首页> 美国卫生研究院文献>Endocrinology >Thyrotropin (TSH) Receptor Residue E251 in the Extracellular Leucine-Rich Repeat Domain Is Critical for Linking TSH Binding to Receptor Activation
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Thyrotropin (TSH) Receptor Residue E251 in the Extracellular Leucine-Rich Repeat Domain Is Critical for Linking TSH Binding to Receptor Activation

机译:细胞外亮氨酸富集重复域中的促甲状腺素(TSH)受体残基E251对于将TSH结合与受体激活联系起来至关重要

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摘要

The TSH receptor (TSHR) ectodomain comprises a tubular leucine-rich repeat domain (LRD) and a hinge [or signaling specificity domain (SSD)]. TSH binds to both the LRD and SSD, leading to signal transduction by the transmembrane domain. The SSD structure and spatial orientation to the other components are unknown. We exploited a fortuitous observation to obtain mechanistic insight into the relationship between TSH binding and signal transduction. A mouse TSHR cDNA generated by PCR was found to express a receptor with poor TSH-induced cAMP generation despite normal TSH binding. Progressive reversion to wild-type of six mutations revealed E251K in the LRD to be critical for reduced signal transduction in both mouse and human TSHR. An I286F substitution in the SSD had a much weaker effect and was additive with E251K. To our knowledge, there are no previous examples of specific amino acid mutations in the TSHR LRD that dissociate TSH binding from TSHR signal transduction. To prevent flailing of the TSHR LRD, its position vis-à-vis the SSD must be stabilized by multiple amino acid interactions. The present data suggest that TSHR residue E251 is one of these residues involved in stabilizing the LRD relative to the SSD, thereby enabling ligand binding to transduce a signal by the latter. That the E251K mutation can reduce signal transduction despite high-affinity TSH binding comparable with the wild-type TSHR provides mechanistic insight into the coupling between ligand binding and receptor activation.
机译:TSH受体(TSHR)胞外域包含一个富含管状亮氨酸的重复域(LRD)和一个铰链[或信号特异性域(SSD)]。 TSH与LRD和SSD结合,导致跨膜结构域进行信号转导。 SSD的结构和与其他组件的空间方向是未知的。我们利用一个偶然的观察来获得对TSH结合与信号转导之间关系的机械理解。尽管正常TSH结合,发现通过PCR产生的小鼠TSHR cDNA表达的TSH诱导的cAMP产生较差。逐渐恢复为野生型的六个突变表明,LRD中的E251K对于降低小鼠和人类TSHR的信号转导至关重要。 SSD中的I286F替换效果要弱得多,并且可以与E251K叠加。据我们所知,TSHR LRD中尚无特定氨基酸突变的实例,这些突变可使TSH结合与TSHR信号转导分离。为了防止TSHR LRD晃动,必须通过多种氨基酸相互作用来稳定其相对于SSD的位置。本数据表明,TSHR残基E251是涉及相对于SSD稳定LRD的这些残基之一,从而使得配体结合能够通过后者转导信号。尽管与野生型TSHR相比具有高亲和力的TSH结合,但E251K突变仍可减少信号传导,这为配体结合与受体激活之间的耦合提供了机械原理。

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