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N Aronin

Publications and source records attributed to N Aronin.

At least 55 records · Page 3Linked to original sources

Immunoreactive calcium-binding protein (calbindin-D28k) in interneurons and trigeminothalamic neurons of the rat nucleus caudalis localized with peroxidase and immunogold methods.

Calbindin-D28k is a highly abundant protein found in neurons in selected brain regions, including cells in sensory systems of the brainstem. Because of its capacity to bind cytosolic Ca++, calbindin-D28k is thought to contribute to the regulation of compartmental Ca++ concentrations in neurons. In this study of the rat spinal trigeminal nucleus, calbindin-D28k was localized with immunoperoxidase and immunogold methods. Results showed that immunoreactive calbindin-D28k neurons were widely distributed to all regions of the nucleus, but were particularly numerous in the substantia gelatinosa. Some trigemino-thalamic neurons that were identified by retrograde labeling of a conjugated wheat-germ agglutinin with horseradish peroxidase also contained calbindin-D28k immunoreactivity. Most of the calbindin-D28k labeling was found in cell bodies and dendrites. Axon terminals were rarely stained. More discrete labeling with a gold-conjugated second antibody showed that the predominant site of calbindin-D28k was the matrix of the cytoplasm. Gold label was also heavily associated with euchromatin within nuclei. These findings show that immunoreactive calbindin-D28k is localized to both interneurons and projecting neurons of the spinal trigeminal nucleus. Many of these cells are likely to receive glutamatergic afferent inputs, which may act in part by increasing Ca++ flux into the neurons. Calbindin-D28k has a high capacity for buffering Ca++ and under some conditions may protect neurons against glutamate-induced excitotoxicity. We speculate that calbindin-D28k may function to regulate calcium concentrations in spinal trigeminal neurons.

Animals↗

N-methyl-D-aspartate receptor activation in the neostriatum increases c-fos and fos-related antigens selectively in medium-sized neurons.

In the neostriatum a selective loss of neurons occurs following exposure to N-methyl-D-aspartate receptor agonists. One hypothesis emerging from this observation is that an excitotoxic process via N-methyl-D-aspartate receptors may contribute to the pathogenesis of Huntington's disease, which is characterized by the loss of medium-sized neurons. However, whether there is a selective distribution of N-methyl-D-aspartate receptors in specific populations of neostriatal neurons is unknown. In this study the expression of c-fos mRNA and protein was used to examine the response of neostriatal cells to N-methyl-D-aspartate receptor stimulation in the rat. After intrastriatal injection of the N-methyl-D-aspartate receptor agonist, quinolinic acid, an increase in c-fos mRNA concentrations was detected using in situ hybridization and Northern blot analysis. Western blot analysis showed that not only the c-Fos mRNA protein product but also other Fos-related antigens capable of binding to DNA were increased in response to N-methyl-D-aspartate receptor activation. The selectivity of the neuronal response to N-methyl-D-aspartate receptor activation was examined immunohistochemically at the light and ultrastructural levels. Our results indicate that N-methyl-D-aspartate receptor activation by quinolinic acid stimulates medium spiny neurons to increase c-Fos expression; to a lesser extent, medium aspiny interneurons and glial cells also respond. In contrast, negligible change in c-Fos expression is observed in large neurons. These results are consistent with other evidence that medium-sized spiny neurons are preferentially vulnerable to the toxic effects of excitatory amino acids acting at N-methyl-D-aspartate receptors. An additional implication of these findings is that activation of the N-methyl-D-aspartate receptor in medium spiny neurons leads to increased expression of candidate AP-1 transcription factors, thereby coupling the N-methyl-D-aspartate receptor and regulation of gene expression in signal transduction processes of the neostriatal medium spiny neuron.

Animals↗

Transient myocardial perfusion abnormalities in diabetic patients: a prospective study using thallium exercise tolerance testing.

To determine whether diabetic patients without known cardiovascular disease have exercise-induced perfusion abnormalities without symptoms, we performed thallium-201 exercise tolerance testing (ETT) on 16 subjects with diabetes mellitus (8 men and 8 women; mean age = 51 +/- 2 years). To compare these patients to another group at risk for coronary disease and painless myocardial infarction, 13 hypertensive (7 men and 6 women; mean age = 50 +/- 2 years) patients without symptoms of atherosclerotic disease served as controls. Diabetic and hypertensive patients were similar with regard to age, sex, years since diagnosis and other cardiac risk factors. Abnormal exercise thallium testing was more common among diabetic patients (11/16 = 69%; p less than 0.05) as compared to hypertensive patients (4/13 = 31%). None of the patients reported chest pain or its equivalent. There was no difference between diabetic and hypertensive subjects in the number of minutes exercised, percentage of maximal heart rate attained or final heart rate achieved. Diabetic subjects as a group had greater evidence of peripheral neuropathy but no abnormality of autonomic nerve function. Using ETT with thallium scintigraphy, diabetic patients without known cardiovascular disease were more likely to have transient myocardial perfusion defects than were hypertensive patients.

Adult↗

Synaptic interactions between GABAergic neurons and trigeminothalamic cells in the rat trigeminal nucleus caudalis.

Synaptic interactions between GABAergic neurons and thalamic projecting cells within the trigeminal nucleus caudalis were examined using a combined method of GABA immunohistochemistry and retrograde WGA-HRP labeling of the trigeminothalamic pathway. Results showed that GABA-positive neurons and projecting cells were separate but closely intermingled within the spinal trigeminal nucleus. GABAergic axon terminals formed symmetric synaptic connections with the cell bodies and dendrites of trigeminothalamic neurons. In turn, some WGA-HRP filled axon terminals, presumed to originate from axon collaterals of the projecting neurons, formed synaptic connections with GABA containing neurons. The results suggest that in the spinal trigeminal nucleus there is a reciprocal modulation between GABA neurons and trigeminothalamic cells.

Animals↗

Light regulates expression of a Fos-related protein in rat suprachiasmatic nuclei.

Mammalian circadian rhythmicity is endogenously generated by a pacemaker in the suprachiasmatic nuclei and precisely entrained to the 24-hr day/night cycle by periodic environmental light cues. We show that light alters the immunoreactive levels of a transcriptional regulatory protein, Fos, in the suprachiasmatic nuclei of albino rats. Photic regulation of Fos immunoreactivity does not occur in other retino-recipient brain areas except for the intergeniculate leaflet, which appears to be involved in mediating some of the complex effects of light on expressed circadian rhythms. Our results point to a promising new functional marker for the cellular effects of light and suggest that the expression of Fos or a related nuclear protein may be part of the mechanism for photic entrainment of the circadian clock to environmental light/dark cycles.

Animals↗

Coordinate occupancy of AP-1 sites in the vitamin D-responsive and CCAAT box elements by Fos-Jun in the osteocalcin gene: model for phenotype suppression of transcription.

Osteocalcin, a bone-specific protein and marker of the mature osteoblast, is expressed only in nonproliferating osteoblasts in a mineralizing extracellular matrix, while type I collagen is expressed in proliferating cells. The nuclear proteins encoded by the c-fos and c-jun protooncogenes are expressed during the proliferation period of osteoblast phenotype development. We present evidence that AP-1 (HeLa cell-activating protein 1) sites residing within two promoter elements of the osteocalcin gene bind the Fos-Jun protein complex: the osteocalcin box (OC box; nucleotides -99 to -76), which contains a CCAAT motif as a central element and influences tissue-specific basal levels of osteocalcin gene transcription, and the vitamin D-responsive element (VDRE; nucleotides -462 to -440), which mediates enhancement of osteocalcin gene transcription. Gel electrophoretic mobility-shift analysis demonstrated high AP-1 binding activity in proliferating osteoblasts and dramatic changes in this activity after the down-regulation of proliferation and the initiation of extracellular-matrix mineralization in primary cultures of normal diploid osteoblasts. Methylation interference analysis established at single nucleotide resolution that purified recombinant Fos and Jun proteins bind in a sequence-specific manner to the AP-1 sites within the VDRE and OC box. Similarly, an AP-1 motif within a putative VDRE of the alkaline phosphatase gene, which is also expressed after the completion of proliferation, binds the Fos-Jun complex. These results support a model in which coordinate occupancy of the AP-1 sites in the VDRE and OC box in proliferating osteoblasts may suppress both basal level and vitamin D-enhanced osteocalcin gene transcription as well as transcription of other genes associated with osteoblast differentiation--a phenomenon we describe as phenotype suppression. This model is further supported by binding of the Fos-Jun complex at an AP-1 site in the type alpha I collagen promoter that is contiguous with, but not overlapping, the VDRE. Such a sequence organization in the collagen VDRE motif is compatible with vitamin D modulation of collagen but not with osteocalcin and alkaline phosphatase expression in proliferating osteoblasts.

Animals↗

Fluorescent and biotin probes for dopamine receptors: D1 and D2 receptor affinity and selectivity.

Fluorophor and biotin derivatives of dopamine agonist and antagonist drugs were synthesized and evaluated for binding affinity and selectivity at D1 and D2 dopamine receptors in membranes prepared from monkey (Macaca fascicularis) caudate putamen. Binding was measured using [3H]SCH 23390 to label D1 receptors and [3H]spiperone to label D2 receptors. The selective D1 antagonist SKF 83566, whether coupled to 7-nitrobenz-2-oxa-1,3-diazole-4-yl (NBD), to fluorescein, or to biotin retained high affinity for D1 dopamine receptors (Ki, 5.3 16 and 3.5 nM, respectively) and high D1/D2 receptor selectivity (130-, 300, and 600-fold, respectively). The selective D2 antagonist derivative N-(p-aminophenethyl)spiperone, (NAPS) coupled either to biotin or to NBD via the N-aminoethylphenyl group, likewise retained high D2 receptor affinity (Ki, 0.58 and 0.66 nM, respectively) and high D2/D1 selectivity (190- and 150-fold, respectively). The affinity of the NBD-coupled derivative of (S)-2-(N-phenylethyl-N-propyl)-amino-5-hydroxytetralin hydrochloride [(S)-PPHT], a selective D2 agonist, was actually higher than that of the parent compound (Ki, 0.30 versus 2.1 nM), whereas the affinity of fluorescein-coupled (S)-PPHT was lower (Ki, 4.8 nM). Sensitivity to GTP, a characteristic of agonist binding at dopamine receptors, was demonstrated for NBD-coupled (S)-PPHT, because D2 receptor affinity was somewhat reduced in the presence of GTP. PPHT-fluorescein fluorescence labeling rimmed cells in monkey and rat anterior pituitary and outlined cells in the striatum. Fluorescent and biotin probes based on selective high affinity ligands for dopamine receptors may expedite studies of receptor localization and mobility at the cellular level.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Ultrastructural localization of immunoreactive calbindin-D28k in the rat and monkey basal ganglia, including subcellular distribution with colloidal gold labeling.

Normal cellular function depends on the controlled flux of Ca++ within intracellular compartments and across the plasma membrane. Proteins that bind Ca++ are thought to contribute to the regulation of intracellular Ca++ and, perhaps more importantly, signal functional changes in cell activity. In the brain, calbindin-D28k is among a class of calcium-binding proteins that are widely and heterogeneously distributed in select populations of neurons, among them neostriatal cells, but whose function is largely unknown. In this study of the monkey and rat neostriatum and globus pallidus, calbindin-D28k was localized with immunoperoxidase and immunogold methods in order to identify striatal cell populations that contain this protein and the subcellular compartments in which it is likely to function. Light and electron microscopy showed intense and extensive labeling of immunoreactive calbindin-D28k in the cell bodies, dendrites, and spines of medium-sized neostriatal spiny neurons and in their axon terminals which end in the globus pallidus. More discrete labeling with a gold-conjugated second antibody showed that the predominant site of calbindin-D28k was the matrix of the cytoplasm. Gold label was also associated with the karyoplasm of spiny cells and with the neurofilaments and axoplasmic matrix of striatopallidal axons and terminals, respectively. Membranes were either sparsely labeled (endoplasmic reticulum, mitochondria) or devoid of gold particles (nuclear envelope and plasmalemma). Radioimmunoassays of striatal subcellular fractions supported the anatomical findings by indicating that the soluble fractions of neostriatal tissue homogenates contained most of the calbindin-D28k immunoreactivity and that washes from forebrain synaptosomes treated with Triton X-100 yielded high levels of immunoreactive calbindin-D28k. These findings show that immunoreactive calbindin-D28k is localized to spiny neurons of the striatopallidal pathway and are consistent with previous observations on subcellular localization in nonneuronal tissues. If, as recently speculated, calbindin-D28k regulates calcium concentrations in neostriatal spiny neurons, this feature may be particularly involved with the high density of glutamatergic inputs to these cells. More work is needed to determine whether calbindin-D28k, when complexed to Ca++ in neostriatal spiny cells, signals the activation of protein kinases, phosphorylation, and/or neurotransmitter release, as has been shown for other Ca++-binding proteins in mammalian tissues.

Animals↗

Hypothyroidism increases substance P concentrations in the heterotopic anterior pituitary.

The regulatory effects of thyroid hormone on adenohypophysial substance P (SP) were studied in heterotopically implanted anterior pituitaries. Three or four anterior pituitaries from 21-day-old rat pups were implanted under the renal capsule in 175- to 200-g adult rats. The donor and recipient animals were sex matched. One week after implantation, animals were thyroidectomized or sham operated. A separate group of animals received daily T4 treatment (1.5 g/100 g, ip). After 2 weeks, the native and heterotopic pituitaries were assayed for SP, TSH, PRL, and LH. Thyroidectomy resulted in a 3- to 10-fold increase in the SP concentration in both the heterotopic and native pituitaries compared to euthyroid values. T4 treatment suppressed the SP levels in the heterotopic pituitaries of the thyroidectomized rats. In contrast to the reduction of TSH concentrations in native pituitaries in thyroidectomized animals vs. controls, TSH concentrations in the heterotopic pituitaries of thyroidectomized rats were approximately 10 times greater than those in euthyroid animals. PRL concentrations were unaffected by hypothyroidism in native and heterotopic pituitaries. Thyroidectomy resulted in a decrease in LH concentrations in the native anterior pituitary, without affecting LH concentrations in the implanted pituitary. These findings indicate that a direct link from the hypothalamus to the anterior pituitary is not required for the pituitary SP response to hypothyroidism.

Animals↗

A Golgi study of the monkey paraventricular nucleus: neuronal types, afferent and efferent fibers.

The neuronal organization of the paraventricular nucleus (PVN) was examined in Golgi impregnations of adult monkey. Results showed that at least six types of neurons could be identified in the nucleus on the basis of morphological features of the somata, dendrites, and axons. Four types of neurons with sparse to densely spined cell bodies and dendrites exhibited long axons and included large neurons (types I and II), medium-sized to large neurons (type III), and small to medium-sized cells (type IV). Axons of type I, III, and IV neurons had different diameters and were followed out of the PVN. Axon collaterals that arborized within the PVN were seen on the axons of types III and IV cells. Two types of interneurons with small somata were also found. One (type V) exhibited varicose dendrites and a profusely arborizing local axon. The other cell (type VI) had recurved dendrites with long appendages and no impregnated axon. Afferent fibers were also identified. Type 1 was a fine-caliber axon that coursed long distances in the PVN and exhibited numerous short branches. Additional observations suggested that type 1 afferents originated from the stria terminalis. The other afferent axon (type 2) was thicker and gave rise to terminal arborizations containing clusters of small swellings. The efferent fibers of the PVN were also examined in impregnations of the paraventriculosupraopticohypophysial tract. Fibers formed an extensive plexus as they coursed ventrally and passed through the lateral hypothalamus. Axons coursing more laterally in the tract were much larger than those more medially located. Our findings show a diverse organization of neuronal types within the monkey PVN with evidence for intrinsic connections through axon collaterals of efferent neurons and the locally arborizing axons of interneurons. Correlations are proposed between morphological subtypes of neurons seen in this Golgi study and the known functional output pathways of the PVN.

Afferent Pathways↗

Frequency of painless myocardial ischemia during exercise tolerance testing in patients with and without diabetes mellitus.

To evaluate the frequency of painless myocardial ischemia, all patients with positive exercise tolerance test responses (at least 2 mm of ST depression) from 1983 to 1985 were examined. Of the 211 patients with exercise-induced ischemia, 101 (48%) did not have pain during the ischemic period; 26 (12%) had diabetes mellitus, 24 of whom (92%) had type II diabetes mellitus. Lack of pain was not correlated with age, gender, history of cigarette smoking, systemic hypertension, past acute myocardial infarction, coronary artery bypass grafting, use of beta-blocking or calcium-channel blocking drugs, number of narrowed coronary arteries or average calculated ejection fraction at cardiac catheterization. Patients with painless myocardial ischemia were less often taking nitrates (39% vs 55%, p less than 0.05) and reported prior episodes of chest pain less often (50% vs 82%, p less than 0.01) than control subjects. There was no difference in the frequency of painless myocardial ischemia between patients with and without diabetes mellitus (54% vs 47%). Duration of exercise was shorter in patients with diabetes mellitus and in patients who had pain with myocardial ischemia. No significant difference in age, gender, use of nitrates, beta-blocking or calcium-channel blocking drugs, history of myocardial infarction, angina pectoris or cigarette smoking was found between diabetic and nondiabetic patients. Systemic hypertension was more common in diabetic patients. Thus, painless myocardial ischemia is common in our patients with positive exercise tolerance test responses, but its frequency is similar in diabetic and nondiabetic patients.

Cardiac Catheterization↗

Diminished flare response in neuropathic diabetic patients. Comparison of effects of substance P, histamine, and capsaicin.

The flare response in skin largely depends on an intact primary sensory fiber, the C-fiber. We measured the flare response to the intradermal injection of substance P, histamine, and capsaicin in control subjects and in diabetic patients with and without clinically obvious polyneuropathy. The neuropathic diabetic patients had a reduced flare response to substance P, histamine, and capsaicin, compared with control and nonneuropathic diabetic subjects. The smaller flare response in the neuropathic diabetics after capsaicin administration suggested a dysfunction of the peripheral component of the C-fiber. Alternatively, dysfunction of the mast cell or vascular reactivity may contribute to the diminished flare. Because C-fibers participate in nociception in addition to the flare response, the findings of this study, by a method that permits a quantifiable measurement of the function of peripheral sensory neurons in diabetic subjects, has potential usefulness in evaluating sensory neuropathy in diabetic patients.

Capsaicin↗

Glutamic acid decarboxylase and enkephalin immunoreactive axon terminals in the rat neostriatum synapse with striatonigral neurons.

Synaptic interactions between striatal projection neurons and axon terminals containing immunoreactive glutamic acid decarboxylase (GAD) or Leu-enkephalin were examined in the rat neostriatum using a combined method of horseradish peroxidase retrograde transport from the substantia nigra and immunohistochemistry at the electron microscopic level. Results showed that numerous immunoreactive GAD and enkephalin boutons formed synapses with the cell bodies and dendrites of medium-sized striatonigral neurons. These findings demonstrate that within the neostriatum GABA and enkephalin directly influence caudate output pathways.

Animals↗

The differential effects of thyroid and gonadal hormones on substance P content in the anterior pituitary of the prepubertal rat.

The effects of thyroid and gonadal status on the content of substance P in the anterior pituitary (AP-SP) were examined in prepubertal rats. A sex difference in AP-SP is evident by age 50 days [males, 287 +/- 35 fmol/mg protein (mean +/- SE); females, 103 +/- 17; P less than 0.05], and this difference becomes greater by 75 days (males, 543 +/- 54; females, 146 +/- 11.5; P less than 0.01). Hypothyroidism was induced in male and female pups by giving lactating dams 0.1% methimazole (wt/vol) in their drinking water after parturition. There was a marked and significant increase in AP-SP in 21-day-old hypothyroid compared to euthyroid control pups. Male pups were made thyrotoxic by daily treatment with T4 (10 micrograms/rat, sc) from age 8 to 15 days. AP-SP was 4 times lower in the thyrotoxic than in the euthyroid pups (P less than 0.001). Rats ovariectomized at age 22 days and killed on day 35 revealed no change in AP-SP, in contrast to the rise in AP-SP in the ovariectomized adult rat. Female pups were treated with dihydrotestosterone (DHT; 50 micrograms/day) or testosterone (50 micrograms/day) from age 8-20 days. Neither androgen induced a change in AP-SP. Female pups which received estradiol (E2; 0.5 micrograms/day) or testosterone (75 micrograms/day) from age 8-20 days also had no change in AP-SP. As opposed to the lack of effect of E2 and DHT on AP-SP in female rats younger than 22 days, E2 (1 microgram/100 g BW daily) caused a decrease and DHT (100 micrograms/100 g BW daily) caused an increase in AP-SP in female rats treated from 22-35 days of age [E2, 91 +/- 6.9; DHT, 226 +/- 31 (P less than 0.05 vs. control for both); control, 154 +/- 13]. We conclude that the responsiveness of AP-SP to alterations in thyroid status is present at the youngest age studied. In contrast, the responsiveness of AP-SP to changes in the levels of gonadal steroids is absent in the infantile period and requires a maturational process that becomes evident during the juvenile state of sexual development.

Androgens↗

Quantitative electron microscopic study of immunoreactive somatostatin axons in the rat neostriatum.

Various features of immunoreactive somatostatin axons including bouton size, synaptic length, the type of synapse formed (symmetric or asymmetric) and postsynaptic target, were examined at the ultrastructural level in the caudate nucleus. These features were compared to those of unlabeled axons in the surrounding caudate neuropil. Results showed that immunoreactive somatostatin axons make relatively short-surfaced, symmetric contacts, mostly with dendritic shafts whereas the majority of unlabeled axons form long-surfaced, asymmetric synapses with dendritic spines. Observations indicate that immunoreactive somatostatin axons belong to a sparse and homogeneous population of axons, have features corresponding to those of intrinsic caudate neurons, and synapse with caudate spiny cells. These findings are consistent with earlier speculation that immunoreactive somatostatin axons in caudate arise from a population of aspiny interneurons which have previously been identified to contain the peptide.

Animals↗

Localization of immunoreactive enkephalins in GABA synthesizing neurons of the rat neostriatum.

The localization of immunoreactive glutamic acid decarboxylase (GAD) and enkephalin-like immunoreactivity was examined in serial, 4-micron frozen sections of the caudate nucleus from rats pretreated with colchicine. Colocalization was found in numerous caudate neurons of medium size. Cell counts of corresponding labeled neurons in paired adjacent sections showed that GAD and enkephalin-like immunoreactivity coexist in about one half of the caudate cell populations containing each of these substances.

Animals↗