Tsai J A, Janson A, Bucht E, Kindmark H, Marcus C, Stark A, Zemack H Rawet, Torring O
Department of Surgery, Huddinge University Hospital, P Karolinska Institutet, Stockholm, Sweden.
Calcif Tissue Int. 2004 May;74(5):486-91. doi: 10.1007/s00223-003-0108-3. Epub 2004 Feb 17.
Extra-thyroidal thyrotropin (TSH) receptors (TSHRs) have been demonstrated in several tissues and cells, including human and rat osteosarcoma cell lines. We have explored whether human TSHR (hTSHRs) also are present in primary cultures of human osteoblast-like (hOB) cells. [(125) I]TSH binding was limited in hOB cells, but somewhat higher in UMR 106-01 cells and considerably higher in hTSHR-transfected CHO cells. In hOB cells, the basal intracellular cAMP levels increased 282% after stimulation with 10 U/L TSH. In the hTSHR-transfected CHO cells, the cAMP increase was 3030% in response to 10 U/L TSH and 1240% after 1 U/L TSH. Free cytoplasmic calcium did not change in response to TSH in hOB cells. HTSHR mRNA was detected in hOB cells from 3/4 bone by reverse transcriptase polymerase chain reaction RT-PCR and nucleotide sequencing HTSHR mRNA, but could not be demonstrated with the RNase protection technique in hOB cells from 5 different donors. In conclusion, even after the use of several methods, we have found only weak evidence for expression and presence of functionally active hTSHR in hOB cells. Given the low level of expression, specific binding and cAMP signaling, we suggest that it is unlikely that circulating TSH plays a physiological role for bone metabolism mediated through osteoblasts.
甲状腺外促甲状腺激素(TSH)受体(TSHRs)已在包括人及大鼠骨肉瘤细胞系在内的多种组织和细胞中得到证实。我们探究了人促甲状腺激素受体(hTSHRs)是否也存在于原代培养的人成骨样(hOB)细胞中。[(125)I]TSH结合在hOB细胞中有限,但在UMR 106 - 01细胞中略高,在hTSHR转染的CHO细胞中则显著更高。在hOB细胞中,用10 U/L TSH刺激后,基础细胞内cAMP水平增加了282%。在hTSHR转染的CHO细胞中,对10 U/L TSH的cAMP增加为3030%,对1 U/L TSH的增加为1240%。hOB细胞中游离细胞质钙对TSH无反应。通过逆转录聚合酶链反应RT - PCR和核苷酸测序在来自3/4块骨的hOB细胞中检测到了HTSHR mRNA,但在来自5个不同供体的hOB细胞中,用核糖核酸酶保护技术未能证实。总之,即使使用了多种方法,我们仅发现了hOB细胞中功能性活性hTSHR表达和存在的微弱证据。鉴于表达水平、特异性结合和cAMP信号传导较低,我们认为循环TSH不太可能通过成骨细胞对骨代谢发挥生理作用。