
pmid: 4323505
ABSTRACT A long-acting thyroid stimulator (LATS), distinct from pituitary thyrotrophin (TSH), is found in the serum of some patients with Graves' disease. Despite the marked physico-chemical and immunologic differences between the two stimulators, both in vivo and in vitro studies indicate that LATS and TSH act on the same thyroidal site(s) and that such stimulation does not require penetration of the thyroid cell. Although resorption of colloid and secretion of thyroid hormone are early responses to both TSH and LATS, available evidence reveals no basic metabolic pathway which must be activated by these hormones in order for iodination reactions to occur. Cyclic 3′, 5′-AMP appears to mediate TSH and LATS effects on iodination reactions but the role of this compound in activating thyroidal intermediary metabolism is less clear. Based on the evidence reviewed herein, it is suggested that the primary site of action of thyroid stimulators is at the cell membrane and that beyond the(se) primary control site(s), there exists a multifaceted regulatory system for thyroid hormonogenesis and cell growth.
Inclusion Bodies, Thyroid Hormones, Cell Membrane, Thyroid Gland, Biological Transport, Active, Thyrotropin, In Vitro Techniques, Oxygen Consumption, Immunoglobulin G, Microsomes, Cyclic AMP, Animals, Carbohydrate Metabolism, Humans, Long-Acting Thyroid Stimulator, RNA, Lysosomes, Phospholipids, Adenylyl Cyclases
Inclusion Bodies, Thyroid Hormones, Cell Membrane, Thyroid Gland, Biological Transport, Active, Thyrotropin, In Vitro Techniques, Oxygen Consumption, Immunoglobulin G, Microsomes, Cyclic AMP, Animals, Carbohydrate Metabolism, Humans, Long-Acting Thyroid Stimulator, RNA, Lysosomes, Phospholipids, Adenylyl Cyclases
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