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J Robbins

Publications and source records attributed to J Robbins.

At least 343 records · Page 19Linked to original sources

Quantification of myosin heavy-chain mRNA during myogenesis.

Complementary DNA (cDNA) was synthesized from a 26-S poly(A)-containing RNA fraction consisting predominately of myosin mRNA, and used to quantitate the amounts of myosin mRNA during development. RNA . cDNAmyosin hybridizations were performed with RNA isolated from tertiary cultures of chick fibroblasts, and the proportion of myosin RNA determined. The levels of myosin RNA present in primary chick myoblast cultures undergoing development were also analyzed by RNA . cDNAmyosin hybridizations. Correlation of these values with the rate of myosin heavy chain synthesis indicates that myosin mRNA is subject to post-transcriptional or translational control.

Animals↗

Thyroxine inactivation by starvation in cultured hepatocarcinoma cells, Formation of reverse triiodothyronine.

The effect of starvation on thyroid hormone metabolism was studied in monkey hepatocarcinoma monolayer cultures. Nonphenolic ring monodeiodination of thyroxine, 3, 5, 3'-triiodothyronine and 3, 3'-diiodothyronine was accelerated. Since phenolic ring deiodination of 3, 3',5'-triiodothyronine (reverse T3) was unaffected, this metabolite accumulated in the medium during thyroxine metabolism. This suggests that increased serum reverse T3 in malnourished humans may be caused by enhanced deiodination of thyroxine rather than decreased rT3 catabolism.

Animals↗

[Hormonal control of thyroxine-binding globulin synthesis and metabolism (author's transl)].

Serum thyroxine-binding globulin (TBG), the major plasma transport protein for thyroid hormones in man, was shown to be altered under the influence of estrogen and in hypothyroidism. In order to study these alterations, we used an animal model. Synthesis of TBG was demonstrated in hepatocytes isolated from adult Rhesus monkeys, and in a monkey hepatocarcinoma continuous cell culture line (NCLP-6-E). When the hepatocytes were obtained from monkeys pretreated with beta-estradiol (E2), a specific 2.5-2.9 fold increase of TBG synthesis and secretion was shown; similar data were obtained with the tumor line. Furthermore, an increased TBG production was shown with these cells when T4 (from 10(-14) to 10(-11) M) was added to the culture medium. The in vitro results were correlated with in vivo data obtained by investigating the metabolism of TBG after iv injection of tracer doses of purified, radiolabelled TBG to normal, E2-treated and thyroidectomized monkeys. The main effect of estrogen administration was a marked increase of the production rate. During hypothyroidism, the catabolism and the production rate of TBG were decreased. In both conditions, there were significant changes in the distribution volume of TBG, the physiologic relevance of which remains to be investigated.

Animals↗

Characterization of human thyroxine-binding globulin. Evidence for a single polypeptide chain.

Thyroxine-binding globulin (TBG) was purified from fresh human plasma by affinity, anion exchange, and gel filtration chromatography. The protein gave a single band in overloaded analytical disc gel electrophoresis. The molecular weight was 54,000 and E1%/1 cm at 280 nm, corrected for thyroxine (T4) absorbance, was 6.17. Six preparations of TBG contained from 0.09 to 0.64 mol of T4/mol; the TBG used in this study contained 0.19 mol of T4 and was able to bind an additional 0.85 mol. The carbohydrate composition was determined and accounted for 23% of the molecular weight. Four lines of chemical and physical evidence failed to demonstrate subunits. These included quantitative COOH-terminal amino acid analysis, peptide mapping and amino acid composition, treatment with sodium dodecyl sulfate, and denaturation of the reduced, alkylated protein with guanidine. From these data, we conclude that TBG is a single polypeptide chain.

Amino Acids↗

Structure and stability of human thyroxine-binding globulin.

The secondary and tertiary structure of human plasma thyroxine-binding globulin (TBG) was investigated by circular dichroism and fluorescence properties. The relaxation time of TBG indicated that it is a compact, symmetric molecule. It was calculated from the far ultraviolet CD spectrum that about one-half of the peptide groups are equally distributed in alpha helical and beta structures. In the near ultraviolet, the CD spectrum of TBG was modified when thyroxine was bound. TBG was stable at temperatures below 50 degrees at pH 9 and below 35 degrees at pH 10.5. Below pH 5 tryptophanyl fluorescence revealed a molecular transition which followed first order kinetics. The transition resulted in an irreversible loss of binding of the hormone. Acidification to pH 3.4 produced only a minor change in the CD spectrum, in which some of the alpha helical peptides were converted to beta structure.

Circular Dichroism↗

Affinity labeling of human serum prealbumin with N-bromoacetyl-L-thyroxine.

Affinity labeling of human serum prealbumin with N-bromoacetyl-L-thyroxine (BrAcT4) was used to investigate the binding domain for L-thyroxine (T4) on prealbumin. Fluorescence titration with 8-anilinonaphthalene-1-sulfonate revealed a strong and a weak binding site for BrAcT4 (K1 = 1 X 10(8) M-1; K2 = 1 X 10(6) M-1). The reaction of BrAcT4 with prealbumin to form a covalent bond was inhibited in the presence of T4 and binding of T4 to prealbumin was nearly abolished after affinity labeling with BrAcT4. Affinity labeling with 2 mol of BrAcT4/mol of prealbumin resulted in covalent binding of 1 mol of ligand. Acid hydrolysis of affinity-labeled prealbumin gave Nepsilon-carboxymethyllysine and iminodiacetic acid, the latter being derived from the NH2-terminal glycine. A combination of analytical procedures, including tryptic digestion after maleylation, cyanogen bromide cleavage, digestion with yeast protease C, and sequential Edman degradations, revealed that the Nepsilon-carboxymethyllysine was derived from lysine-9 and lysine-15 and that the affinity label had distributed itself among glycine-1, lysine-9, and lysine-15 in a ratio of 29:63:8.

Affinity Labels↗

Effects of estrogen on thyroxine-binding globulin metabolism in rhesus monkeys.

To investigate the effects of estrogen on thyroxine-binding globulin (TBG) metabolism, 4 female Rhesus monkeys were studied before and 3-4 weeks after implantation of beta-estradiol (E2)-containing capsules. In addition, 2 of the animals were also studied for the first 7 days after the start of E2. Serum E2 increased 10-fold from 20 +/- 7 to 212 +/- 41 pg/ml. Serum TBG, initially 20.2 +/- 6 mug/ml, was elevated by 24 h after E2 implantation, and reached a steady level of 46.8 +/- 5.0 mug/ml by 7-10 days. For the turnover studies, highly purified [125I]iodo-TBG was injected iv and serum [125I]PBI and urinary 125I excretion were measured daily. TBG kinetics were evaluated by use of a compartmental model. Although a 2-compartment model was sufficient to fit the control and late E2 data, a 3-compartment model was developed in order to account for the modifications observed during the early E2 period. The final decay rate (k) of TBG was 0.26 +/- 0.01/day during the control period and was slightly lower after E2 (0.23 +/- 0.01/day). In the 2 monkeys studied during the early E2 period, the major effect of E2 was a stimulation of the TBG production rate. This was simulated in the model by a stepwise increase occurring in the last quarter of the first day after E2. There was also an abrupt redistribution of TBG in the compartments defined by the model. The total distribution or serum equivalent volume of TBG after 3-4 weeks of E2 increased 1.4-fold, from 338 +/- 37 ml to 458 +/- 22 ml, and the metabolic clearance rate increased 1.3-fold, from 90 +/- 10 ml/d to 113 +/- 12 ml/d. The increase in the final TBG production rate (2.9-fold) was only slightly greater than the rate calculated for the early E2 period, and was similar to the increase we have recently found in monkey hepatocytes studied in vitro after isolation from E2-treated animals. It appears that stimulation of hepatic synthesis of TBG accounts for the elevated serum levels of TBG observed after estrogen.

Animals↗

Stimulation of thyroxine-binding globulin synthesis by isolated rhesus monkey hepatocytes after in vivo beta-estradiol administration.

The rate of in vitro production of thyroxine-binding globulin (TBG) was studied in hepatocytes isolated from 6 control rhesus monkeys (serum TBG: 19.6 +/- 0.5 micrograms/ml; mean +/- SE) and 6 monkeys treated for 4-5 weeks with beta-estradiol (E2) (serum TBG: 45.1 +/- 1.8 micrograms/ml). Incorporation of [3H]leucine into intracellular soluble and particle-bound TBG, and into secreted TBG was determined for incubation periods up to 9 h. TBG was purified by affinity chromatography and measured by specific immunoprecipitation. The absolute amount of [3H]TBG and the ratio of [3H]TBG to total labeled protein in the same fraction were 3-fold higher in the particulate fraction and in the incubation medium of hepatocytes isolated from E2-treated monkeys. In separate experiments, TBG accumulation in the medium was measured for periods up to 19 h by radioimmunoassay. A 2.4-fold increase was observed with hepatocytes from E2-treated monkeys (3.48 ng TBG/h/10(7) cells, compared to 1.46 in controls). Correction of the production rates for the number of cells surviving during the incubation, and assuming 10.2 x 10(9) cells per liver, gave TBG production rates of 250 micrograms/liver/day in hepatocytes from E2-treated monkeys and 104 micrograms/day in hepatocytes from control monkeys. These experiments demonstrate that estrogen increases in vitro synthesis and secretion of TBG by isolated hepatocytes. The observed 2.4 to 3-fold increase was similar to the 2.9-fold increase in TBG production measured in vivo by kinetic analysis of TBG metabolism.

Animals↗

Characterization of abnormal thyroglobulin in a transplantable rat thyroid tumor.

The solube iodoproteins in a transplantable rat throid tumor (Wollman Line 1-8) were studied after in vivo labeling with 125 I and were partially purified by affinity chromatography on anti-thyroglobulin-AGAROSE. A major fraction ('Peak A') was excluded from gels of large pore size, but had a low sedimentation rate (approximately8S) and did not appear to contain aggregates. It had a high density (approximately1.4) which was possibly due to a high content of carbohydrate, since treatment with a crude glycosidase mixture lowered the density to approximately1.3. A second fraction ('Peak B') had a similar sedimentation coefficient (6-9S) but penetrated the same gels and had a lower density (approximately 1.3). Both proteins formed soluble complexes with antibodies against normal rat thyroglobulin, and had other properties somewhat similar to those of thyroglobulin. After hydrolysis, mono- and diiodotyrosine were the only iodoamino acids liberated. These iodoproteins appears to represent abnormal forms of thyroglobulin synthesized by the tumor.

Animals↗

Fine-needle aspiration cytology in the preoperative diagnosis of thyroid nodules.

Fifty consecutive patients were studied to assess the utility of fine-needle aspiration cytology for the diagnosis of hypofunctioning thyroid nodules. In two patients, cysts were evacuated and did not recur. Thirty-three patients underwent excisional biopsy; the aspiration biopsy result was not a criterion for surgery. Satisfactory aspiration specimens were obtained in 32 patients (97%). The diagnosis in nine aspiration specimens was malignant; of these seven (78%) were correct and there was one false-positive and one occult carcinoma unrelated to the clinically detected nodule. Five aspirations showed suspected malignancy; of these, two were carcinoma, one was an occult carcinoma, and two were benign. Eighteen aspirations were interpreted as benign; of these, 17 (94%) were correct and the one false-negative diagnosis was a well-differentiated follicular carcinoma. The procedure is useful in assessing the need for surgery in high-risk patients and in selecting patients for thyroid-suppression therapy.

Adult↗

Haematemesis.

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Child↗