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FRTL5大鼠甲状腺细胞系中促甲状腺激素受体的特性与调控

Properties and regulation of the thyrotropin receptor in the FRTL5 rat thyroid cell line.

作者信息

Tramontano D, Ingbar S H

出版信息

Endocrinology. 1986 May;118(5):1945-51. doi: 10.1210/endo-118-5-1945.

Abstract

Despite extensive use of FRTL5 cells in studies of responses to TSH and anti-TSH receptor antibodies, almost nothing is known of the properties of their TSH receptors, possibly because binding of TSH by these cells is negligible when studied in their usual culture medium. In the present studies, we have demonstrated that specific binding of TSH can readily be demonstrated in confluent monolayers of FRTL5 cells if their culture medium is replaced by Krebs-Ringer bicarbonate (KRB) buffer. In keeping with previous observations concerning the effects of cations on the binding of TSH in other thyroid systems, binding of TSH to FRTL5 was far greater when the medium used was a modified KRB in which an isosmotic substitution of sucrose for NaCl had been made. Kinetic studies of TSH binding in both types of medium suggested the presence of two binding sites, one with a higher affinity and lower maximum binding capacity than the other. The influence of NaCl was to decrease the capacity of both sites, that of the low affinity site to a greater extent than that of the high affinity site, whereas the affinities of the two sites remained unchanged. Correlative studies indicated that physiological responses to TSH were associated mainly with occupancy of the higher affinity sites. Experiments in which TSH binding was studied in cells grown to confluence in the presence of TSH from which TSH was then withdrawn and in cells maintained in the absence of TSH to which TSH was then added demonstrated the occurrence of up-and down-regulation, respectively, of receptor concentrations without a change in their affinities. The reduction in maximum binding capacity induced by TSH was proportionately greater in the case of the high affinity than the low affinity receptor. Down-regulation by TSH was concentration dependent and was demonstrable at a TSH concentration of 10(-11) M, considered to be physiological. Further, maximum down-regulation was induced by 10(-9) M TSH, the approximate concentration at which other responses to TSH in these cells reach their peak. Therefore, down-regulation of TSH receptors can be considered to be one of the physiological responses that TSH elicits.

摘要

尽管FRTL5细胞在促甲状腺激素(TSH)和抗TSH受体抗体反应的研究中被广泛使用,但对其TSH受体的特性却几乎一无所知,这可能是因为在常规培养基中研究时,这些细胞对TSH的结合可以忽略不计。在本研究中,我们已经证明,如果用 Krebs-Ringer 碳酸氢盐(KRB)缓冲液代替其培养基,TSH的特异性结合在FRTL5细胞的汇合单层中很容易被证明。与先前关于阳离子对其他甲状腺系统中TSH结合影响的观察结果一致,当使用的培养基是用蔗糖等渗替代NaCl的改良KRB时,TSH与FRTL5的结合要大得多。在两种培养基中对TSH结合的动力学研究表明存在两个结合位点,一个位点的亲和力较高,最大结合容量低于另一个位点。NaCl的影响是降低两个位点的容量,低亲和力位点的容量降低幅度大于高亲和力位点,而两个位点的亲和力保持不变。相关性研究表明,对TSH的生理反应主要与高亲和力位点的占据有关。在TSH存在下生长至汇合然后去除TSH的细胞中以及在不存在TSH然后添加TSH的细胞中研究TSH结合的实验分别证明了受体浓度的上调和下调,而它们的亲和力没有变化。TSH诱导的最大结合容量的降低在高亲和力受体的情况下比低亲和力受体成比例地更大。TSH的下调是浓度依赖性的,在10^(-11) M的TSH浓度下即可证明,该浓度被认为是生理浓度。此外,10^(-9) M的TSH诱导最大下调,该浓度大约是这些细胞中对TSH的其他反应达到峰值的浓度。因此,TSH受体的下调可以被认为是TSH引发的生理反应之一。

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