Rapoport Basil, McLachlan Sandra M
Autoimmune Disease Unit, Cedars-Sinai Research Institute and UCLA School of Medicine, Los Angeles, California, USA.
Thyroid. 2007 Oct;17(10):911-22. doi: 10.1089/thy.2007.0170.
The application of molecular biology to the study of the thyrotropin receptor (TSHR) has led to major advances in our understanding of its structure, function, and relationship to the pathogenesis of Graves' disease. This review summarizes many of these features and also provides a personal perspective, questioning some assumptions and general concepts, as well as describing remaining challenges. Among the issues raised are the limits in our understanding of the spatial orientation of the structural domains of the TSHR, including the enigmatic hinge region. We review the phenomenon of TSHR intramolecular cleavage, the shedding of the A-subunit component of the ectodomain, and the importance of the latter in generating thyroid-stimulating antibodies. The epitopes of thyroid-stimulating and -blocking autoantibodies have been a confusing and controversial subject that requires review and evaluation of available data. Finally, we address the potential physiological or pathophysiological significance of TSHR multimerization in TSHR. Taken together, this review will, hopefully, convey the fascination and excitement that molecular biology has contributed to the study of the TSHR, especially as it relates to the pathogenesis of Graves' disease.
将分子生物学应用于促甲状腺激素受体(TSHR)的研究,使我们在了解其结构、功能以及与格雷夫斯病发病机制的关系方面取得了重大进展。本综述总结了其中的许多特征,并提供了个人观点,对一些假设和一般概念提出质疑,同时描述了尚存的挑战。所提出的问题包括我们对TSHR结构域空间取向的理解存在局限,其中包括神秘的铰链区。我们回顾了TSHR分子内裂解现象、胞外域A亚基成分的脱落以及后者在产生促甲状腺激素抗体中的重要性。促甲状腺激素和促甲状腺激素阻断自身抗体的表位一直是一个令人困惑且有争议的主题,需要对现有数据进行回顾和评估。最后,我们探讨了TSHR多聚化在TSHR中的潜在生理或病理生理意义。综上所述,本综述有望传达分子生物学为TSHR研究,特别是与格雷夫斯病发病机制相关研究带来的魅力和兴奋之情。