Receptor structure and function: an exploratory approach using the thyrotropin receptor as a vehicle.

L D Kohn, S Shifrin
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Abstract

The purpose of this chapter is not to present the final or even correct model of TSH receptor structure and function. Rather, the current speculative model presented is used to open the door to a more broad view of the receptor problem and controversy as it has evolved today. Questions of how we define a receptor are clearly very much in flux and much more difficult than initially considered when a chemical approach is taken. Numerous binding components will be described and their relevance to the physiologic state will be debated. Some will be clearly erroneous in concept--yet the very debate and data will open new ideas and approaches other than repetitive membrane binding or response measurements. The remainder of this book will explore numerous other aspects of receptor structure, regulation and function. The reader may be disturbed by the complexity and extrapolations of data and the weakness of the models. The reader should, however, remember that the receptor is the key link of the cell to its environment. The complexities of this linkage are evident in our continued concern with knowledge of the mechanisms our bodily senses utilize. The controversy that will exist is evident in the arguments we have today over the agents in our environment which affect us and the mechanisms of these effects. It is hoped that this chapter and book will provide both the desire and some reference to follow and review the data in all receptor fields as they emerge in the next several years.

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受体结构和功能:以促甲状腺素受体为载体的探索性方法。
本章的目的并不是要给出最终的甚至是正确的TSH受体结构和功能模型。相反,目前提出的推测模型是用来打开大门,以更广泛的视角看待受体问题和争议,因为它已经发展到今天。我们如何定义受体的问题显然是不断变化的,而且比采用化学方法时最初考虑的要困难得多。将描述许多结合成分,并讨论它们与生理状态的相关性。有些在概念上显然是错误的,但争论和数据将开辟新的思路和方法,而不是重复的膜结合或反应测量。本书的其余部分将探讨受体结构、调节和功能的许多其他方面。读者可能会被数据的复杂性和外推性以及模型的弱点所困扰。然而,读者应该记住,受体是细胞与其环境的关键环节。这种联系的复杂性在我们对身体感官利用机制的持续关注中是显而易见的。在我们今天关于环境中影响我们的因素以及这些影响的机制的争论中,将会存在的争议是显而易见的。希望这一章和这一本书将提供愿望和一些参考,以便在未来几年内跟踪和审查所有受体领域的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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