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1 he intracellular domain of a model GPCR, the thyrotropin receptor.
2 nction and gain-of-function mutations of the thyrotropin receptor.
3 lays in the induction of autoimmunity to the thyrotropin receptor.
4 ) B cells produce pathogenic Abs against the thyrotropin receptor.
5 distinguish lutropin (LHR), follitropin, and thyrotropin receptors.
6                              Activating anti-thyrotropin receptor Abs are responsible for hyperthyroi
7                                          The thyrotropin receptor, also known as the thyroid-stimulat
8 of patients developed antibodies against the thyrotropin receptor and carbimazole-responsive autoimmu
9  activation of shared autoantigens including thyrotropin receptor and insulin-like growth factor-1 re
10 ies of glycoprotein hormone receptors (e.g., thyrotropin receptor) and biogenic amine receptors (e.g.
11 ss a point mutation in the gene encoding the thyrotropin receptor, and affected animals are congenita
12                                              Thyrotropin receptor antigen on fibroblasts diffusely in
13 sembled models of lutropin, follitropin, and thyrotropin receptors by aligning models of their LRD, T
14 xplains how substitutions in follitropin and thyrotropin receptors distant from their apparent ligand
15 e with the extracellular domain of the human thyrotropin receptor (ETSHR).
16 responsiveness associated with inhibition of thyrotropin receptor gene expression.
17 odide symporter, thyroid peroxidase, TG, and thyrotropin receptor genes.
18 led receptors homologous to gonadotropin and thyrotropin receptors have recently been identified and
19 elix scaffold, which endowed the substituted thyrotropin receptor intracellular domain elements with
20 ot impair key activation steps distal to the thyrotropin receptor, such as forskolin-induced adenylyl
21 xpressing either mouse (mM12 cells) or human thyrotropin receptor (TSHR) (hM12 cells).
22                                              Thyrotropin receptor (TSHR) Ab's of the stimulating vari
23 es' disease (GD), autoantibodies bind to the thyrotropin receptor (TSHR) and cause hyperthyroidism.
24 vity of AAbeta1AR and AAM2R with stimulating thyrotropin receptor (TSHR) antibodies was evaluated bef
25                      We studied cell surface thyrotropin receptor (TSHR) by biotinylating proteins on
26 the glycoprotein hormone receptors, only the thyrotropin receptor (TSHR) cleaves (at two sites) into
27  between the cysteine-rich N terminus of the thyrotropin receptor (TSHR) ectodomain and epidermal gro
28  to generate autoantibody-reactive, secreted thyrotropin receptor (TSHR) ectodomain in mammalian cell
29                                          The thyrotropin receptor (TSHR) exists in two forms (single
30 s, the detection of circulating DTC cells by thyrotropin receptor (TSHR) mRNA measurement distinguish
31  CRE-binding protein, a Y-box protein termed thyrotropin receptor (TSHR) suppressor element protein-1
32 g mutations are, however, more common in the thyrotropin receptor (TSHR) than in its downstream trans
33 g amino acid residues 22 to 416 of the human thyrotropin receptor (TSHR), along with the baculovirus-
34                       Abs that stimulate the thyrotropin receptor (TSHR), the cause of Graves' hypert
35                                          The thyrotropin receptor (TSHR), the major autoantigen in Gr
36 y caused by autoantibodies that activate the thyrotropin receptor (TSHR).
37 ng autoantibodies (TSAb's) that activate the thyrotropin receptor (TSHR).
38 yroid-stimulating Abs (TSAbs) activating the thyrotropin receptor (TSHR).

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