首页> 外文期刊>British Journal of Cancer >Dissociation of thyrotropin receptor function and thyrotropin dependency in rat thyroid tumour cell lines derived from FRTL-5
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Dissociation of thyrotropin receptor function and thyrotropin dependency in rat thyroid tumour cell lines derived from FRTL-5

机译:FRTL-5衍生的大鼠甲状腺肿瘤细胞系中促甲状腺激素受体功能的解离和促甲状腺素依赖性

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Spontaneously transformed somatic thyrocyte mutants, FRTL-5/TA and FRTL-5/TP, are thyrotropin (TSH) independent for growth and show loss of the thyroid-specific phenotype, with absent thyroglobulin and thyroid peroxidase gene expression. To investigate the role of TSH-receptor (TSH-R) activation in rat thyroid growth and function, binding of TSH and TSH-induced cAMP production were measured in intact cells under identical assay conditions. TSH binding did not differ in terms of affinity and receptor number and presence of 5.6 kb and 3.3 kb mRNA rat TSH-R transcripts was determined in all variants. By contrast, basal cAMP was 11-fold lower in FRTL-5/TA and 6-fold lower in FRTL-5/TP than in wild-type FRTL-5 (1.1 +/- 0.4; P < 0.01). Maximal cAMP production was similar between wild-type and cell variants and stimulation by bovine, rat and recombinant human TSH revealed normal activation patterns. Therefore, a dissociation was present between the loss of TSH control on growth and function, and the presence of a normally functioning TSH-R. Subsequent to TSH incubation FRTL-5/TP and FRTL-5/TA cells showed a different expression pattern of TSH-R and the proto oncogenes c-myc and fos than FRTL-5 wild-type. The data indicated that the cause of the TSH-independency is located down-stream of the cAMP cascade, influencing genes that control the expression of cell cycle-related proto-oncogenes and thyroid-specific genes.
机译:自发转化的体细胞甲状腺细胞突变体FRTL-5 / TA和FRTL-5 / TP是促甲状腺激素(TSH),独立于生长,并显示甲状腺特异性表型丧失,缺乏甲状腺球蛋白和甲状腺过氧化物酶基因表达。为了研究TSH受体(TSH-R)激活在大鼠甲状腺生长和功能中的作用,在相同的测定条件下,在完整细胞中测量了TSH和TSH诱导的cAMP产生的结合。 TSH结合在亲和力和受体数量方面没有差异,并且在所有变体中确定了5.6 kb和3.3 kb mRNA的大鼠TSH-R转录本的存在。相比之下,与野生型FRTL-5相比,FRTL-5 / TA的基础cAMP低11倍,FRTL-5 / TP的基础cAMP低6倍(1.1 +/- 0.4; P <0.01)。在野生型和细胞变体之间,最大的cAMP产生是相似的,牛,大鼠和重组人TSH的刺激显示出正常的激活模式。因此,在失去对生长和功能的TSH控制与正常运行的TSH-R的存在之间存在分离。 TSH孵育后,FRTL-5 / TP和FRTL-5 / TA细胞显示的TSH-R和原癌基因c-myc和fos的表达模式与FRTL-5野生型不同。数据表明,TSH独立性的原因位于cAMP级联反应的下游,影响控制细胞周期相关原癌基因和甲状腺特异性基因表达的基因。

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