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Biomedical subjects

S Lissitzky

Publications and source records attributed to S Lissitzky.

At least 91 records · Page 5Linked to original sources

Defective thyroglobulin export as a cause of congenital goitre.

The thyroids of two brothers aged 13 and 15 with congenital goitre, butanolinsoluble iodine in blood and which had pronounced decrease of immunoreactive thyroglobulin content in the thyroid were studied. Two types of thyroglobulin were identified. The first amounted to only about 200-300 mug/g wet tissue and was fully immunoreactive with anti normal human thyroglobulin antiserum (iTG-G). It was purified by affinity chromatography. The other was mainly associated with intracytoplasmic membranes, amounted to about 8 mg/g wet tissue and was only partially immunoreactive (piTG-G). Both had abnormal amino acid compositions but only iTG-G showed a decreased carbohydrate content. Surprisingly, piTG-G showed a normal iodination level (0-5%) and a normal iodoamino acid composition. Immunochemical studies performed on slices or cell-free fractions incubated in the presence of labelled amino acids and/or monosaccharides showed that: (1) thyroglobulin peptide chains were being synthesized and almost normally discharged into the cisternae of the rough endoplasmic reticulum; (2) incorporation of sugars into iTG-G was decreased; (3) sialyl- and galactosyltransferase activities were normal and the enzymes normally located, and (4) albumin which is present in the thyroid as the iodinated protein was probably not synthesized by the goitrous tissues. Two major abnormalities were detected by light and electron microscopy: absence or pronounced scarcity of colloid in the follicular lumina and overdistended endoplasmic reticulum cisternae. These observations are compatible with a defect in TG transport from the cell into the lumen as the cause of the goitre. Whether defective thyroglobulin export is basically related to abnormality of the protein structure or to another cause is discussed.

Adolescent↗

Thyrotropin-receptor interaction and cyclic AMP-mediated effects in thyroid cells.

Thyroid cells in culture constitute a suitable system for the study of thyroid gland function and its regulation. The natural thyroid stimulator (TSH) induces the in vitro reorganization of thyroid cells into three-dimensional follicles morphologically and metabolically similar to gland follicles. In contrast, nonstimulated cells develop as a monolayer and in a concerted manner rapidly lose the enzymes involved in iodine metabolosm and the aptitude to bind TSH to specific receptor sites. The morphogenetic action of TSH and its ability to maintain the specific metabolic properties of thyroid cells in culture are mediated by cyclic AMP via new RNA and new protein synthesis. Therefore comparison of the properties of a given cell type in morphologically and metabolically different status should provide a valuable tool for studying the TSH mechanism of action. Using 125-I-labeled TSH of high purity, high specific radioactivity, and preserved biologic potency, TSH interaction with intact cells and their derived plasma membranes was studied. At both the cellular and the sub-cellular level a very good agreement was found for the values of the rate and equilibrium constants of labeled TSH binding. A single type of high-affinity low-capacity site was revealed. In contrast, in both systems dissociation of bound labeled TSH was not of single-order kinetics and showed two kinetic components with half-lives of 3 and 30 min. An excellent correlation between half-stimulation of adenylate cyclase and iodide transport mechanism activation, and the dissociation constant of TSH binding, was found, indicating that the in vitro system studied was relevant to physiologic regulation.

Animals↗