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Maturation of Thyroglobulin Protein Region I

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2011 Aug 6
PMID 21816825
Citations 12
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Abstract

In vertebrates, the thyroglobulin (Tg) gene product must be exported to the lumen of thyroid follicles for thyroid hormone synthesis. In toto, Tg is composed of multiple type-1 repeats connected by linker and hinge (altogether considered as "region I," nearly 1,200 residues); regions II-III (~720 residues); and cholinesterase-like (ChEL) domain (~570 residues). Regions II-III and ChEL rapidly acquire competence for secretion, yet regions I-II-III require 20 min to become a partially mature disulfide isomer; stabilization of a fully oxidized form requires ChEL. Transition from partially mature to mature Tg occurs as a discrete "jump" in mobility by nonreducing SDS-PAGE, suggesting formation of at most a few final pairings of Cys residues that may be separated by significant intervening primary sequence. Using two independent approaches, we have investigated which portion of Tg is engaged in this late stage of its maturation. First, we demonstrate that this event is linked to oxidation involving region I. Introduction of the Tg-C1245R mutation in the hinge (identical to that causing human goitrous hypothyroidism) inhibits this maturation, although the Cys-1245 partner remains unidentified. Second, we find that Tg truncated after its fourth type-1 repeat is a fully independent secretory protein. Together, the data indicate that final acquisition of secretory competence includes conformational maturation in the interval between linker and hinge segments of region I.

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References
1.
de Vijlder J, van Voorthuizen W, van Dijk J, Rijnberk A, TEGELAERS W . Hereditary congenital goiter with thyroglobulin deficiency in a breed of goats. Endocrinology. 1978; 102(4):1214-22. DOI: 10.1210/endo-102-4-1214. View

2.
Hall N, Pain A, Berriman M, Churcher C, Harris B, Harris D . Sequence of Plasmodium falciparum chromosomes 1, 3-9 and 13. Nature. 2002; 419(6906):527-31. DOI: 10.1038/nature01095. View

3.
Hishinuma A, Takamatsu J, Ohyama Y, Yokozawa T, Kanno Y, Kuma K . Two novel cysteine substitutions (C1263R and C1995S) of thyroglobulin cause a defect in intracellular transport of thyroglobulin in patients with congenital goiter and the variant type of adenomatous goiter. J Clin Endocrinol Metab. 1999; 84(4):1438-44. DOI: 10.1210/jcem.84.4.5633. View

4.
Kim P, Arvan P . Calnexin and BiP act as sequential molecular chaperones during thyroglobulin folding in the endoplasmic reticulum. J Cell Biol. 1995; 128(1-2):29-38. PMC: 2120331. DOI: 10.1083/jcb.128.1.29. View

5.
Lamas L, TAUROG A . The importance of thyroglobulin structure in thyroid peroxidase-catalyzed conversion of diiodotyrosine to thyroxine. Endocrinology. 1977; 100(4):1129-36. DOI: 10.1210/endo-100-4-1129. View