or observed at the time points of before analgesia and 1, 8, 24, 48 hours after analgesia, and serum cytokines [including interleukin-1 (IL-1), IL-6, tumor necrosis factor-alpha (TNF-alpha)] were measured at the same time points. RESULTS: Pain scores in PCIFA and PCIKFA groups were significantly lower than that of before analgesia and group CAT (all P<0.01). There were no significant differences in heart rate (HR) and mean artery pressure (MAP) in three groups. No significant difference in side effects was found in three groups. The serum levels of cytokines were significantly lower in two PCIA groups than those of group CAT (all P<0.01). CONCLUSION: Patient-controlled intravenous analgesia with small doses of ketamine or combined with fentanyl during shock stage in patients with severe burn give efficient and safe pain relief, and cytokine balance.

Adult↗

[Analysis of protein kinase C activity of peripheral blood T lymphocytes in children with acute idiopathic thrombocytopenic purpura].

OBJECTIVE: Acute idiopathic thrombocytopenic purpura (AITP) is a common autoimmune disease in children. Thrombocytes decrease extremely in serious patients, its pathogenesis involves abnormal activation of T lymphocytes and T cell-dependent production of autoantibody. The aim of the present study was to investigate changes of protein kinase C (PKC) activity in peripheral blood T lymphocytes in children with AITP and the relationships between PKC activity and T lymphocytes activation and thrombocytopenia. METHODS: Peripheral blood specimens were collected from children with acute ITP (n = 35) and healthy children (n = 30), and T lymphocytes were isolated and purified by using T cells Segregation Enrichment Column. PKC activity was detected by using PepTag Assay, a non-radioactive detection method. The reaction mixture, in a final volume of 25 microl, consisted of 5 microl reaction buffer, PepTag C1 5 microl (0.4 microg/microl), PKC activator solution (DG) 5 microl, peptide protection solution 1 microl and sample 9 microl. Phosphorylation reaction was allowed to continue for 30 minutes, then 25 microl reaction mixture was subjected to electrophoresis on a 0.8% agarose gel at 100 V for about 20 minutes. After electrophoresis, the PepTag C1 peptides which were phosphorylated and non-phosphorylated were separated, phosphorylated PepTag C1 peptide with negative electricity migrated toward the anode (+), but nonphosphorylated PepTag C1 peptide with positive electricity migrated toward cathode (-), the gel was photographed. Electrophoresis bands on anode represented PKC activity and were analyzed quantitatively. FasL, which is T cell activation marker, was determined by flow cytometer and platelet was counted by cell counting meter. RESULTS: Compared with healthy children, children with AITP had significantly higher PKC total activity [(0.97 +/- 0.21) nmol/(min.ml) vs. (0.55 +/- 0.13) nmol/(min.ml), (P < 0.05)]. Expression of FasL on T cell subpopulation in children with AITP was significantly higher [Th FasL: (32.7 +/- 3.4) vs. (14.7 +/- 4.2); Tc FasL: (17.3 +/- 9.7) vs. (11.6 +/- 8.5)%, (P < 0.05)]. Besides, relationships between the changes of PKC activity, Th FasL and Tc FasL had positive correlation (r(1) = 0.68, r(2) = 0.53, P < 0.05). However, PKC activity and platelet count had a significantly negative correlation (r = -0.75, P < 0.05). CONCLUSION: Increased PKC activity was seen in children with AITP, which can cause damage to thrombocytes and reduction of thrombocytes. PKC signal transduction pathway might play an important role in the immunopathogenesis of AITP.

Acute Disease↗

[Analysis of peripheral blood T cell subsets in children with idiopathic thrombocytopenic purpura].

The pathogenesis of some autoimmune diseases has been considered to be related to abnormal differentiation of T cell subsets. This study was aimed at investigating the change of Th1-like and Th2-like cells balance in ITP children, and analyzing the role of T cell subsets disequilibrium in the pathogenesis of ITP. Peripheral blood T cells were collected from 30 ITP patients, the T-cells were isolated and purified. The ratios of Th/Tc, Th1/Th2 and Tc1/Tc2 in peripheral blood T cells were analyzed by immunofluorescence staining and bicolor flow cytometry (FCM) in vitro. The results showed that as compared with the ratios of Th1/Th2 (48.76% +/- 6.17%) and Tc1/Tc2 (18.90% +/- 4.12%) in healthy children, the ratios of Th1/Th2 (56.21% +/- 5.95%) and Tc1/Tc2 (23.09% +/- 3.31%) in ITP children increased obviously. FCM analysis revealed that average percentages of Th, Th1, Th2, Tc, Tc1 and Tc2 were 22.31% +/- 6.51%, 21.92% +/- 6.42%, 0.39% +/- 0.14%, 31.12% +/- 6.15%, 30.95% +/- 5.45% and 1.34% +/- 0.84% in ITP children versus 39.24% +/- 5.82%, 39.01% +/- 5.47%, 0.80% +/- 0.16%, 30.25% +/- 5.63%, 28.72% +/- 5.20% and 1.52% +/- 0.68% in healthy children. The average percentages of Th, Th1 and Th2 decreased obviously, while the average percentages of Tc, Tc1 and Tc2 did not change. It is concluded that the ratios of Th1/Th2 and Tc1/Tc2 in peripheral blood T cells increase obviously in ITP children and the cellular immunity in ITP children shifts to Th1 type immunity superiority, which suggest that the abnormal differentiation of T cell subsets may play an important role in the pathologic process of ITP.

Child↗

SER-7, a Caenorhabditis elegans 5-HT7-like receptor, is essential for the 5-HT stimulation of pharyngeal pumping and egg laying.

Serotonin (5-HT) stimulates both pharyngeal pumping and egg laying in Caenorhabditis elegans. Four distinct 5-HT receptors have been partially characterized, but little is known about their function in vivo. SER-7 exhibits most sequence identity to the mammalian 5-HT7 receptors and couples to a stimulation of adenyl cyclase when expressed in COS-7 cells. However, many 5-HT7-specific agonists have low affinity for SER-7. 5-HT fails to stimulate pharyngeal pumping and the firing of the MC motorneurons in animals containing the putative ser-7(tm1325) and ser-7(tm1728) null alleles. In addition, although pumping on bacteria is upregulated in ser-7(tm1325) animals, pumping is more irregular. A similar failure to maintain "fast pumping" on bacteria also was observed in ser-1(ok345) and tph-1(mg280) animals that contain putative null alleles of a 5-HT2-like receptor and tryptophan hydroxylase, respectively, suggesting that serotonergic signaling, although not essential for the upregulation of pumping on bacteria, "fine tunes" the process. 5-HT also fails to stimulate egg laying in ser-7(tm1325), ser-1(ok345), and ser-7(tm1325) ser-1(ok345) animals, but only the ser-7 ser-1 double mutants exhibit an Egl phenotype. All of the SER-7 mutant phenotypes are rescued by the expression of full-length ser-7gfp translational fusions. ser-7gfp is expressed in several pharyngeal neurons, including the MC, M2, M3, M4, and M5, and in vulval muscle. Interestingly, 5-HT inhibits egg laying and pharyngeal pumping in ser-7 null mutants and the 5-HT inhibition of egg laying, but not pumping, is abolished in ser-7(tm1325);ser-4(ok512) double mutants. Taken together, these results suggest that SER-7 is essential for the 5-HT stimulation of both egg laying and pharyngeal pumping, but that other signaling pathways can probably fulfill similar roles in vivo.

Adenylyl Cyclases↗

[The relationship between the C589T polymorphism of IL-4 gene and cholelithiasis].

OBJECTIVE: To investigate the relationship between IL-4 gene polymorphism and cholelithiasis in Chinese population. METHODS: Polymerase chain reaction combined with restriction enzyme digestion was used to detect the polymorphism of IL-4 gene in 81 cholecystolithiasis, 41 patients with biliary duct stone. RESULTS: There were no significant differences of the IL-4 gene polymorphism genotypes and alleles between 81 cholecystolithiasis patients (CC11.1%, CT34.6%, TT54.3%; C28.4.7%, T71.6%). There were significant differences of the IL-4 gene polymorphism genotypes and alleles between 41 patients with biliary duct stone (CC48.8%, CT36.6%, TT14.6%; C67.1%, T32.9%). CONCLUSIONS: The C589T polymorphism of IL-4 gene was not associated with cholecystolithiasis patients in Chinese, but was related to patients with biliary duct stone in Chinese.

Adult↗

Joint effects of acetochlor and urea on germinating characteristics of crop seeds.

In order to evaluate ecological risk of agrochemicals in common use, joint toxic effects of acetochlor and urea on germinating characteristics of Chinese cabbage (Brassica Pekinensis Rupr) seeds were investigated using the water-culture method and the soil-culture method. The results indicated that excessive application of acetochlor and urea, when the concentrations were higher than 31.3 mg x kg(-1) for acetochlor and 500 mg x kg(-1) for urea, had strong inhibitory effects on the rate of seed germination, root elongation and hypocotyl length of Chinese cabbage. The inhibitory rate of the germinating characteristics of Chinese cabbage seeds was significantly increased with an increase in the concentration of acetochlor or urea. The two agrochemicals in water had a stronger toxicity than these in the soil at the same concentration. Among the three indexes, hypocotyl length was the most sensitive to the toxicity of acetochlor and urea.

Brassica↗

Chemical genetics identifies Rab geranylgeranyl transferase as an apoptotic target of farnesyl transferase inhibitors.

A chemical genetics approach identified a cellular target of several proapoptotic farnesyl transferase inhibitors (FTIs). Treatment with these FTIs caused p53-independent apoptosis in Caenorhabditis elegans, which was mimicked by knockdown of endosomal trafficking proteins, including Rab5, Rab7, the HOPS complex, and notably the enzyme Rab geranylgeranyl transferase (RabGGT). These FTIs were found to inhibit mammalian RabGGT with potencies that correlated with their proapoptotic activity. Knockdown of RabGGT induced apoptosis in mammalian cancer cell lines, and both RabGGT subunits were overexpressed in several tumor tissues. These findings validate RabGGT, and by extension endosomal function, as a therapeutically relevant target for modulation of apoptosis, and enhance our understanding of the mechanism of action of FTIs.

Alkyl and Aryl Transferases↗

The role of neutrophils in the induction of glomerulonephritis by anti-myeloperoxidase antibodies.

In humans, circulating anti-neutrophil cytoplasm autoantibodies (ANCAs) with specificity for myeloperoxidase (MPO) are strongly associated with the development of pauci-immune necrotizing and crescentic glomerulonephritis (NCGN). In mice, we have demonstrated that intravenous injection of mouse antibodies specific for mouse MPO induces NCGN that closely mimics the human disease. We now report that the development of NCGN in this experimental model is accompanied by glomerular accumulation of neutrophils and macrophages. Neutrophil infiltration was most conspicuous at sites of glomerular necrosis and crescent formation, with macrophages also most numerous in crescents. Lymphocytes, however, were sparse in acute lesions. Importantly, mice that were depleted of circulating neutrophils with NIMP-R14 rat monoclonal antibodies were completely protected from anti-MPO IgG-induced NCGN. These findings provide direct evidence that neutrophils play a major role in the pathogenesis of anti-MPO-induced NCGN in this animal model and implicate neutrophils in the induction of human ANCA disease. This raises the possibility that therapeutic strategies to reduce circulating neutrophils could be beneficial to patients with ANCA-induced NCGN.

Animals↗

Aggravation of anti-myeloperoxidase antibody-induced glomerulonephritis by bacterial lipopolysaccharide: role of tumor necrosis factor-alpha.

Wegener's granulomatosis, microscopic polyangiitis, Churg-Strauss syndrome, and idiopathic pauci-immune necrotizing crescentic glomerulonephritis are associated with myeloperoxidase (MPO)-specific anti-neutrophil cytoplasmic autoantibodies (ANCAs). Clinical and experimental evidence indicates that ANCA and proinflammatory stimuli of infectious origin act synergistically to cause vasculitis. We tested this hypothesis in a recently developed mouse model of anti-MPO IgG-induced glomerulonephritis by using bacterial lipopolysaccharide (LPS) as the proinflammatory stimulus. Systemic administration of LPS dose dependently increased renal injury induced by anti-MPO IgG as demonstrated by increased glomerular crescent formation and glomerular necrosis. In the early phase, LPS enhanced anti-MPO IgG-induced glomerular neutrophil accumulation. Furthermore, a transient induction of circulating tumor necrosis factor (TNF)-alpha levels, followed by a marked increase in circulating MPO levels, was observed on administration of LPS. In vitro, anti-MPO IgG induced a respiratory burst in murine neutrophils only after priming with TNF-alpha. Finally, anti-TNF-alpha treatment attenuated, but did not prevent, the LPS-mediated aggravation of anti-MPO IgG-induced glomerulonephritis. In conclusion, our study demonstrates that ANCA and proinflammatory stimuli act synergistically to induce vasculitic disease and suggests potential benefits of inhibiting TNF-alpha bioactivity in treating human ANCA-associated necrotizing crescentic glomerulonephritis.

Animals↗

TYRA-2 (F01E11.5): a Caenorhabditis elegans tyramine receptor expressed in the MC and NSM pharyngeal neurons.

Tyramine appears to regulate key processes in nematodes, such as pharyngeal pumping, and more complex behaviors, such as foraging. Recently, a Caenorhabditis elegans tyramine receptor, SER-2, was identified that is involved in the TA-dependent regulation of these processes. In the present study, we have identified a second C. elegans gene, tyra-2 (F01E11.5) that encodes a tyramine receptor. This is the first identification of multiple tyramine receptor genes in any invertebrate. Membranes from COS-7 cells expressing TYRA-2 bind [(3)H]tyramine with high affinity with a K(d) of 20 +/- 5 nM. Other physiologically relevant biogenic amines, such as octopamine and dopamine, inhibit [(3)H]tyramine binding with much lower affinity (K(i)s of 1.55 +/- 0.5 and 1.78 +/- 0.6 microM, respectively), supporting the identification of TYRA-2 as a tyramine receptor. Indeed, tyramine also dramatically increases GTPgammaS binding to membranes from cells expressing TYRA-2 (EC(50) of 50 +/- 13 nM) and the TA-dependent GTPgammaS binding is PTX-sensitive suggesting that TYRA-2 may couple to Galpha(i/o). Based on fluorescence from tyra::gfp fusion constructs, TYRA-2 expression appears to be exclusively neuronal in the MC and NSM pharyngeal neurons, the AS family of amphid neurons and neurons in the nerve ring, body and tail. Taken together, these results suggest that TYRA-2 encodes a second Galpha(i/o)-coupled tyramine receptor and suggests that TA-dependent neuromodulation may be mediated by multiple receptors and more complex than previously appreciated.

Amino Acid Sequence↗