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Biomedical subjects

J Bernal

Publications and source records attributed to J Bernal.

At least 127 records · Page 7Linked to original sources

The nuclear 3,5,3'-triiodothyronine receptor in human leukaemic cell lines.

The 3,5,3'-triiodothyronine (T3) receptor has been studied in a series of continuously growing human leukaemic cell lines. High concentrations of receptor were found in the erythroblastoid cell line K-562. T3 was bound to the nuclei of these cells with an association constant of 3.4 X 10(9) M-1, and capacity 104 fmol/100 micrograms DNA, or 8700 molecules/nucleus. This capacity is comparable to that of rat liver or growth hormone producing cells (GH cells) in culture, and suggests that the K-562 cell line could be a useful model for the study of T3 action on erythroid differentiation.

Cell Division↗

Partial peripheral resistance to thyroid hormones, a post-receptor defect?

Nuclear receptor for T3 in circulating lymphocytes and cultured fibroblasts from patients with partial resistance to thyroid hormones have in the majority of the cases a normal binding affinity and a normal maximal binding capacity. This would mean that in the majority of the cases the receptors do not show any major abnormalities and that probably the mechanism for the resistance may be sought for in postreceptor events, in the transcriptional or translational events. In a few cases there has been evidence for an abnormal receptor or for the lack of an receptor.

Cell Nucleus↗

Nuclear binding of triiodothyronine in human mononuclear cells, and lymphocytes in culture.

A method of T3 binding to human mononuclear cells isolated from buffy coat samples is described. Freshly isolated mononuclear cells bind T3 with Ka = 8.6 +/- 1.2 M-1 and Bmax = 6.5 +/- 1.5 fmol/100 micrograms DNA. The preparations of monoclear cells contained up to 25% monocytes, and the binding of T3 to lymphocytes and monocytes was compared after removing the monocytes. On the average, Bmax was slightly higher in monocytes (10.1 +/- 5.8) than in lymphocytes (7.0 +/- 3.2) but the difference was not statistically significant. In some experiments, however, Bmax was clearly higher in monocytes than in lymphocytes. After culturing lymphocytes in Newborn Calf Serum containing medium, Ka decreased and Bmax increased. The T3 binding method described may be used to study the effect of regulatory factors on the T3 receptor in human lymphocytes in culture.

Cell Nucleus↗

Thyroid hormone dependent nuclear proteins from rat liver.

Two nuclear proteins from rat liver were shown to be dependent on thyroid hormones. These proteins were present in the nucleosol or nucleoplasmic fraction, and were extracted from the nuclei with 0.15 M NaCl at pH8. After thyroidectomy, a 120000-Mr polypeptide decreased in concentration to levels below 10% of normal control rats and another polypeptide of 81000-Mr was increased. Treatment with T4 at physiological replacement doses for several days restored the levels of both proteins to normal. A single administration of 50 micrograms T3 induced a detectable increase of 120K after 14 h, with maximal effects at 48 h after administration. The minimum effective dose of T3 on 120K as 0.5 microgram administered for three days. Preliminary observations suggest that the response of 81K to thyroid hormones is much more sensitive than that of 120K. The physiological role of these polypeptides is unknown, but they could be involved in the mode of T3 action at the nuclear level.

Animals↗

Complement activation by parasites. A review.

Activation of complement by parasites (living parasites or purified parasite antigens) is involved in several mechanisms of the host parasite relationship. In most of the experiments performed in vitro, complement activation was found to be lethal for the parasites, but sometimes it could be essential for the development of parasitemia. Both classical and alternative complement pathways may be activated by parasites; the classical pathway nearly always requires the involvement of antibodies whereas the alternative pathway is activated directly by products released by the parasites or present in their teguments. Activation of complement, especially via the alternative pathway may also be a prerequisite for cellular adherence to parasites which can then cause their death.

Animals↗

Thyroid hormone receptors from liver nuclei: characteristics of receptor from normal, thyroidectomized, and triiodothyronine-treated rats; measurement of occupied and unoccupied receptors, and chromatin binding of receptors.

The capacity and characteristics of liver nuclear receptors for T3 have been compared in normal rats, thyroidectomized rats, and thyroidectomized rats treated with different doses of T3. Receptor capacity was unchanged, with the exception of a decrease of total nuclear receptors in rats treated with 15 microgram T3/day, which is believed due to lack of complete dissociation of the endogenously bound hormone during incubation in vitro. During incubation of the isolated nuclei in 0.32 M sucrose plus 1 mM MgCl2 plus 20 mM Tris-Cl buffer, pH 7.85, about 50% of the nuclear receptors were released to the medium and no effect of T3 treatment on the amount released was found. The affinity of the receptors free in solution was 50% higher than that of receptors retained in the nuclei. Receptors from normal and thyroidectomized rats were studied by ultracentrifugation through sucrose gradients. No difference in sedimentation coefficient was found between the groups of rats, whether the receptors were filled with the labeled hormone before or after centrifugation and separation of the gradient fractions. Occupied and unoccupied receptor capacity was estimated by incubation of receptor preparations at 20 and 0 C for 2 h. Observed capacity at 20 C represents unoccupied plus approximately 80% of occupied sites, while observed capacity at 0 C represents unoccupied plus 10% of occupied site. Binding of receptors to the chromatin was studied by incubating nuclear extract from normal rats with chromatin and measuring the amount of receptor that was not bound and remained free in the supernatant. Receptor not bound to chromatin was incubated at 0 and 20 C, with a saturating concentration of [125I]T3, to measure occupied and unoccupied sites. Both occupied and unoccupied receptor decrease in the supernatant after incubation with the chromatin when the concentration of chromatin in the incubation medium is increased. No saturation of the chromatin-binding sites was achieved by increasing the concentration of receptor several-fold, and no difference in the binding of occupied and unoccupied receptors to chromatin was observed. These data rule out the possibility that the concentration of receptors in the nucleus is under control of the hormone. Major molecular changes of the receptor that could be induced by T3, such as dissociation into subunits, are also ruled out. Binding studies to the chromatin are not necessarily conclusive, as nonspecific binding may be masking the physiological binding of the receptors to a limited number of acceptor sites.

Animals↗

Abnormalities of triiodothyronine binding to lymphocyte and fibroblast nuclei from a patient with peripheral tissue resistance to thyroid hormone action.

T3 binding to lymphocyte nuclei has been studied in normal individuals and in a patient (MaG) with peripheral resistance to thyroid hormone action. This syndrome is defined by the presence of hypothyroidism or euthyroidism with high plasma levels of thyroid hormone. T3 bound to a single set of binding sites in normal adult lymphocyte nuclei with a mean Ka of 8.9 +/- 7.1 x 109 M-1, and a capacity of 4.4 +/- 2.9 fmol/100 micrograms DNA. A single binding site was also disclosed in MaG's lymphocytes with a Ka of 0.43 x 109 M-1 and a capacity of 10.5 fmol/100 micrograms DNA. This low affinity was not due to the presence of high plasma T3 level in the patient, since administration of 100 micrograms T3 to normal adult volunteers induced the presence of two different binding sites. The mechanism responsible for this phenomenon is unknown. To binding was also studied using cultured fibroblasts which were incubated in serum-less medium before the binding experiments. One single binding site (Ka, 1.9 x 10(10) M-1, capacity, 12.9 fmol/100 micrograms DNA) was detected in normal fibroblast nuclei. In contrast, a curvilinear Scatchard plot was obtained when MaG's fibroblasts were used. This result could be compatible with the presence of either two different binding sites or negative cooperativity. In support of the latter possibility, Hill plots gave a number lower than unity. The results suggest that the syndrome of peripheral tissue resistance to thyroid hormone action due to a defect at the level of the nuclear receptor. The possible existence of similar syndromes due to an alteration at the level of a post-T3-binding mechanism is not eliminated.

Adolescent↗