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Expression of Na+/myo-inositol cotransporter mRNA in normal and hypertonic stress rat eyes.

We studied the localization of Na+/myo-inositol cotransporter (SMIT) mRNA in normal and hypertonic stress rat eyes by in situ hybridization histochemistry using cRNA probes. SMIT mRNA signals were observed in the iris-ciliary body, the lens epithelial cells, and the ganglion cell layer and the inner nuclear layer of the retina. There was a rapid increase on SMIT mRNA in the retina of hypertonic stress rats compared with control rats. These findings suggest that Na+/myo-inositol cotransporter gene expression is osmotically regulated in vivo to protect retinal neuronal function against hypertonic stress.

Animals↗

Detection of mRNA encoding crustacean hyperglycemic hormone (CHH) in the eyestalk of the crayfish Orconectes limosus using non-radioactive in situ hybridization.

A non-radioactive in situ hybridization procedure for the localization of the mRNA encoding the crustacean hyperglycemic hormone (CHH) in the eyestalk of the crayfish Orconectes limosus has been developed. Based on the partial amino acid sequence of CHH, polymerase chain reactions were performed to generate complementary DNA (cDNA) clones encoding CHH. Non-radioactively labelled probes derived from the cDNA sequence were used to establish suitable conditions in terms of tissue fixation and pretreatment for detection of the CHH-encoding mRNA in combination with an immunocytochemical staining using a polyclonal antibody for CHH. Localization of the mRNA in the CHH perikarya was obtained with a complementary RNA probe in combination with pepsin/HCl treated Bouin-fixed eyestalks. The immunocytochemical staining confirmed that this cRNA probe specifically hybridized with mRNA of cell somata belonging to the CHH-producing cell system in the eyestalk of Orconectes limosus.

Amino Acid Sequence↗

Neuropeptide Y mRNA regulation in rat sympathetic ganglia: effect of reserpine.

To study the mechanism underlying trans-synaptic neuropeptide regulation, mRNA levels of neuropeptide Y were examined in the rat stellate and superior cervical ganglia using a specific neuropeptide Y cRNA probe. Basal levels of neuropeptide Y mRNA were detectable in total RNA extracts from single ganglia. Reserpine induced a large rise in ganglion neuropeptide Y mRNA. Decentralization prevented the increase of neuropeptide Y mRNA content in the ganglia. This suggests that the reserpine induced increase in neuropeptide Y mRNA was dependent on transsynaptic stimulation. Consequently, neuropeptide mRNA levels in sympathetic ganglia may be under the control of preganglionic impulse flow.

Autonomic Fibers, Preganglionic↗

In vitro expression of the 15 kDa subunit of the mediatophore and functional reconstitution of acetylcholine release.

The mediatophore is a presynaptic oligomeric protein purified from the presynaptic plasma membrane of Torpedo synaptosomes on the basis of its ability to mediate a calcium-dependent acetylcholine release when solubilized and reconstituted into proteoliposomes. We investigated the ACh translocating activity of the 15 kDa proteolipid subunit of the mediatophore when expressed in Xenopus oocytes and reconstituted into proteoliposomes loaded with ACh. 1. A calcium-dependent ACh translocation was observed when oocytes were injected with polyadenylated mRNAs extracted from the electric lobe of the Torpedo brain or with an in vitro transcribed RNA encoding the 15 kDa subunit. 2. No release response was obtained when oocytes were non-injected or injected with Torpedo liver mRNAs. 3. This ACh translocation mechanism showed calcium-dependent activation and desensitisation and was inhibited by cetiedil, sharing these properties with the release of ACh observed at the synapse. 4. The ACh translocating activity of an N terminal deleted mediatophore 15 kDa subunit was strongly reduced and the deleted proteolipid appeared less sensitive to the action of cetiedil (alpha-cyclohexyl-alpha-(3-thienyl)-acetate of perhydroazepinyl-alpha-ethyl citrate monohydrate). 5. A significant ACh release response was observed when the 15 kDa proteolipid of the H(+)-ATPase from bovine chromaffin granules was tested. 6. These results show that this ACh translocating activity could be induced in the oocyte membranes by the expression of the 15 kDa subunit alone.

Acetylcholine↗

Pattern and time course of immediate early gene expression in rat brain following acute stress.

The pattern and time course of brain activation in response to acute swim and restraint stress were examined in the rat by in situ hybridization using complementary RNA probes specific for transcripts encoding the products of the immediate early genes c-fos, c-jun and zif/268. A widespread pattern of c-fos messenger RNA expression was detected in response to these stressors; surprisingly, the expression patterns were substantially similar following both swim and restraint stress. A dramatic induction of c-fos messenger RNA was observed in numerous neo- and allocortical regions, the lateral septal nucleus, the hypothalamic paraventricular and dorsomedial nuclei, the anterior hypothalamic area, the lateral portion of the retrochiasmatic area, the medial and cortical amygdaloid nuclei, the periaqueductal gray, and the locus coeruleus; however, a prominent induction of c-fos was also seen in numerous additional subcortical and brainstem regions. Although not as widely expressed in response to stress as c-fos, induction of zif/268 messenger RNA was also detected throughout many brain areas; these regions were largely similar to those in which c-fos was induced, although in a number of regions zif/268 was expressed in regions devoid of c-fos messenger RNA. Few brain areas showed increased expression of c-jun following stress; these regions also showed induction of c-fos and/or zif/268. The time courses of expression of all three immediate early genes were similar, with peak levels observed at the 30 or 60 min time point, and a markedly reduced signal evident at 120 min post-stress. However, in a number of cases a delayed and/or prolonged induction was noted that may be indicative of secondary neuronal activation. A number of recent studies have attempted to define neural pathways which convey stress-related information to the hypothalamic-pituitary-adrenal axis. The present results reveal a widespread pattern of neuronal activation in response to acute swim or restraint stress. These findings may aid in the identification of stress-specific neural circuits and are thus likely to have important implications for our understanding of neuronal regulation of the stress response.

Animals↗

Phenotypical characterization of neurons expressing the dopamine D3 receptor in the rat brain.

We have established the cellular distribution of the dopamine D3 receptor using tritiated 7-hydroxy-N-N-di-n-propyl-2-aminotetralin and a complementary RNA probe to visualize autoradiographically the protein in binding studies and the gene transcripts by in situ hybridization, respectively. Studies with these two markers confirm the restricted expression of the D3 receptor in few brain areas, i.e. mainly the ventral striatal complex, the substantia nigra-ventral tegmental area and the cerebellum. In nucleus accumbens, the D3 receptor was mainly expressed in medium-sized neurons of the rostral pole and ventromedial shell subdivisions, but not of the core or septal pole, i.e. accumbal subdivisions expressing the D2 receptor. In the ventromedial shell, about 60% of the D3 receptor-expressing neurons were neurotensin neurons, presumably projecting to the ventral pallidum. In the islands of Calleja, both D3 receptor binding and messenger RNA were abundant in the entire population of granule cells. These cells are known to make sparse contacts with dopaminergic axons and also to express the D1 receptor. In the mesencephalon, low levels of D3 messenger RNA were detected in few dopamine neurons of substantia nigra pars lateralis and ventral tegmental area. In addition, some D3 receptor binding but not messenger RNA was detected in medial substantia nigra and lateral ventral tegmental area, where the receptor is presumably located presynaptically on afferents. In the archicerebellum, Purkinje cell perikarya in lobules 9 and 10 expressed the D3 receptor messenger RNA, whereas binding sites were found in the molecular layer, where corresponding dendrites but no known dopaminergic projection from mesencephalon are found. The occurrence of D3 receptor gene expression in some brain areas receiving low dopamine innervation supports the hypothesis that this receptor may mediate non-synaptic actions of dopamine.

Animals↗

Differential regulation of catalytic and non-catalytic trkB messenger RNAs in the rat hippocampus following seizures induced by systemic administration of kainate.

Ribonuclease protection analysis and quantitative in situ hybridization histochemistry were used to investigate the coordination and regional expression of catalytic and non-catalytic trkB messenger RNAs in the adult rat hippocampus following systemic kainate-induced seizures. Changes in trkB expression were compared with the messenger RNA expression of its neurotrophic ligands, brain-derived neurotrophic factor and neurotrophin-3. TrkB messenger RNA expression was increased in the dentate granule cells at 1-4 h following the onset of seizures, and returned to control levels 16-24 h thereafter. In addition, seizures also induced expression of trkB messenger RNA in putative non-neuronal cells at four to seven days in the molecular layer of the dentate gyrus and the stratum lacunosum moleculare of the CA1 region. Hybridization with probes specific for the non-catalytic trkB receptor and the catalytic trkB receptor revealed that the increases at four and seven days in the molecular layers of the hippocampus reflected an up-regulation of only the non-catalytic form of the receptor. Furthermore, the neuronal increases observed 1-4 h were due to an up-regulation of both trkB TK- and trkB TK+ messenger RNAs. It was established that systemic administration of kainate increased brain-derived neurotrophic factor messenger RNA levels in the pyramidal and granule cell regions of the hippocampus 1-4 h following the onset of behaviorally manifested seizure activity. Early changes in neuronal expression of trkB TK- and trkB TK+ messenger RNA paralleled changes in brain-derived neurotrophic factor messenger RNA in the dentate granule cell and CA1 pyramidal cell layers, but not in the CA3 subregion. These data suggest that concomitant regulation of brain-derived neurotrophic factor and its cognate receptor may play a role in the selective vulnerability of hippocampal subregions to kainate-induced neuropathology. Furthermore, these data suggest a dual function for trkB receptor expression in the hippocampus following kainate-induced seizures, possibly related to both the plastic and degenerative consequences of seizure induction by kainate.

Animals↗

Expression of the glutamate transporter GLT1 in neural cells of the rat central nervous system: non-radioactive in situ hybridization and comparative immunocytochemistry.

Non-radioactive in situ hybridization using complementary RNA and oligonucleotide probes was applied in order to clearly identify the cell types expressing GLT1 and to show their regional distribution in the central nervous system of the rat. The results were compared with immunocytochemical data achieved using an antibody against a synthetic GLT1 peptide. The study showed that GLT1 was expressed in astrocytes and Bergmann glia which were identified by the detection of an astrocytic marker protein. Additionally, subsets of neurons in different brain regions (e.g., CA3/4 pyramidal cells of the hippocampus, endopiriform nucleus) were labelled by in situ hybridization. In other cell types of the central nervous system (oligodendrocytes, ependymal cells, epithelal cells of the choroid plexus, tanycytes), GLT1 expression was not detectable. The generally dense astrocytic immunolabelling of the gray matter of the brain showed an even higher intensity in regions reported to show high glutamatergic activity and astrocytic glutamate metabolism (e.g., the termination field of the glutamatergic perforant path in the hippocampus). On the basis of the cellular regional distribution of the GLT1 messenger RNA and protein demonstrated in the present study, it is reasonable to assume that this high affinity transporter is of importance for the maintenance of adequate extraneuronal glutamate levels.

ATP-Binding Cassette Transporters↗

Expression of the D3 dopamine receptor in peptidergic neurons of the nucleus accumbens: comparison with the D1 and D2 dopamine receptors.

The D3 dopamine receptor, belonging to the D2-like receptor subfamily, displays both specific pharmacology and a unique pattern of expression, especially compared to the D1 and D2 receptors. A rat D3 complementary RNA probe labelled with [35S]UTP was used to map the neurons expressing the D3 receptor gene in the rat brain. In particular, we identified the phenotype of the neurons containing D3 messenger. RNA in the nucleus accumbens, with respect to the striatal segregated populations of enkephalin and substance P neurons, by using strategies of double in situ hybridization. In addition, comparison with D1 and D2 receptor gene expression was performed to study the potential co-localization of several dopamine receptors within the same neurons in the ventral striatum. The highest level of D3 messenger RNA was detected in the islands of Calleja and the nucleus accumbens. Other areas such as the caudate-putamen, some hypothalamic, thalamic and cortical areas and lobule 10 of the cerebellum also contained low but significant levels of D3 messenger RNA. Our results demonstrate that the D3 receptor is co-expressed either with D1 or with D2 receptor, both in the core and shell regions, in a subpopulation of substance P and enkephalin neurons, respectively. They also suggest that a significant part of the accumbal neurons only express either D1 or D2, without co-expression with the D3 receptor. These data imply that dopamine in the nucleus accumbens may act on each population of efferent neurons via the co-expression of two distinct dopamine receptors (D1+D3 or D2+D3), and that synergistic D1-like/D2-like effects may occur at the level of a single neuron, through the co-expression of D1 and D3 receptors in a significant proportion of substance P neurons (16% or 26% in the core and shell regions, respectively.

Animals↗

New vectors for rapid sequencing of DNA fragments by chemical degradation.

Nucleotide sequencing by the chemical degradation method requires the labeling of a single nucleotide at the 3' or 5' terminus of the fragment to be sequenced. In the present report, I described the construction of two new sequencing plasmids, pSP64CS and pSP65CS, which are ideally suited for use when sequencing a nested set of deletion fragments by the chemical degradation method. Plasmids pSP64CS and pSP65CS contain the sequencing element derived from pGV403 required for specific labeling of individual 3' ends, and the polylinker site derived from pSP64 or pSP65, respectively. The plasmids also retain the SP6 promoter element which allows for the efficient in vitro synthesis of complementary RNA. Any DNA fragment having a blunt end and a second end which is any of the following restriction sites, HindIII, PstI, SalI, AccI, XbaI, BamHI, SacI, BstEII or EcoRI, can be directionally sequenced in these plasmids. Fragments having two blunt ends can also be sequenced. pSP64CS and pSP65CS differ only in the orientation of the polylinker/sequencing element relative to the SP6 promoter.

Base Sequence↗

Nucleotide sequence and transcriptional analysis of a third function (Flm) involved in F-plasmid maintenance.

The leading region of the conjugative F plasmid encodes for a function, Flm, capable of extending the maintenance of normally unstable plasmids. Nucleotide sequencing and functional studies of flm locus have shown that it consists of at least two genes, flmA and flmB, which are physically and functionally homologous to hok and sok of parB in plasmid R1. The 52-amino acid flmA-coded polypeptide is almost identical to the hok product which has been shown to be a membrane-associated lethal protein [Gerdes et al., EMBO J. 5 (1986) 2023-2029]. Gene flmB codes for a 100 nucleotide, non-translated, complementary RNA which overlaps the 5' leader sequence of the flmA RNA. The flmA RNA also encodes an open reading frame (ORF70) which overlaps the flmA-coding sequence and may be a third gene involved in the Flm function. S1 analysis and functional studies suggest that the antisense flmB RNA binds to the flmA RNA and suppresses the expression of the lethal product, presumably by blocking coupled translation of ORF70 and flmA. Secondary structure analysis predicts that the flmA RNA is extremely stable compared to the regulatory flmB RNA. We suggest that when these RNA species are retained by cells which have lost the F plasmid, the more stable flmA RNA will eventually be translated thus leading to cell death. This phenomenon provides a third mechanism, additional to ParFIA and Ccd functions, to ensure maintenance of the F plasmid in a growing bacterial population.

Base Sequence↗

A solution hybridization method for quantification of mRNAs: determining the amount and stability of oncogene mRNA.

A solution hybridization method for the quantification of specific mRNAs is described. This assay utilizes complementary RNA probes prepared by in vitro transcription, sandwich hybridization in solution, and affinity-based hybrid collection. The possibility of using this method for crude biological samples without purifying mRNAs makes it ideal when accurate quantification of multiple samples is needed. Human N-myc oncogene transcript was used as a model and as little as 0.24 pg (2 X 10(5) molecules) of N-myc mRNA could be detected. Using this assay it was shown that human neuroblastoma IMR-32 cells contain approximately 500 N-myc mRNA molecules per cell having a half-life of approximately 35 min.

DNA Probes↗

Immunoautoradiographic and in situ hybridization analysis of corticotropin-releasing hormone biosynthesis in the hypothalamic paraventricular nucleus.

Corticotropin-releasing hormone (CRH) gene transcription and mRNA expression are keyed to stimuli activating the pituitary-adrenocortical axis, suggesting a connection between neuronal activation and synthesis of active peptide. However, the relationship between CRH mRNA and levels of CRH peptide remains to be definitively established. The present report characterizes an immunoautoradiographic (IAR) strategy to assess CRH peptide expression in an anatomical context. Non-fixed tissue sections through the rat hypothalamus were reacted with a primary antibody against rat CRH, followed by incubation with [35S] or [125I] labeled secondary antibody. Autoradiography performed on reacted sections revealed that CRH immunoreactivity could be detected in CRH-containing regions of the hypothalamus and amygdala. Generation of CRH signal was blocked by preabsorption of primary antibody with CRH peptide, demonstrating antibody specificity. IAR performed on nitrocellulose blotted with synthetic CRH peptide revealed a linear relationship between peptide quantity and intensity of autoradiographic signal, verifying that this method is appropriate for semi-quantitative analysis of CRH peptide regulation. Assessment of CRH peptide regulation revealed a significant increase in CRH content in adrenalectomized rats (ADX) relative to sham-adrenalectomized (SHAM) controls (196%). In situ hybridization performed on adjacent sections revealed a similar increase in CRH mRNA expression in ADX rats (256%), and a significant correlation between CRH peptide and mRNA measures (r = 0.68). No ADX induced changes were seen in median eminence, dorsomedial hypothalamus or central amygdaloid nucleus. The results of this study indicate that CRH biosynthesis appears to be driven by amount of available mRNA, rather than changes in translational efficacy. In addition, the IAR technique appears ideally suited to allow concomitant assessment of mRNA and protein expression within defined populations of CNS neurons.

Adrenalectomy↗

In situ hybridization shows increased endothelin-1 mRNA levels in endothelial cells of blood vessels of deoxycorticosterone acetate-salt hypertensive rats.

Endothelin-1 is a potent vasoconstrictor peptide produced in blood vessels and other tissues that may play an important role in the control of local blood flow and could be involved in the pathogenesis of hypertension. Our previous studies have documented increases in endothelin-1 peptide content and gene expression in mesenteric arteries and thoracic aorta of deoxycorticosterone acetate (DOCA)-salt hypertensive rats. Although changes in endothelin-1 were observed in the blood vessels of hypertensive rats, the exact cellular sites of these changes were not identified clearly. In the present study we investigated endothelin-1 gene expression in DOCA-salt hypertensive rats by in situ hybridization histochemistry using a high specific activity 35S-labeled complementary RNA probe. Robust increases in endothelin-1 mRNA levels were observed in both mesenteric blood vessels and aorta of DOCA-salt hypertensive rats as compared with the vessels from the uninephrectomized control rats. In both cases it was shown clearly that these increased endothelin-1 mRNA levels only originated in the endothelial cell layer, not in the underlying smooth muscle cells. Higher expression levels of endothelin-1 mRNA by the endothelial cells of DOCA-salt hypertensive rats may play an important role in vascular hypertrophy and in the maintenance of elevated blood pressure in this and perhaps other models of experimental hypertension.

Animals↗

Adipocyte alpha 2A-adrenoceptor is the only alpha 2-adrenoceptor regulated by testosterone.

The effects of chronic administration of testosterone on alpha 2-adrenoceptor expression in male hamsters were investigated in order to explore the selectivity of testosterone regulation towards the alpha 2-adrenoceptor subtypes. A homogeneous population of alpha 2-adrenoceptors was identified with [3H]RX821002 binding in adipocytes, colocytes and liver, whereas the alpha 2-adrenoceptor sites identified in kidney and brain were heterogeneous. Competition studies with alpha 2-adrenoceptor ligands characterized the presence of the alpha 2A-adrenoceptor subtype in adipocytes, colocytes, kidney and brain homogenates and of the alpha 2B-adrenoceptor subtype in kidney and liver. RNase protection assay with a selective hamster alpha 2A-adrenoceptor cRNA probe confirmed the expression of alpha 2A-adrenoceptor mRNA in adipocytes, colocytes, kidney and brain. Testosterone treatment did not modify the alpha 2-adrenoceptor densities whatever the subtype, except for the adipocyte alpha 2A-adrenoceptor, which was significantly increased. These results demonstrate that testosterone only up-regulates the adipocyte alpha 2A-adrenoceptor.

Adipocytes↗

Oligonucleotide analogues containing 4'-C-(hydroxymethyl)uridine: synthesis, evaluation and mass spectrometric analysis.

2',3'-Di-O-tert-butyldimethylsilyl-4'-C-(hydroxymethyl)uridine was synthesized and converted into the phosphoramidite building blocks 9 and 13. Novel oligodeoxynucleotide analogues containing 4'-C-hydroxymethyl linked phosphodiester internucleoside linkages and 3'-hydroxyl linked phosphodiester internucleotide linkages were synthesized on an automated DNA-synthesizer. The latter modification introduced an additional 4'-C-hydroxymethyl functionality. Oligodeoxynucleotides with one or two modifications in the middle or in the ends of 17-mers, 15-mers and 14-mers have been evaluated with respect to hybridization properties and enzymatic stability. Compared to unmodified oligomers, 3'-end-modified oligodeoxynucleotides were stabilized towards 3'-exonucleolytic degradation, but showed moderately to strongly lowered hybridization properties towards complementary DNA. However, more promising results were obtained in melting experiments with complementary RNA where only small decreases in melting temperature were detected. Matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) was used to identify products from syntheses of the modified oligodeoxynucleotide analogues.

Base Sequence↗

Hybrid oligonucleotides: synthesis, biophysical properties, stability studies, and biological activity.

We have designed and synthesized hybrid oligonucleotides 2-5, as analogues of oligodeoxynucleoside phosphorothioates, in an effort to have agents with improved 'antisense activity' with reduced phosphorothioate content. The hybrid oligonucleotides contain segments of 2'-O-methyl ribonucleoside phosphoric diesters and oligodeoxynucleoside phosphorothioates. Thus, compared with the 'all' phosphorothioate analogues 1 and 6, the analogues 2-5 showed significantly reduced effect on complement activation. In addition, thermal denaturation studies with complementary RNA revealed that the analogues 2-5 had higher Tm compared with that with oligodeoxynucleoside phosphorothioates. Additionally, the RNA component of the oligo/ RNA duplex is efficiently cleaved by RNase H, the site of endonucleolytic cleavage being dictated by the length of the oligodeoxynucleoside phosphorothioate segment.

Anti-HIV Agents↗