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Biomedical subjects

J Simon

Publications and source records attributed to J Simon.

At least 163 records · Page 9Linked to original sources

Effect of nutritional state on the formation of a complex involving insulin receptor IRS-1, the 52 kDa Src homology/collagen protein (Shc) isoform and phosphatidylinositol 3'-kinase activity.

The Src homology and collagen protein (Shc) is tyrosine phosphorylated in response to insulin; however, evidence for its interaction with insulin receptor (IR) in normal tissues is missing. Interactions between IR, Shc and regulatory subunits of the phosphatidylinositol 3'-kinase (PI 3'-kinase) were characterized in the present study in liver and muscles of chickens submitted to various nutritional states. A chicken liver Shc cDNA fragment encoding a 198 amino acid long fragment, including the phosphotyrosine binding domain was sequenced. It shows 89% homology with the corresponding human homologue. The amounts of the three Shc isoforms (66, 52 and 46 kDa) and Shc messenger were not altered by the nutritional state. Shc tyrosine phosphorylation was decreased by fasting in both liver and muscle. Importantly, Shc was immunoprecipitated by IR antibody (mostly the 52 kDa isoform) or by alphaIRS-1(mostly the 46 kDa isoform). IR-Shc association was decreased by fasting and restored by refeeding. In liver, alphaShc immunoprecipitated the three forms of regulatory subunits of PI 3'-kinase and a PI 3'-kinase activity which was decreased by fasting. In muscle, alphaShc immunoprecipitated only the p85 isoform; the associated PI 3'-kinase activity was not altered by the nutritional state. Conversely, in both tissues anti-p85 antibody precipitated only the 52 kDa Shc isoform. In liver, antibodies to insulin receptor substrate-1 (alphaIRS-1), Shc or IR immunoprecipitated the three regulatory subunits of PI 3'-kinase and an equal PI 3'-kinase activity, without any residual activity left in the supernatants, suggesting the presence of a large complex involving IR, IRS-1, Shc (mainly the 52 kDa isoform) and PI 3'-kinase activity. The presence of another complex containing IRS-1 and the 46 kDa Shc isoform, but no PI 3'-kinase activity, is suggested.

Adaptor Proteins, Signal Transducing↗

[Pacemaker syndrome without a pacemaker].

Circulatory consequences of cardiac arrhythmias are not always evident. Proper interpretation of the clinical symptoms in certain cases requires assessment of the patients' other hemodynamic characteristics. The authors present the case of a patient with left ventricular hypertrophy, who developed severe circulatory failure at the time of artrioventricular dyssynchrony in association with junctional rhythm. Analogy between the circulatory consequences of the junctional rhythm and ventricular pacing was documented by hemodynamic measurements. The patient was subsequently treated by implanting an atrioventricular pacemaker.

Aged↗

[Analysis of mortality trends in the West Bohemian Region in comparison with the entire Czech Republic 1988-1995].

BACKGROUND: Unfavourable trends in Czech republic (CR) started in the sixties and peaked in the late eighties i.e. in years when a dramatic mortality fall was observed in most western european countries. So, CR belonged among those Eastern European countries in that total and cardiovascular mortality showed increasing and alarming trends. West Bohemia Region (WB) was characterised by the concentration of heavy industry and high environmental pollution. Because of its geographical position on the western frontier, it was generally restricted in capital investment in the past. We wondered whether these phenomenon were reflected in higher mortality rates than in the rest of CR and which changes occurred after the year 1989. METHODS AND RESULTS: We compared the age standardized mortality data from 1988, 91, 93 and 95 in CR and WB for total mortality, cardiovascular mortality, coronary heart disease, strokes, malignancies and respiratory diseases. Data were age-adjusted for "World Population Standards" and rates were given for 100,000 inhabitants. In the whole CR a significant decrease of total, cardiovascular and cancer mortality was observed from 1988 to 1995. In WB these trends were similar, however in comparison to the whole CR the mortality rates remained in each respective period higher for total, cancer (mainly lung cancer) mortality and for non specific respiratory disease. In contrast, the coronary mortality rates in CR and WB were similar, however in WB after a temporary decrease in 1993 a significant increase in 1995 was observed. On the other hand the stroke mortality rates which were until 1993 in WB higher, significantly decreased in 1995 below the rates for CR. The cause of higher mortality rates in WB are far from being clear. To elucidate this observation epidemiologic studies of environmental pollution, life style of the population and socioeconomic factors are necessary, even as a further monitoring of regional mortality rates and trends.

Cause of Death↗

The function of the periplasmic Sud protein in polysulfide respiration of Wolinella succinogenes.

The periplasmic Sud protein was previously isolated as a sulfide dehydrogenase from Wolinella succinogenes. Sud modified by a C-terminal His-tag (Sud-His6) was produced in Escherichia coli by expression of the sud gene. Sud-His6 catalyzed thiocyanate formation from cyanide and polysulfide. The Vmax of this activity was more than one order of magnitude higher than that of sulfide oxidation by dimethyl-naphthoquinone and that of polysulfide reduction by BH4-. The apparent Km was less than 20 microM polysulfide. Polysulfide and not elemental sulfur was found to be the product of sulfide oxidation by dimethyl-naphthoquinone, in contrast to the earlier view [Kreis-Kleinschmidt, V., Fahrenholz, F., Kojro, E. & Kröger. A. (1995) Arch. Microbiol. 165, 65-68]. Sud-His6 did not contain metal ions or other prosthetic groups. Replacement by site-directed mutagenesis of the single cysteine residue of the Sud monomer caused complete loss of activity, while the exchange of the single histidine residue or of the lysine residue situated next to cysteine did not affect activity. In equilibrium dialysis, the Sud-His6 monomer bound up to ten polysulfide sulfur atoms with a dissociation constant of 0.2 mM. Sud-His6 loaded with polysulfide sulfur showed an absorption spectrum in the range of 350-400 nm; this spectrum differed from that of free polysulfide. Electron transport from H2 to polysulfide catalyzed by the membrane fraction of W. succinogenes was stimulated by the presence of small amounts of Sud-His6. The apparent Km for polysulfide decreased sevenfold in the presence of saturating amounts of Sud-His6 (1 microM Sud-His6 dimer). Similar results were obtained with intact W. succinogenes cells containing low and high amounts of Sud. Sud appears to function as a polysulfide binding protein and probably binds polysulfide sulfur to its cysteine residue and transfers it to the substrate site of the membraneous polysulfide reductase.

Amino Acid Sequence↗

Cloning the chicken leptin gene.

Chicken is characterized by a relative insulin resistance and a physiological hyperglycemia (2g/L) and is also subjected to fattening. Fat deposits in chicken, as in mammals, are regulated by environmental and genetic factors. In mammals, leptin, an adipose cell-specific secreted protein has been characterized that is encoded by ob gene. Leptin regulates satiety through hypothalamic specific receptors, energy balance, energy efficiency and contributes to adaptation to starvation. The leptin gene has been characterized in various mammalian species, and the cloning and sequencing of the chicken leptin gene (ob gene) are reported. Using RT-PCR and primers flanking the coding region of the leptin gene selected from known mammalian sequences, we have successfully amplified a 600-bp fragment from chicken liver and adipose tissue total ARNs. The amplified fragment exhibits a similar size to that of the coding region of the mammalian leptin gene. The sequences of the coding region of chicken liver and adipose tissue are identical and presented 97%, 96% and 83% similarity to the mouse, rat and human sequences, respectively. Finally, this is the first report showing that leptin gene expression in chicken is not exclusively localized in adipose tissue but is also expressed in liver. The expression of leptin in liver may be associated with a key role of this organ in avian species in controlling lipogenesis.

Adipose Tissue↗

[Detection of risk of insulin resistance in the population].

BACKGROUND: To assess the validity of hyperinsulinemia as a marker of insulin resistance (IR) and to find other common risk factors (RF) associated with IR. METHODS AND RESULTS: Sample of 91 healthy volunteers with normal glucose tolerance (NGT) was selected from the adult Pilsen population. Following examinations according to the standard protocol were done: medical history, physical examination, body mass index-BMI (kg/m2), waist to hip ratio (WHR), casual blood pressure (BP), plasma lipids, 7-point oral glucose tolerance test (oGTT), IRI (immunoreactive insulin) curve, insulin suppression test (IST) for the evaluation of IR. Specificity and sensitivity of IRI levels as markers of IR were tested. Association between IR measured by IST and fasting and postload IRI was evaluated by single correlation. Multiple logistic regression (MLR) was applied for the calculation of IR prediction. Fasting and postload hyperinsulinemia (mU/l) have very good specificity (about 90%) for the discovery of IR, but sensitivity was different: fasting IRI > 20 = 19%, IRI in the 2nd h of oGTT > 90 = 30%, IRI sum (fasting IRI + IRI in the 1st and 2nd h of oGTT) > 150 = 51%. Simple correlation between IRI and IR was better in IRI sum (0.56 p < 0.001) than fasting IRI (0.28, p < 0.05). Using MLR HDL-ch, TG and IRI sum were selected as the significant and independent factors for the prediction of IR in the subjects from the population (prediction accuracy about 68%). CONCLUSIONS: Fasting IRI is not too good marker for IR assessment in the NGT subjects from the Pilsen population. IRI sum was the best marker for IR and together with HDL-ch and TG level were selected as the significant predictive factors for IR.

Adult↗

Deletion and site-directed mutagenesis of the Wolinella succinogenes fumarate reductase operon.

Wolinella succinogenes is known to grow at the expense of fumarate respiration with formate or sulfide as electron donor. A W. succinogenes mutant (delta frdCAB) lacking the fumarate reductase operon did not grow with fumarate as terminal electron acceptor and either formate or sulfide as electron donor. The delta frdCAB mutant grown with formate and nitrate did not contain fumarate reductase activity and did not catalyze electron transport from sulfide to fumarate, in contrast to the nitrate-grown wild-type strain. A mutant constructed by integration of frdCAB into the delta frdCAB mutant genome showed wild-type properties with respect to growth and enzyme activities. The frdC2 gene located downstream of the fumarate reductase operon frdCAB possibly encodes a diheme cytochrome b that is similar to FrdC (41% identical residues). The corresponding transcript differs from that of frdCAB. A delta frdC2 mutant showed wild-type properties with respect to growth and enzyme activities. Using site-directed mutagenesis, each of the four histidine residues that are predicted to serve as the axial heme ligands in FrdC (His44, His93, His143, and His182) was replaced by alanine or other residues. The resulting mutants did not grow with formate and fumarate and did not contain fumarate reductase activity, FrdA or FrdC when grown with formate and nitrate. In contrast, substitution of two histidine residues that are not considered heme ligands, yielded mutants (H114A and H120A) that grew with fumarate. It is concluded that FrdCAB is an obligatory component of fumarate respiration with formate and with sulfide in W. succinogenes. FrdC2 is not involved in fumarate respiration. Replacement of the putative heme ligands of FrdC prevents formation of a functional fumarate reductase.

Alanine↗

Guidelines for using quantitative measures of brain magnetic resonance imaging abnormalities in monitoring the treatment of multiple sclerosis.

The change of brain lesion load, measured on T2-weighted magnetic resonance imaging (MRI) using computer-assisted techniques, is a widely used secondary endpoint for phase III clinical trials in multiple sclerosis (MS). Collection, transfer, and analysis of the electronic data across multiple centers have all proved challenging and give rise to potential errors. However, many new acquisition schemes and postprocessing techniques have been developed; these may reduce scan times and result in better lesion conspicuity or lessen the human interaction needed for data analysis. This review considers many aspects of the use of MRI in clinical trials for MS and provides international consensus guidelines, derived from a task force of the European Magnetic Resonance Networks in Multiple Sclerosis (MAGNIMS) together with a group of North American experts. The main points considered are the organization of correctly powered trials and selection of participating sites; the appropriate choice of pulse sequences and image acquisition protocol given the current state of technology; quality assurance for data acquisition and analysis; accuracy and reproducibility of lesion load assessments; and the potential for the application of quantitative methods to other MRI-derived measures of disease burden.

Brain↗

Local tissue properties in bone healing: influence of size and stability of the osteotomy gap.

To characterize the site-specific mechanical and histological properties in fracture repair and to relate these properties to the initial mechanical situation, an experimental fracture model was used in the metatarsus of 42 sheep. The mechanical situation of a transverse osteotomy was described by three gap sizes (1, 2, or 6 mm) and two amounts of strain (7 or 31%). An external fixator that allowed a defined axial movement provided control of these settings. Nine weeks following surgery, the healing area was dissected and tensile and compressive properties were measured in subregions of the fracture gap and the periosteal callus. The central, sagittal section was used for quantitative histology. We found the quality of the tissue along the osteotomy line to be most important for regaining mechanical stability. Increasing the size of osteotomy gaps resulted in poorer mechanical and histological qualities, and the repair process was less complete. Interfragmentary strain did not significantly influence the repair process. The smaller strain levels had already stimulated the secondary repair process, and this stimulatory effect could not be further enhanced by increasing the amount of strain. Our finding that large gaps between bone segments were not as well healed as were smaller gaps suggests that it is advantageous to avoid large gaps in fracture treatment.

Animals↗

Isolation of functional glucagon islets of Langerhans from the chicken pancreas.

Two types of islets of Langerhans are present in the avian endocrine pancreas: glucagon islets (A-islets) and insulin islets (B-islets). Islets from the chicken pancreas were isolated by ductal injection of collagenase, enzymatic digestion, atraumatic dispersion of the digests at an appropriate time, and nylon mesh filtrations. A- and B-islets were identified by immunohistochemistry and radioimmunological quantification of insulin and glucagon. Dithizone-positive islets proved to be mostly of the A-type by immunostaining, and radioimmunological measurements: islets from the cranial half of the body of the pancreas were almost pure (95%) glucagon islets (0.454 +/- 0.027 pmol glucagon and 0.023 +/- 0.005 pmol insulin per islet). Increasing the glucose concentration in the incubation medium from 14 to 42 mM decreased glucagon release, demonstrating that the alpha-cells maintained their glucose sensitivity after isolation.

Animals↗

Large-scale preparation of biologically active recombinant chicken obese protein (leptin).

Prokaryotic expression vector pMON3401 encoding full size A(-1) chicken leptin (AF012727) was prepared by PCR of previously described cDNA. Escherichia coli cells transformed with this vector overexpressed large amounts of chicken leptin upon induction with nalidixic acid. The expressed protein found in the inclusion bodies was refolded and purified to homogeneity on a Q-Sepharose column, yielding two electrophoretically pure fractions (leptin-1 and leptin-2), eluted from the column by 100 and 125 mM NaCl. Both fractions showed a single band of the expected molecular mass of 16 kDa and were composed of over 95% of monomeric protein. The biological activity of both fractions, resulting from proper renaturation, was further evidenced by their ability to stimulate proliferation of leptin-sensitive BAF/3 cells transfected with a long form of human leptin-receptor construct and by lowering the food intake of starved chicken following intravenous or intraperitoneal injections.

Amino Acid Sequence↗

A periplasmic flavoprotein in Wolinella succinogenes that resembles the fumarate reductase of Shewanella putrefaciens.

During growth with fumarate as the terminal electron transport acceptor and either formate or sulfide as the electron donor, Wolinella succinogenes induced a peri-plasmic protein (54 kDa) that reacted with an antiserum raised against the periplasmic fumarate reductase (Fcc) of Shewanella putrefaciens. However, the periplasmic cell fraction of W. succinogenes did not catalyze fumarate reduction with viologen radicals. W. succinogenes grown with polysulfide instead of fumarate contained much less (< 10%) of the 54-kDa antigen, and the antigen was not detectable in nitrate-grown bacteria. The antigen was most likely encoded by the fccA gene of W. succinogenes. The antigen was absent from a DeltafccABC mutant, and its size is close to that of the protein predicted by fccA. The fccA gene probably encodes a pre-protein carrying an N-terminal signal peptide. The sequence of the mature FccA (481 residues, 52.4 kDa) is similar (31% identity) to that of the C-terminal part (450 residues) of S. putrefaciens fumarate reductase. As indicated by Northern blot analysis, fccA is cotranscribed with fccB and fccC. The proteins predicted from the fccB and fccC gene sequences represent tetraheme cytochromes c. FccB is similar to the N-terminal part (150 residues) of S. putrefaciens fumarate reductase, while FccC resembles the tetraheme cytochromes c of the NirT/NapC family. The DeltafccABC mutant of W. succinogenes grew with fumarate and formate or sulfide, suggesting that the deleted proteins were not required for fumarate respiration with either electron donor.

Amino Acid Sequence↗

Identification and characterization of IS1302, a novel insertion element from Wolinella succinogenes belonging to the IS3 family.

A new insertion sequence (IS) designated IS1302 was identified in Wolinella succinogenes. IS1302 is 1,306 bp in size with 36-bp imperfect terminal inverted repeats. It contains only one open reading frame (tnpA), which encodes a putative transposase whose sequence is similar to that of transposases of various IS elements of the IS3 family. IS1302 was identified in the genome of a W. succinogenes fumarate reductase deletion mutant in which the frd operon had been replaced by the kan gene. The insertion of IS1302 occurred when the mutant was propagated in the presence of a high concentration of kanamycin. Two different target sites of IS1302 were found immediately upstream of the kan gene, where the insertion of IS1302 resulted in a duplication of 3 bp of the target DNA. Upon insertion of IS1302, new possible promoter structures of the kan gene were created, which might lead to a stimulated transcription of the kan gene and result in a selective advantage of cells containing IS1302 at one of the two target sites. Southern blot analysis suggested the presence of at least 13 copies of IS1302 in the genome of W. succinogenes. This is the first IS element discovered in W. succinogenes.

Amino Acid Sequence↗

Two membrane anchors of Wolinella succinogenes hydrogenase and their function in fumarate and polysulfide respiration.

Wolinella succinogenes can grow by anaerobic respiration with fumarate or polysulfide as the terminal electron acceptor, and H2 or formate as the electron donor. A DeltahydABC mutant lacking the hydrogenase structural genes did not grow with H2 and either fumarate or polysulfide. In contrast to the wild-type strain, the mutant grown with fumarate and with formate instead of H2 did not catalyze the reduction of fumarate, polysulfide, dimethylnaphthoquinone, or benzyl viologen by H2. Growth and enzymic activities were restored upon integration of a plasmid carrying hydABC into the genome of the DeltahydABC mutant. The DeltahydABC mutant was complemented with hydABC operons modified by artificial stop codons in hydA (StopA) or at the 5'-end of hydC (StopC). The StopC mutant lacked HydC, and the hydrophobic C-terminus of HydA was missing in the hydrogenase of the StopA mutant. The two mutants catalyzed benzyl viologen reduction by H2. The enzyme activity was located in the membrane of the mutants. A mutant with both modifications (StopAC) contained the activity in the periplasm. The three mutants did not grow with H2 and either fumarate or polysulfide, and did not catalyze dimethylnaphthoquinone reduction by H2. We conclude that the same hydrogenase serves in the anaerobic respiration with fumarate and with polysulfide. HydC and the C-terminus of HydA appear to be required for both routes of electron transport and for dimethylnaphthoquinone reduction by H2. The hydrogenase is anchored in the membrane by HydC and by the C-terminus of HydA. The catalytic subunit HydB is oriented towards the periplasmic side of the membrane.

Amino Acid Sequence↗

Superficial bladder tumors and increased reactivity against mycobacterial antigens before bacillus Calmette-Guerin therapy.

PURPOSE: The precise mechanism of action of bacillus Calmette-Guerin (BCG) in bladder cancer treatment remains poorly understood. Whether bladder tumor cells are destroyed by nonspecific mechanisms or targeted by specifically activated lymphocytes recognizing cognate antigens is unclear. To investigate a possible cross-reactivity between BCG and bladder cell tumors, we tested before BCG treatment the lymphoproliferation of peripheral blood lymphocytes against several mycobacterial antigens, including the secreted fibronectin binding antigen 85 complex from BCG (AG 85) in patients with superficial bladder tumors compared to control matched patients. MATERIALS AND METHODS: Using a whole blood assay, T cell response against purified protein derivative, BCG extract, whole BCG, purified AG 85, and the nonspecific mitogens pokeweed and phytohemagglutinin was investigated in 79 patients with superficial bladder tumors before BCG and in 39 control subjects without malignancy matched for age and sex. Neither group had a history of tuberculosis. Lymphoproliferation was measured with a tritiated thymidine uptake assay on day 7 of culture. RESULTS: Of the 79 patients with superficial transitional cell carcinoma, a significant lymphoproliferative response before BCG against PPD, BCG extract, whole BCG and AG 85 was observed in 65 (82.2%), 67 (84.81%), 30 (37.97%) and 49 (62.02%) patients, respectively. Of the 39 controls only 26 (64.1%), 23 (58.9%), 3 (7.7%) and 3 (7.7%) patients, respectively, had a significant lymphoproliferation against PPD, BCG extract, BCG and AG 85 (p >0.05, p = 0.004, p = 0.00001 and p = 0.00001, respectively). In terms of lymphoproliferative levels, patients with superficial transitional cell carcinoma also showed a significantly higher response against PPD (p = 0.000012), BCG extract (p = 0.000001), AG 85 (p = 0.000001), whole BCG (p = 0.00001) and pokeweed (p = 0.01) than controls but not against phytohemagglutinin. CONCLUSIONS: Patients with superficial transitional cell carcinoma demonstrate an increased lymphoproliferation against mycobacterial antigens before BCG compared to control subjects. Although a nonspecific activation of the immune system cannot be excluded at this stage, our data may suggest the possible existence of bladder cancer antigens cross-reactive with mycobacterial antigens responsible for boosting precursor cells witnessing previous contacts with mycobacteria. The implication of these findings in the antitumoral mechanism of action of BCG are under investigation.

Adhesins, Bacterial↗

Insulin receptor substrate 1 antisense expression in an hepatoma cell line reduces cell proliferation and induces overexpression of the Src homology 2 domain and collagen protein (SHC).

In mammalian cells, the insulin receptor substrate 1 protein (IRS-1) is a specific substrate for insulin and IGF-1 receptor tyrosine kinases which is involved in mediating metabolic and mitogenic actions of insulin and IGFs. In order to determine if IRS-1 is also essential in a chicken derived hepatoma cell line (LMH cells), IRS-1 gene has been invalidated in these cells. For this, we subcloned chicken IRS-1 gene in an antisense orientation into a mammalian expression vector driven by the cytomegalovirus early promoter. LMH cells were stably transfected with this construct or with the empty vector carrying only the neomycin resistance gene and selected for cIRS-1 expression. One subclone, C2, showed a complete repression of cIRS-1 expression at both protein and mRNA levels. Proliferation of C2 cells was dramatically reduced (54%) compared with Neo(r) cells. Furthermore this reduction was accompanied by a decrease in insulin-dependent [3H]thymidine incorporation, indicating a reduction in DNA synthesis. Insulin-dependent [U-14C]glucose incorporation into cellular lipids was also significantly reduced in C2 cell line suggesting an alteration in lipogenesis. In wild type LMH cells, SHC which is involved in Ras pathway, also served as a substrate for insulin receptor tyrosine kinase. In C2 cells, SHC expression, its association with the insulin receptor and its tyrosine phosphorylation were largely increased. Two forms of the regulatory subunit of PI 3-kinase were present: p85 and p55 forms. Furthermore, C2 cells displayed increased basal phosphatidylinositol (PI) 3'-kinase activity. This report demonstrates a role for cIRS-1 in the metabolic and mitogenic actions of insulin in LMH cells. However, the overexpression of cIRS-1 antisense did not completely abolish cell proliferation. This may be explained by the exacerbation of an alternative pathway that only partly compensate for the knocking out of cIRS-1 gene: the overexpression of SHC.

Adaptor Proteins, Signal Transducing↗

Regional distribution of [35S]2'-deoxy 5'-O-(1-thio) ATP binding sites and the P2Y1 messenger RNA within the chick brain.

The distribution of the P2Y1 receptor protein and transcript in the one-day-old chick brain were determined by quantitative in vitro ligand autoradiography and in situ hybridization histochemistry. We have previously used [35S]2'-deoxy 5'-O-(1-thio) ATP as a radioligand for the recombinant P2Y1 receptor transiently expressed in COS-7 cells and have also shown that such sites are present at high density (Bmax: approximately 37 pmol radioligand bound/mg protein) in chick brain membranes. Here we report the macroscopic localization of these [35S]2'-deoxy 5'-O-(1-thio) ATP binding sites within the chick brain. They were found to be widely distributed there (within the range of 0.047 +/- 0.012 to 0.309 +/- 0.035 pmol bound/mg wet tissue). The affinities of P2 agonists and antagonists at these binding sites was comparable to that found previously for the recombinant P2Y1 receptor. In parallel experiments, the regional and cellular localization of the P2Y1 receptor messenger RNA was examined by in situ hybridization. The transcript was also found to be widely distributed throughout the brain. High levels of hybridization were detected in the cortex piriformis, ectostriatum, hippocampus, cerebellum and in a range of discrete nuclei throughout the brain, including the ovoidalis, isthmo-opticus and spiriformis lateralis nuclei. Localization at cellular level indicates that this receptor transcript is expressed in neurons and also at non-neuronal sites. Furthermore, the distribution of the P2Y1 transcript and the [35S]2'-deoxy 5'-O-(1-thio) ATP binding sites matched in a number of the regions and structures mentioned above. The present study clarifies the anatomical distribution of the P2Y1 receptor within the chick brain. Its broad distribution coupled with its neuronal expression suggest an important role for this type of metabotropic nucleotide receptor within the brain.

Animals↗