首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Superagonistic Activity of Bovine Thyroid-stimulating Hormone (TSH) and the Human TR1401 TSH Analog Is Determined by Specific Amino Acids in the Hinge Region of the Human TSH Receptor
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The Superagonistic Activity of Bovine Thyroid-stimulating Hormone (TSH) and the Human TR1401 TSH Analog Is Determined by Specific Amino Acids in the Hinge Region of the Human TSH Receptor

机译:牛甲状腺刺激激素(TSH)和人类TR1401 TSH类似物的超激动活性是由人类TSH受体铰链区中的特定氨基酸确定的。

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摘要

Bovine TSH (bTSH) has a higher affinity to the human TSHR (hTSHR) and a higher signaling activity than human TSH (hTSH). The molecular reasons for these phenomena are unknown. Distinct negatively charged residues (Glu297, Glu303, and Asp382) in the hinge region of the hTSHR are known to be important for bTSH binding and signaling. To investigate the potential relevance of these positions for differences between bTSH and hTSH in the interaction to the hTSHR, we determined bTSH- and hTSH-mediated cAMP production of several substitutions at these three hinge residues. To examine specific variations of hTSH, we also investigated the superagonistic hTSH analog TR1401 (TR1401), whose sequence differs from hTSH by four additional positively charged amino acids that are also present in bTSH. To characterize possible interactions between the acidic hTSHR positions Glu297, Glu303, or Asp382 and the additional basic residues of TR1401, we investigated TR1401 binding and signaling properties. Our data reveal increased cAMP signaling of the hTSHR using TR1401 and bTSH compared with hTSH. Whereas Asp382 seems to be important for bTSH- and TR1401-mediated but not for hTSH-mediated signaling, the substitution E297K exhibits a decreased signaling for all three TSH variants. Interestingly, bTSH and TR1401 showed only a slightly different binding pattern. These observations imply that specific residues of the hinge region are mediators of the superagonistic activity of bTSH and TR1401 in contrast to hTSH. Moreover, the simultaneous localization of binding components in the glycoprotein hormone molecule and the receptor hinge region permits important reevaluation of interacting hormone receptor domains.
机译:牛TSH(bTSH)对人TSHR(hTSHR)的亲和力高于人TSH(hTSH),并具有较高的信号传导活性。这些现象的分子原因尚不清楚。已知hTSHR铰链区中带明显负电荷的残基(Glu 297 ,Glu 303 和Asp 382 )对bTSH很重要绑定和信令。为了调查这些位置与bTSH和hTSH之间与hTSHR相互作用的差异的潜在相关性,我们确定了在这三个铰链残基处bTSH和hTSH介导的cAMP产生数个取代。为了检查hTSH的特定变异,我们还研究了超激动性hTSH类似物TR1401(TR1401),其序列与hTSH的区别在于bTSH中也存在另外四个带正电荷的氨基酸。为了表征酸性hTSHR位置Glu 297 ,Glu 303 或Asp 382 与TR1401的其他基本残基之间可能的相互作用,我们研究了TR1401结合和信号传导性质。我们的数据显示与hTSH相比,使用TR1401和bTSH的hTSHR的cAMP信号传导增加。尽管Asp 382 对于bTSH和TR1401介导似乎很重要,但对hTSH介导的信号却不重要,但取代E297K表现出所有三个TSH变体的信号减少。有趣的是,bTSH和TR1401的结合方式仅略有不同。这些观察结果暗示,与hTSH相反,铰链区的特定残基是bTSH和TR1401的超激动活性的介质。而且,糖蛋白激素分子和受体铰链区中结合成分的同时定位允许相互作用激素受体域的重要重新评估。

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