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Biomedical subjects

J Robbins

Publications and source records attributed to J Robbins.

At least 253 records · Page 14Linked to original sources

Triiodothyronine transport into differentiated and undifferentiated mouse neuroblastoma cells (NB41A3).

The mechanism of T3 entry into cells was studied in undifferentiated NB41A3 neuroblasts and after differentiation with 0.5 mM sodium butyrate. In undifferentiated neuroblasts, cell uptake of labeled L-T3 at 2 h was reduced to 43% of the control value by excess L-T3, whereas only 5.9% of D-T3 uptake was saturable. After incubation of intact cells with labeled hormone, the nuclei contained 3.8% of the total cellular L-T3 and 4.3% of D-T3. Thus, L-T3 nuclear uptake was 3 times higher than D-T3. Kinetic analysis of the initial rate of uptake of L-T3 by the cells gave a Km of 1.25 nM and a maximum velocity of 2.38 fmol/min.10(6) cells. The initial rate of D-T3 uptake was not saturable. Inhibitors of ATP production (antimycin and oligomycin) as well as monodansylcadaverine virtually abolished saturable cell uptake and decreased nuclear uptake more than total cell uptake, suggesting that the saturable component of uptake into the cells is the major source of nuclear L-T3. After differentiation by butyrate, both cell uptake and nuclear uptake of L-T3 increased. The apparent affinity (Ka) of the nuclear T3 receptors was determined in intact cells and compared with the Ka measured with isolated nuclei. In undifferentiated cells, the apparent Ka was 3-fold higher than the true Ka, presumably due to a step-up in the free T3 concentration in the cytosol compared to that in the incubation medium. After butyrate exposure, the apparent nuclear Ka was decreased to less than 1.5 times the control value, but Ka in isolated nuclei was unchanged. The number of nuclear receptors, however, was increased by butyrate in both intact cell and isolated nuclei experiments. These results indicate that butyrate exerts separate effects on the number of nuclear receptors and saturable T3 transport in mouse neuroblasts.

Adenosine Triphosphate↗

Phloretin inhibits cellular uptake and nuclear receptor binding of triiodothyronine in human hep G2 hepatocarcinoma cells.

Phloretin is an inhibitor of the mammalian glucose transporter and the iodothyronine-5'-deiodinase. We examined the effects of phloretin on cellular and nuclear uptake of [125I]T3 in cultured human Hep G2 hepatocarcinoma cells. The initial rate of T3 uptake was energy dependent and saturable with both a high affinity (Km = 3.6 nM) and a low affinity (Km = 503 nM) process. Phloretin produced a dose-dependent decrease in [125I]T3 uptake by Hep G2 cells (IC50 = 88 microM) and also inhibited nuclear uptake in intact cells and isolated nuclei. The solubilized nuclear receptor in the Hep G2 cells had a Kd of 0.14 nM for T3. Phloretin inhibited [125I]T3 binding to the solubilized nuclear receptor by competitive inhibition. Phlorizin, the beta-D-glucoside of phloretin, had no effect on T3 binding to the solubilized nuclear receptor. The inhibition of T3 cellular uptake and nuclear receptor binding is probably due to structural similarities between T3 and phloretin.

Carbonyl Cyanide m-Chlorophenyl Hydrazone↗

Characterization of the binding of thyroxine to high density lipoproteins and apolipoproteins A-I.

We studied binding of T4 to the lipid-complexed apolipoproteins (apo) of high density lipoproteins (HDL), the major lipoprotein carrier of thyroid hormones in human plasma, and to lipid-free apoA-I. HDL isolated from fresh normal plasma by ultracentrifugation (density, 1.063-1.210 g/mL) was photoaffinity labeled with [3,5-(125)I]T4 and analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Two bands corresponding to apoA-I (28.3K) and apoC-II or apoC-III (8.6-9.2K) were seen, and their radioactivity decreased by 50-60% when labeled in the presence of 1 mumol/L T4. Photoaffinity labeling of isolated apoA-I also was demonstrated and was decreased 74% by 1 mumol/L T4, suggesting a higher affinity of the lipid-free protein for T4. T4 binding of isolated apoA-I was optimal at pH 7-8, reached a maximum after 1 h at 23 C, and decreased after incubation at 37 C. Scatchard analysis revealed a single T4-binding site with a Ka of 7.5 x 10(7) L/mol at 23 C, pH 8.2. The potency of T4 analogs as inhibitors of T4 binding to isolated apoA-I was L-T4 = D-T4 = triiodothyroacetic acid = L-rT3 much greater than L-T3 much greater than L-thyronine. The binding of T4 to apoA-I was reduced by known inhibitors of T4 binding to serum proteins (diclofenac = mefenamic acid = furosemide = 8-anilinonaphthalene sulfonic acid much greater than dilantin greater than heparin greater than barbital) and by lipids (unsaturated fatty acids greater than cholesterol = cholesterol esters = phospholipids greater than saturated fatty acids = diglycerides = triglycerides). We conclude that the binding of T4 to HDL is mediated by a specific interaction of the hormone with apoA-I and with apoC-II and/or apoC-III. Since the lipid constituents of HDL inhibit T4 binding to apoA-I, the HDL subfraction in plasma that carries most of the HDL-bound T4 should be one with a low lipid content.

Apolipoprotein A-I↗

Characterisation of the nuclear location sequence of Xenopus nucleoplasmin.

Each subunit of the Xenopus nucleoplasmin polypeptide possesses a single nuclear location sequence, the boundaries of which have been determined by deletion analysis. However, the sequence identified in this analysis is unable to locate pyruvate kinase to the cell nucleus. Further investigation revealed that while this sequence element is not sufficient for nuclear localisation, it is a necessary feature of slightly longer sequences which can locate pyruvate kinase to the cell nucleus. This unusual feature of the nucleoplasmin sequence suggests testable models for the interaction of this sequence with the transport mechanism, one of which is discussed here.

Amino Acid Sequence↗

Noradrenaline action on cat retinal ganglion cells is mediated by dopamine (D2) receptors.

Effects of iontophoretically applied noradrenaline, dopamine and their receptor antagonists on the retinal ganglion cells, were studied in optically intact eyes of barbiturate-anaesthetized cats. Noradrenaline inhibited visually evoked and spontaneous firing of all classes of retinal ganglion cells: the effect being greater on ON- than on OFF-cells and slightly more potent than dopamine on a given cell. All alpha- and beta-adrenoreceptor blockers tested tended to change spikes, but were generally ineffective in blocking the noradrenaline-induced inhibition, when not affecting spikes. The noradrenaline-induced inhibition was, however, effectively blocked by dopamine D2-receptor antagonists. The alpha- and beta-adrenoreceptor antagonists applied alone had no effect, suggesting the absence of endogenous noradrenergic antagonism, although alpha-type adrenergic antagonism was suggestive on a very small number of cells. These results suggest that: (1) noradrenaline action on cat retinal ganglion cells is mediated via dopamine D2-receptors; (2) noradrenaline is not generally released on them, except there may be physiologically active alpha-receptors on a few cells; and (3) many of the adrenoreceptor blockers affect membrane properties of the retinal ganglion cells, in a similar manner to local anaesthetics.

Action Potentials↗

Selective degradation of mRNA: the role of short-lived proteins in differential destabilization of insulin-induced creatine phosphokinase and myosin heavy chain mRNAs during rat skeletal muscle L6 cell differentiation.

This investigation concerns the combined effects of removal and readdition of insulin and inhibition of protein and RNA synthesis on the stability of insulin-induced mRNAs during and after differentiation of rat L6A1 myoblast cells in culture. Addition of insulin accompanying the withdrawal of the mitogenic stimulus of serum to myoblasts caused an 80-fold increase in creatine phosphokinase (CK) activity which was largely accounted for by a similar increase in the amount of CK mRNA. The latter was co-ordinately induced with myosin heavy chain (MHC) mRNA but not malic enzyme (ME) mRNA. Measurements of steady-state levels of mRNA showed that removal of insulin caused CK mRNA, but not MHC mRNA, to be rapidly degraded, the effect being reversed upon readdition of the hormone. Direct measurement of 3H-labeled CK, MHC and beta-actin mRNAs confirmed the selective stabilization and destabilization of CK mRNA by the hormone. Conditions were established for a time-window during which cycloheximide (Cx) produced a virtually total arrest of protein synthesis in myotubes that was reversible upon removal of the inhibitor. Under these conditions, Cx selectively prevented the degradation of CK mRNA in a reversible manner. Actinomycin D (Act D) also arrested the loss of this mRNA. Under the same conditions of mRNA stabilization during de-induction, a superinduction of CK mRNA, but not MHC mRNA, was observed if the two inhibitors were added during induction in the continuous presence of insulin. We conclude that a short-lived protein(s), encoded by a short-lived mRNA(s), selectively regulates the stability of reversibly inducible mRNA.

Animals↗

Development of neurochemical separation of ON and OFF channels at retinal ganglion cells.

Anatomical and physiological segregation of neurons into ON (brightening detector) and OFF (darkening detector) channels in the retina and subsequent visual system ensure the high sensitivity required for contrast detection and spatial discrimination. This segregation is finest at the visual axis. Neurochemically, ON and OFF ganglion cells at the visual axis seem to be distinguished by different inhibitory transmitters but not excitatory transmitters. Microiontophoretic studies of inhibitory transmitters on the retinal ganglion cells in kittens and adult cats suggest that this neurochemical distinction is poor in immature ganglion cells at the visual axis. Initially both ON and OFF cells seem to be supplied by GABAergic, glycinergic, and catecholaminergic amacrine cells, but in adults, ON cells remain supplied only by GABAergic amacrines, while OFF cells are supplied by glycinergic amacrines. Postnatal elimination of multiple inputs and strengthening of the appropriate inputs, as seen in the central nervous system, also seem to occur at the retinal neurotransmitter synapses during development.

Animals↗

Insulin effect on thyroid hormone uptake in rat skeletal muscle.

Previous work has indicated that thyroid hormone entry into cells includes an energy-dependent, saturable process. In this study we investigated the effect of insulin on T3 uptake in rat skeletal muscle. Intact soleus muscles were preincubated for 30 minuted at 37 degrees C, pH 7.4, in modified Krebs-Ringer bicarbonate buffer in the presence or absence of insulin and then for 60 minutes after adding 50 pmol/L [125I] T3. The results showed a stimulatory effect of insulin that was half maximal at 33 nmol/L and maximal at 100 nmol/L. Addition of 10 mumol/L T3 to the incubation medium completely blocked the effect, showing that the action of insulin is exerted only on the specific component of T3 uptake. The substitution of extracellular sodium with an equimolar amount of lithium also prevented the insulin effect. [125I] T4 uptake was unaffected by insulin. These results indicate that T3 uptake in skeletal muscle is sensitive to insulin, that insulin stimulates the specific component of T3 uptake in a dose-dependent manner, and that its action requires extracellular sodium. In contrast, T4 uptake is insensitive to insulin action in accordance with previous results that indicated passive diffusion as its major pathway for cell entry.

Age Factors↗

The nucleoplasmin nuclear location sequence is larger and more complex than that of SV-40 large T antigen.

The carboxy-terminal tail of nucleoplasmin, which specifies entry into the cell nucleus, contains four short sequences that are similar to previously identified nuclear location sequences. We show that none of these is able to locate chicken muscle pyruvate kinase to the cell nucleus. Deletion analysis was used to determine the limits of a nuclear location sequence and indicated that a 14-amino acid segment (RPAATKKAGQAKKK) should function as a minimal nuclear location sequence. When tested directly, however, this sequence was unable to locate pyruvate kinase to the cell nucleus. Restoration of three amino acids of nucleoplasmin sequence at either end of this sequence generated sequences that were able to locate pyruvate kinase to the cell nucleus. The 14-amino acid proposed minimal nuclear location sequence is present in the functional sequences, AVKRPAATKKAGQAKKK, RPAATKKAGQAKKKKLD, and the sequence AVKRPAATKKAGQAKKKKLD, which has additional amino acids at both ends. The minimal sequence element is therefore necessary but not sufficient for transport into the cell nucleus. This unusual feature of the nucleoplasmin nuclear location sequence suggests ways in which it could interact with the nuclear transport mechanism.

Amino Acid Sequence↗

A simplified low iodine diet in I-131 scanning and therapy of thyroid cancer.

A simplified, low iodine diet was developed for outpatient use prior to I-131 scanning and therapy in thyroid cancer. Iodine intake of five subjects on the diet was approximately 50 micrograms a day and this level was maintained for four weeks. The diet required only minimal instruction to be followed reliably. This level of iodine intake may increase radioiodine uptake in thyroid carcinomas.

Adult↗

Experimental posterior uveitis. II. Electroretinographic studies.

Experimental posterior uveitis was induced by the inoculation of retinal S-antigen into black hooded Lister rats. The time course of the disease was monitored by electroretinography (ERG), and the ERG changes were correlated with clinical signs and underlying pathological damage. The ERG became supernormal in the third week after inoculation, with some loss of temporal resolution (lowered ERG flicker fusion frequency), though the disease was not clinically manifest at this time and histological examination was normal. The ERG became subnormal after 21 days as clinical signs of disease began to appear. This subnormality was associated with focal photoreceptor necrosis, the degree of destruction being proportional to the reduction in the ERG. The ERG recovered with resolution of disease in most cases, though return to control values was uncommon. We suggest that the initial supernormal ERG reflects an underlying biochemical change mediated by the action of anti retinal S-antigen antibodies.

Animals↗

Different intracellular and intranuclear transport of triiodothyronine enantiomers in rat skeletal myoblasts.

The mechanism(s) responsible for the different biological potency of L- and D-T3 was investigated in rat L6E9 myoblasts. After incubation with intact cells at 37 C L-T3 cellular and nuclear uptakes were 91% and 70% higher than those of D-T3, respectively, but values for nuclear uptake as a fraction of cellular uptake were similar. The difference between the enantiomers was abolished at 4 C, and metabolic and endocytotic inhibitors reduced nuclear and extranuclear saturable uptake of L-T3 to a similar degree, but had little or no effect on D-T3 uptake. The affinity constants (Ka) for L- and D-T3 binding to isolated nuclei were similar, but the apparent nuclear Ka of L-T3 in intact cells was 5-fold greater than that of D-T3. The findings suggest that stereospecific transport, mainly active at the plasma membrane, occurs in rat skeletal muscle cells. This discriminative pathway of cell entry facilitates L-T3 uptake by an energy-dependent pathway not shared by D-T3 and may explain the greater potency of L-T3 than D-T3.

Animals↗

Binding of thyroid hormones to human plasma lipoproteins.

The binding of T4, T3, and rT3 to plasma lipoproteins was investigated in normal subjects and patients with abnormal lipoprotein metabolism. Gel filtration on Sepharose CL-6B demonstrated iodothyronine binding to all lipoprotein classes. In the total lipoprotein fraction (density less than 1.210 g/mL), high density lipoproteins (HDL) were the major binders, accounting for 92% of lipoprotein-bound T4, 99% of lipoprotein-bound T3, and 55% of lipoprotein-bound rT3. The estimated iodothyronine binding in normal plasma to HDL, low density lipoproteins (LDL), and very low density lipoproteins (VLDL) was 3%, 0.2%, and 0.03% for T4, 6%, 0.05%, and 0.02% for T3, and 0.1%, 0.1%, and 0.01% for rT3, respectively. These estimates may be low owing to possible dissociation during chromatography and the short incubation period used to avoid changes in lipoprotein structure. In VLDL and LDL deficiency (abetalipoproteinemia), HDL deficiency (Tangier disease), LDL excess (type IIa hyperlipoproteinemia), and VLDL excess (type III, IV, and V hyperlipoproteinemia), the distribution of iodothyronines reflected the lipoprotein abnormality. Variations resulting from altered distribution within HDL subclasses were also found. Binding was saturable, with approximate dissociation constants for VLDL, LDL, and HDL of 10(-5)-10(-6) mol/L. We conclude that thyroid hormones bind specifically to apolipoproteins, although additional binding by solubilization in the lipid components of the lipoproteins may also occur.

Abetalipoproteinemia↗

Structural and transcriptional analysis of a chicken myosin heavy chain gene subset.

Recently we have isolated a large number of chicken myosin or myosin-like heavy chain genes. Seven of these genes were placed into a subset based upon their hybridization patterns. In the present study, the sequence of the 5' end of one of the myosin heavy chain (MHC) genes, N127, was determined and compared with the 5' end sequences of the other six MHC genes in the subset. The comparison revealed that the three exons encoding the amino termini of the protein are highly conserved. The sequence analysis shows that a localized correction event occurred in and around a domain of the nucleotide-binding site, as the exon encoding this site and the preceding intron are very highly conserved among the seven genes. The sequence of the promoter and 5'-untranslated region of N127 is presented. The analogous regions for N124 and N125 have now been sequenced and are also presented. As is the case for all the other known MHC genes, the 5'-untranslated regions are split by large introns. The promoter and 5'-untranslated regions are compared with two previously characterized chicken MHC genes (N116 and N118) to determine the sequence similarities and differences that might underlie the differential expression of the family's members. To confirm and extend previously published results of the expression of these genes, transcript-specific probes generated from the 5' region of six of the seven genes were used to determine in which muscle(s) the corresponding mRNAs were present. The data show that despite the very close structural homologies, each of the genes for which a unique probe could be prepared exhibits a unique pattern of expression.

Animals↗

The developmentally regulated expression of two linked myosin heavy-chain genes.

The organization of two linked chicken myosin heavy-chain (MHC) genes is described. Using probes derived from the 3' and 5' ends of the genes, chromosome walks were carried out, resulting in the isolation of a clone which encompassed the 5' end of one MHC gene and the 3' end of a different MHC gene. Further analysis showed that both genes (each approximately 25 kbp in length) are oriented head to tail and are separated by an intergenic region of 7.5 kbp. Despite extensive homologies, a transcript-specific probe for each of the genes could be prepared from the 5' untranslated regions. These probes were used to determine the transcriptional pattern for each of the genes. The data show that the gene located at the 5' end of the linkage pair is expressed during the neonatal stages of development, while the gene located at the 3' end of the pair is expressed predominantly during the embryonic stages of development.

Animals↗

The sequence of an embryonic myosin heavy chain gene and isolation of its corresponding cDNA.

The complete sequence of an embryonic chicken myosin heavy chain has been determined. Introns and exons were identified by comparison with the corresponding cDNA. The cDNA contains 5,962 bases, of which 85 bases constitute the poly(A) tail. The cDNA represents the entire mRNA transcript, except for 90 bases at the 5'-coding terminus and 101 bases of the 5'-untranslated region. The gene's coding region is split by 37 introns; two additional introns split the 101 base pairs which make up the 5'-untranslated region. The complete gene is approximately 23,000 base pairs and encodes a protein whose molecular weight is 222,559 and consists of 1,940 amino acids. Analysis of the protein and comparison with other myosin sequences reveal that certain regions have been conserved; those amino acids which have been postulated to participate in the ATPase and actin-binding activities of the molecule are highly homologous. These comparisons have allowed the identification of isolated regions within the myosin heavy chain that appear to be essential for the molecule's function.

Amino Acid Sequence↗