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Insights into the Posttranslational Structural Heterogeneity of Thyroglobulin and Its Role in the Development, Diagnosis, and Management of Benign and Malignant Thyroid Diseases

Overview
Specialty Endocrinology
Date 2016 Feb 25
PMID 26909485
Citations 11
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Abstract

Thyroglobulin (Tg) is the major glycoprotein produced by the thyroid gland, where it serves as a template for thyroid hormone synthesis and as an intraglandular store of iodine. Measurement of Tg levels in serum is of great practical importance in the follow-up of differentiated thyroid carcinoma (DTC), a setting in which elevated levels after total thyroidectomy are indicative of residual or recurrent disease. The most recent methods for serum Tg measurement are monoclonal antibody-based and are highly sensitive. However, major challenges remain regarding the interpretation of the results obtained with these immunometric methods, particularly in patients with endogenous antithyroglobulin antibodies or in the presence of heterophile antibodies, which may produce falsely low or high Tg values, respectively. The increased prevalence of antithyroglobulin antibodies in patients with DTC, as compared with the general population, raises the very pertinent possibility that tumor Tg may be more immunogenic. This inference makes sense, as the tumor microenvironment (tumor cells plus normal host cells) is characterized by several changes that could induce posttranslational modification of many proteins, including Tg. Attempts to understand the structure of Tg have been made for several decades, but findings have generally been incomplete due to technical hindrances to analysis of such a large protein (660 kDa). This review article will explore the complex structure of Tg and the potential role of its marked heterogeneity in our understanding of normal thyroid biology and neoplastic processes.

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References
1.
Hille A, Braulke T, von Figura K, Huttner W . Occurrence of tyrosine sulfate in proteins--a balance sheet. 1. Secretory and lysosomal proteins. Eur J Biochem. 1990; 188(3):577-86. DOI: 10.1111/j.1432-1033.1990.tb15438.x. View

2.
Feldt-Rasmussen U, PETERSEN P, Date J, Madsen C . Sequential changes in serum thyroglobulin (Tg) and its autoantibodies (TgAb) following subtotal thyroidectomy of patients with preoperatively detectable TgAb. Clin Endocrinol (Oxf). 1980; 12(1):29-38. DOI: 10.1111/j.1365-2265.1980.tb03129.x. View

3.
Nlend M, Cauvi D, Venot N, Desruisseau S, Chabaud O . Thyrotropin regulates tyrosine sulfation of thyroglobulin. Eur J Endocrinol. 1999; 141(1):61-9. DOI: 10.1530/eje.0.1410061. View

4.
Vono-Toniolo J, Kopp P . Thyroglobulin gene mutations and other genetic defects associated with congenital hypothyroidism. Arq Bras Endocrinol Metabol. 2004; 48(1):70-82. DOI: 10.1590/s0004-27302004000100009. View

5.
Roitt I, Torrigiani G . Identification and estimation of undegraded thyroglobulin in human serum. Endocrinology. 1967; 81(3):421-9. DOI: 10.1210/endo-81-3-421. View