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Biomedical subjects

E Frieden

Publications and source records attributed to E Frieden.

At least 19 recordsLinked to original sources

Thyroid hormone receptor induction by triiodothyronine in tadpole erythrocytes in vivo and in vitro and the effect of cycloheximide and actinomycin-D.

Tadpole erythrocyte nuclei contain specific T3 binding sites which increase in number during spontaneous or T3-induced metamorphosis. In the present studies the increase in the number of T3 binding sites after a T3 injections appeared to be completely prevented by cycloheximide and actinomycin D, inhibitors of protein synthesis and RNA synthesis, respectively. However, in some experiments the effect was not statistically significant. The increase in sites was prevented only if the inhibitors were administered at 0 or 24 hr after T3 injection, but not at 48 or 72 hr after T3. When tadpole erythrocytes were incubated with T3 in vitro in M199 culture medium, the number of nuclear T3 binding sites increased within 48 hr. This increase was highly sensitive to inhibition by cycloheximide (maximal at 1 x 10(-6) M) or actinomycin D (maximal at 0.02 micrograms/ml). These inhibitor concentrations only slightly reduced the incorporation of labeled precursors. The T3 concentration required to induce a half-maximal increase in binding sites in vitro was about the same as the T3 concentration at which half the binding sites were occupied. The T3 binding sites had a high affinity for thyroid hormone analogs which stimulate metamorphosis. These results support the designation of the T3 binding sites as T3 receptors. They show that the tadpole erythrocytes respond to T3 with an increase in the number of T3 binding sites without the involvement of other tissues. It is proposed that this is a receptor induction involving synthesis of RNA and protein.

Animals

Isolation, stabilization, and molecular weight estimation of thyroid hormone receptors of tadpole and chick embryo erythrocytes.

Typical procedures for the isolation of triiodothyronine (T3) receptors from mammalian nuclei involve extraction of nuclei with buffers containing divalent cations and 0.40M KCl. However, when applied to tadpole erythrocyte (RBC) nuclei, this method gave low yields of relatively unstable T3 receptors. The use of EDTA (10 mM) and 0.4M KCl in a sucrose-Tris buffer resulted in the extraction of 90% of the specifically bound [125I]-T3 from RBC nuclei. It was also found that 5 mM thiol reagent (DTT, GSH, or beta-mercaptoethanol) was required for maximal stability of the receptor. Fractionation of labeled RBC nuclear extracts on a Sephadex G-100 column yielded only one peak of specific T3 binding activity. The T3 receptor peak eluted at the same position as bovine serum albumin (BSA), with an estimated mol wt of 68 kDa. Specific T3 binding activity was destroyed by protease digestion but not by DNAse or RNAse. Scatchard analysis of the fractions from the receptor peak supported the existence of one class of T3 binding sites, with an estimated Kd (about 7 pM) comparable to the Kd reported for the intact RBC. Using the same methods, T3 receptors from the nuclei of chick embryo RBCs were also isolated, again with a Kd (7 pM) similar to that for the intact RBC. The chick receptor also eluted from the Sephadex G-100 column at the same position as BSA. The estimated mol wt of the T3 receptors from both sources is comparable to those reported for T3 receptors from other sources. The results show that T3 receptors derived from both tadpole and chick RBC nuclei could be isolated in a soluble and stable form with no apparent change in Kd.

Animals

A tentacle gel simplifies the purification of ceruloplasmin.

The mechanism of how chloroethylamine-treated agarose greatly simplifies the purification of ceruloplasmin (Cp) by preferentially binding this protein from blood plasma has been investigated. Chloroethylamine readily cyclizes to ethylenimine under alkaline conditions which then polymerizes to polyethylenimine (PEI). Ethylenimine and PEI were detected in the reaction mixture used to generate the resin. PEI polymers are grown from the matrix and form "tentacle" ligands, while PEI-silica and PEI-cellulose which are not tentacle gels did not bind Cp as readily. Spermine and spermidine, naturally occurring polyamine compounds, were attached to CNBr activated-agarose and showed weak affinity for Cp. [It should be noted that ethylenimine is a potential human carcinogen and presents an inhalation hazard.]

Animals

Hemolysis of rabbit erythrocytes in the presence of copper ions. Inhibition by albumin and ceruloplasmin.

The hemolysis of red blood cells (RBC) induced by Cu(II) is modified by ceruloplasmin (Cp) and albumin. The time course of hemolysis for rabbit RBC by Cu(II) consisted of two parts, an induction period followed by a catastrophic lysis period. The induction period decreased and the lysis rate increased with increasing Cu(II) concentration. Cp or albumin, modified Cu(II) induced hemolysis, by increasing the duration of the induction period and decreasing the overall rate of hemolysis of RBC. The catastrophic lysis period coincided with a sharp increase in the formation of metHb within the cell and in a rapid uptake of Cu(II). The presence of Cp led to an increase in the induction period prior to the rapid increase in metHb formation and in Cu(II) uptake. Porcine Cp was prepared with either two or three nonprosthetic copper binding sites (sites where Cu(II) is easily removed by passing over Chelex-100). Cp with three nonprosthetic binding sites gave more protection than Cp with two. Likewise, albumin can be prepared with three and five nonprosthetic copper binding sites. The albumin with five sites gave more protection than the albumin with three sites.

Albumins

Detection of rat ceruloplasmin receptors using fluorescence microscopy and microdensitometry.

Rat ceruloplasmin (rCp) has been labeled with the fluorophores fluorescein and rhodamine by using the isothiocyanate derivatives (FITC, RBITC). High p-phenylenediamine oxidase activity of the resulting conjugates was observed (70-90% of native activity). Polyacrylamide gel electrophoresis showed fluorescein-labeled rCp (FITC-rCp) had an increased mobility, while rhodamine-labeled rCp (RBITC-rCp) showed no increase in mobility when compared to native rCp. RBITC-rCp was tested as a probe for ceruloplasmin receptors on rat erythrocytes using fluorescence microscopy to detect membrane binding. Film negatives of blood smears exposed under identical conditions were analyzed by microdensitometry to give relative optical densities for the amount of RBITC-rCp bound per unit area of the plasma membrane. With this technique, binding of rCp was observed to be saturable, reversible, and specific. Competition of the protein ligands superoxide dismutase, catalase, and unlabeled rCp against RBITC-rCp already bound on erythrocytes showed that only rCp could displace the bound RBITC-rCp with 32% specific binding being observed. Low levels of membrane binding were seen after the erythrocytes had been trypsin treated. Platelet binding was also detected and it was saturable, reversible, and trypsin sensitive. However, only 20% of the bound RBITC-rCp could be displaced by rCp. These studies demonstrate a versatile technique for detection and localization of Cp receptors.

Animals

Binding of Cu(II) to non-prosthetic sites in ceruloplasmin and bovine serum albumin.

The binding of Cu(II) to native human, porcine, bovine and ovine ceruloplasmin (Cp) and to bovine serum albumin (bSA) has been studied at pH 7.4, 30 mM barbital buffer. The results were analyzed for the strength and the number of binding sites using Scatchard plots. Evidence for additional copper binding sites in Cp and bSA was obtained suggesting a role for copper ion in the homeostatic regulation of Cu(II) and other metal ions in the serum. In the binding studies the Cp was freed of exogenous Cu(II) by passing it over a Chelex-100 column. Two flow rates were used, 4 ml/hr and 40 ml/hr, which removed Cu(II) of different affinities. Cp passed at the slower flow rate (Cp4) only contained the prosthetic copper atoms. Cp passed at the faster flow rate (Cp40) contained one additional copper atom with a Ka approximately 10(7) M-1. Another 2-6 Cu(II) ion could be added to the Cp40 with an average affinity of about Ka approximately 10(5) M-1. The Cu(II) ions found in Cp provide two distinguishable classes: (1) the prosthetic copper atoms and (2) the exogenous copper atoms that can be removed by Chelex-100. For bSA one copper atom was bound strongly with a Ka value approaching 10(12) - 10(13) M-1 and was not removed by Chelex-100 at any flow rate. A second copper atom was found with a Ka = 5.2 x 10(6) M-1 and was removed by Chelex-100 at 4 ml/hr. Three additional copper atoms were bound with a Ka = 1.6 x 10(5) M-1; they were readily removed by Chelex-100 at 40 ml/hr but were nondialysable.

Animals

Electron transfer between heme proteins and ceruloplasmin.

Reduced cytochrome-c, reduced myoglobin and oxyhemoglobin respectively have been oxidized to oxidized cytochrome-c, metmyoglobin and methemoglobin by ceruloplasmin. Metmyoglobin and methemoglobin formation was stoichiometric while oxidized cytochrome-c reacted catalytically. Only 50% methemoglobin was formed which suggested that two hemes out of four could transfer electrons. Hydrogen peroxide was formed in the reaction of reduced cytochrome-c with ceruloplasmin.

Animals

Triiodothyronine increases translatable albumin messenger RNA in Rana catesbeiana tadpole liver.

The effects of both 3,5,3'-triiodo-L-thyronine and spontaneous metamorphosis on Rana catesbeiana liver mRNA were studied using in vitro translation of isolated liver poly(A)+ RNA in a rabbit reticulocyte lysate system. Conventional phenol extraction methods yielded degraded RNA due to high levels of endogenous ribonucleases released upon homogenization of Rana catesbeiana liver. Isolation of intact total RNA was achieved using the potent ribonuclease denaturant, guanidinium thiocyanate. Adult bullfrog serum albumin was purified to homogeneity and a monospecific antibody was elicited against it. A serum protein of 23,000 daltons that migrated near serum albumin on a 6% native gel was also purified to homogeneity. A monospecific antibody was also raised against this protein. Both antibodies were used to quantitatively immunoprecipitate the in vitro translation products of poly(A)+ RNA isolated at intervals following a single injection of triiodothyronine or during various stages of spontaneous amphibian metamorphosis. Triiodothyronine caused a sevenfold increase in translatable albumin mRNA and a threefold increase in translatable mRNA for the 23,000 dalton protein. These increases are consistent with a nuclear initiated mechanism for thyroid hormone action during amphibian metamorphosis.

Albumins

A comparative study of copper ion induced lysis of vertebrate red blood cells.

1. Erythrocytes from different vertebrate classes were tested for susceptibility towards copper ion-induced lysis under identical copper ion concentration and per cent cell volumes. 2. The susceptibility towards lysis was found to be correlated with the rate of copper ion entry into the erythrocytes. 3. GSH levels decline in red blood cells at a rate proportional to the rate of copper ion entry. 4. Hemolysis does not seem to be causally related to the level of GSH in the erythrocytes.

Animals

Decrease in triiodothyronine binding sites in chick embryo erythrocytes during early development.

Specific thyroid hormone (TH) binding sites have been detected in nuclei of erythrocytes obtained from developing chick embryos. The binding characteristics and relative affinities for TH analogs were those expected of TH receptors. Nuclear triiodothyronine (T3) saturation analysis was carried out in vitro by incubating intact erythrocytes in M199 medium with 3-200 pM [125I]T3 for 1 hr at 37 degrees C or 20-24 hr at 21 degrees C. Nuclei were obtained by centrifugation after lysing the erythrocytes in a stabilizing buffer containing 0.3% saponin, followed by addition of Triton X-100 (final concentration 0.2%) to minimize the nonspecific binding. Scatchard analysis of equilibrium binding data suggested that the nuclei possess a single class of binding sites. The binding is reversible and the rate of dissociation is temperature dependent. T3 and T4 appear to bind to the same sites, but the affinity of T3 was 16 times greater. Among TH analogs tested, Triac had the highest affinity followed by L-T3, D-T3, Tetrac, L-T4, D-T4, T2, and rT3. Serial studies performed on different days of chick embryogenesis demonstrated a rapid and significant decrease of the erythrocyte nuclear T3 receptor. On Day 5, the number of T3 binding sites was maximal at 1600 +/- 100 per nucleus. The number declined steadily until, by Day 20, it had reached about 60 +/- 10 sites/nucleus. RBC from adult and baby chickens had less than 1% as many binding sites as those from Day 5 embryos. There was no significant change in the affinity of the sites (Kd approximately equal to 20 pM at 37 degrees C). The reason for the loss of T3 binding sites during embryogenesis is not known. Since the plasma level of the TH increases during embryogenesis, this may reflect down regulation. Another possibility is that the change in erythrocyte population which occurs during this period involves production of erythrocytes which contain fewer T3 binding sites.

Animals

Perspectives on copper biochemistry.

The biochemistry of the essential trace element copper has been outlined. Following absorption, Cu(II) is transported by serum albumin and transcuprein to the liver where it is incorporated into the plasma Cu-protein, ceruloplasmin, or, possibly, stored as Cu-metallothionein or as superoxide dismutase. Ceruloplasmin is the long-term copper transporter and carries Cu(II) to the tissues for the biosynthesis of key Cu(II) enzymes, especially cytochrome c oxidase, lysyl oxidase and others. The production of copper enzymes raises many new questions about the metabolism of copper. Since ceruloplasmin is the centerpiece of copper metabolism and function, we conclude with more details on its chemistry and multifunctions. This Cu-protein of 132,000 daltons has now been totally sequenced and the copper-containing active sites located. Finally, we have proposed seven possible functions for ceruloplasmin, and there is now good evidence for the existence of ceruloplasmin receptors to expedite some of these functions.

Adult

Factors affecting the adenosine triphosphate induced release of iron from transferrin.

The release of iron from transferrin was investigated by incubating the diferric protein in the presence of potential iron-releasing agents. The effective chemical group appears to be pyrophosphate, which is present in blood cells as nucleoside di- and triphosphates, notably adenosine triphosphate (ATP). An alternative structure with comparable activity is represented by 2,3-diphosphoglycerate. Neither 1 mM adenosine monophosphate (AMP) nor 1 mM orthophosphate released iron from transferrin. The ATP-induced iron-releasing activity was dependent on weak acidic conditions and was sensitive to temperature and sodium chloride concentration. The rate of iron release rapidly increased as transferrin was titrated with HCl from pH 6.8 to 6.1 in the presence of 1 mM ATP and 160 mM NaCl at 20 degrees C. Iron release from transferrin without ATP was observed below pH 5.5. Ascorbate (10(-4) M) reduced Fe(III), but only after iron release from transferrin by a physiological concentration of ATP. A proposal for the mechanism of iron release from transferrin by ATP and the utilization of reduced iron by erythroid cells is described.

Adenosine Triphosphate

NADH-FMN oxidoreductase activity and iron content of organs from riboflavin and iron-deficient rats.

NADH-FMN oxidoreductase has been proposed as an enzyme involved in the release of iron from ferritin. The effects of riboflavin and/or iron deficiencies and of dietary allopurinol on the activities of this enzyme and on the iron contents of liver, kidney and duodenum were investigated. Allopurinol, a xanthine oxidase inhibitor, did not affect organ enzyme activities nor iron contents. Riboflavin-deficient rats and iron-deficient rats both had significantly lower organ enzyme activities and iron contrnts than controls. Organ enzyme activities and iron contents of rats fed a diet deficient in both iron and riboflavin were significantly lower than those of controls. After dietary iron and/or riboflavin repletion, organ enzyme activities and iron contents increased. Rats fed an irons-overload diet had enzyme activities similar to that of controls, but organ iron contents were significantly increased over those of controls. Effects of riboflavin and/or deficiencies in rats on NADH-FMN oxidoreductase activities and iron contents of liver, kidney and duodenum appeared to be reversible by riboflavin and/or iron supplementation. The data support the view that NADH-FMN oxidoreductase may be a controlling enxyme in iron release from ferritin.

Allopurinol

Preferential binding of tri-substituted thyronine analogs by bullfrog tadpole tail fin cytosol.

The relative strength of binding of several triiodothyronine (T3) analogs by cytosol prepared from the tail fin of the bullfrog tadpole has been tested and compared with their thyromimetic activity in tail tissue. In competitive binding experiments, four tri-substituted analogs were bound much more strongly than two tetra-derivatives. Correlation between binding and relative thyromimetic activity was observed only for three triiodo-substituted compounds, triiodothyronine, its methylene bridge analog and the acetic acid analog. The affinity for T3 was 250 times that of T4, making it unlikely that the T3 binding sites in tadpole tail fin cytosol bind T4 under physiological conditions. The difference in binding by tadpole tail fin cytosol constitutes one of the largest differences observed between T3 and T4 in a potentially significant biological system.

Animals

DNA synthesis and turnover in the bullfrog tadpole during metamorphosis.

125I-labeled deoxyuridine (IdUrd) has been used to estimate the turnover of DNA in liver, tail, and hind limb during spontaneous and triiodothyronine-induced metamorphosis. It was found that the total amount of liver DNA remained constant and there was no significant loss of the label from the liver DNA, which would be expected if there was an increase in DNA turnover during metamorphosis. Also, the change in specific activity of liver DNA parallels that of tail DNA during spontaneous metamorphosis. These data suggest that metamorphic transitions in the tadpole liver do not involve significant changes in DNA turnover. It was observed that the incorporation of label into hind limb DNA showed a high variability among individual animals as compared to liver and tail tissue. The data presented suggest that the observed variability is not a random phenomenon but related directly to the rate at which animals will metamorphose.

Animals