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Chun-Rong Chen, Pavel Pichurin, Yuji Nagayama, Francesco Latrofa, Basil Rapoport, Sandra M. McLachlan
J Clin Invest. 2003;
111(12):1897
doi:10.1172/JCI17069
Abstract |
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raves disease, a common organ-specific autoimmune disease affecting humans, differs from all other autoimmune diseases in being associated with target organ hyperfunction rather than organ damage. Clinical thyrotoxicosis is directly caused by autoantibodies that activate the thyrotropin receptor (TSHR). The etiology of Graves disease is multifactorial, with nongenetic factors playing an important role. Of the latter, there is the intriguing possibility that the molecular structure of the target antigen contributes to the development of thyroid-stimulatory autoantibodies (TSAb’s). Among the glycoprotein hormone receptors, only the TSHR undergoes intramolecular cleavage into disulfide-linked subunits with consequent shedding of some of the extracellular, autoantibody-binding A subunits. Functional autoantibodies do not arise to the noncleaving glycoprotein hormone receptors. Recently, TSAb’s were found to preferentially recognize shed, rather than attached, A subunits. Here we use a new adenovirus-mediated animal model of Graves disease to show that goiter and hyperthyroidism occur to a much greater extent when the adenovirus expresses the free A subunit as opposed to a genetically modified TSHR that cleaves minimally into subunits. These data show that shed A subunits induce or amplify the immune response leading to hyperthyroidism and provide new insight into the etiology of Graves disease.
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(25)
| Title and authors |
Publication |
Year |
An Attempt to Induce “Graves' Disease of the Gonads” by Immunizing Mice with the Luteinizing Hormone Receptor Provides Insight into Breaking Tolerance to Self-Antigens
Chun-Rong Chen, Holly A. Aliesky, Basil Rapoport, Sandra M. McLachlan
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Thyroid
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2011 |
Receptor-activating autoantibodies and disease: preeclampsia and beyond
Yang Xia, Rodney E Kellems
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Expert Rev Clin Immunol
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2011 |
Association of an SNP with intrathymic transcription of TSHR and Graves' disease: a role for defective thymic tolerance
R. Colobran, M. d. P. Armengol, R. Faner, M. Gartner, L.-O. Tykocinski, A. Lucas, M. Ruiz, M. Juan, B. Kyewski, R. Pujol-Borrell
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Human Molecular Genetics
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2011 |
Orbital fibrosis in a mouse model of Graves' disease induced by genetic immunization of thyrotropin receptor cDNA
S.-X. Zhao, S. Tsui, A. Cheung, R. S. Douglas, T. J. Smith, J. P. Banga
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Journal of Endocrinology
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2011 |
The Immune System which Adversely Alter Thyroid Functions: A Review on the Concept of Autoimmunity
Azad Reza Mansourian
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Pakistan J. of Biological Sciences
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2010 |
Variable Suppression of Serum Thyroxine in Female Mice of Different Inbred Strains by Triiodothyronine Administered in Drinking Water
Sepehr Hamidi, Holly Aliesky, Chun-Rong Chen, Basil Rapoport, Sandra M. McLachlan
|
Thyroid
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2010 |
Association of the thyroid stimulating hormone receptor gene (TSHR) with Graves' disease
O. J. Brand, J. C. Barrett, M. J. Simmonds, P. R. Newby, C. J. McCabe, C. K. Bruce, B. Kysela, J. D. Carr-Smith, T. Brix, P. J. Hunt, W. M. Wiersinga, L. Hegedus, J. Connell, J. A.H. Wass, J. A. Franklyn, A. P. Weetman, J. M. Heward, S. C.L. Gough
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Human Molecular Genetics
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2009 |
Apoptotic Study in Graves Disease Treated with Thyroid Arterial Embolization
Wei ZHAO, Bu Lang GAO, Gen Fa YI, Cang Zheng JIN, Hui Ying YANG, Li Juan SHEN, Min TIAN, Yong Zhong YU, Hong LI, Dian Ping SONG
|
Endocr J
|
2009 |
Thyroid antigens, not central tolerance, control responses to immunization in BALB/c versus C57BL/6 mice.
Alexander V Misharin, Basil Rapoport, Sandra M McLachlan
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Thyroid
|
2009 |
Metamorphic Thyroid Autoimmunity
Marian Ludgate, Charles H. Emerson
|
Thyroid
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2008 |
|