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促甲状腺激素受体胞外域含有两个而非一个裂解位点的证据。

Evidence that the thyrotropin receptor ectodomain contains not one, but two, cleavage sites.

作者信息

Chazenbalk G D, Tanaka K, Nagayama Y, Kakinuma A, Jaume J C, McLachlan S M, Rapoport B

机构信息

Thyroid Molecular Biology Unit, Veterans' Administration Medical Center, and the University of California, San Francisco 94121, USA.

出版信息

Endocrinology. 1997 Jul;138(7):2893-9. doi: 10.1210/endo.138.7.5259.

Abstract

TSH receptor (TSHR) cleavage into two subunits (A and B) was explored using two new mammalian cell lines expressing the recombinant receptor; 1) TSHR-10,000 CHO cells overexpressing the TSHR; 2) TSHRmyc cells with a c-myc epitope inserted at residues 338-349. Immunoprecipitation or immunoblotting of TSHR-10,000 cells with mAb to either the A subunit or the B subunit revealed multiple forms of the TSHR: 1) uncleaved receptors of approximately 115 kDa and approximately 100 kDa with complex carbohydrate and high mannose carbohydrate, respectively; 2) two subunit TSHR with an approximately 62 kDa A subunit containing complex carbohydrate. The A subunit was approximately 35 kDa after enzymatic deglycosylation (predicted C-terminus near residue 330). The nonglycosylated B subunit was evident primarily as an approximately 42 kDa band (predicted N terminus near residue 380). The sum of the A and B subunit polypeptide backbones was smaller than the predicted size of the TSHR, a polypeptide backbone (84.5 kDa), raising the possibility that an approximately 5-kDa polypeptide fragment was excised during intramolecular cleavage. This hypothesis was supported by data obtained with the TSHRmyc cells. Thus, mAb to the c-myc epitope and to amino acid residues 22-35 (mAb A10) were equally effective in detecting the single chain forms of the TSHR in these cells. However, the 35 kDa, deglycosylated A subunit was clearly visible on immunoprecipitation with mAb A10 to the TSHR amino terminus, but not with the anti-myc mAb, indicating loss of the c-myc epitope at residues 338-349. Further, even though the A subunit was not detected in TSHRmyc cells with anti-myc mAb, 125I-TSH cross-linking to the cell surface showed similar A subunit expression in TSHRmyc and wild-type TSHR expressing cells. In summary, our study provides a surprising and novel finding for G protein-coupled receptors. Contrary to the prevailing concept of one cleavage site in the TSHR, we present evidence that there are, in fact, two such sites. The TSHR, like insulin, may release a C peptide during intramolecular cleavage into two subunits.

摘要

利用两种表达重组促甲状腺激素受体(TSH受体,TSHR)的新型哺乳动物细胞系,研究了TSHR裂解为两个亚基(A和B)的情况;1)过表达TSHR的TSHR - 10000中国仓鼠卵巢(CHO)细胞;2)在338 - 349位残基处插入了c - myc表位的TSHRmyc细胞。用针对A亚基或B亚基的单克隆抗体(mAb)对TSHR - 10000细胞进行免疫沉淀或免疫印迹分析,结果显示TSHR有多种形式:1)分子量约为115 kDa和100 kDa的未裂解受体,分别带有复合碳水化合物和高甘露糖碳水化合物;2)由一个分子量约为62 kDa、带有复合碳水化合物的A亚基组成的双亚基TSHR。酶促去糖基化后,A亚基分子量约为35 kDa(预测的C末端靠近330位残基)。未糖基化的B亚基主要表现为一条约42 kDa的条带(预测的N末端靠近380位残基)。A亚基和B亚基多肽主链的总和小于TSHR多肽主链(84.5 kDa)的预测大小,这增加了在分子内裂解过程中切除了一个约5 kDa多肽片段的可能性。这一假说得到了用TSHRmyc细胞获得的数据的支持。因此,针对c - myc表位和22 - 35位氨基酸残基的mAb(mAb A10)在检测这些细胞中TSHR的单链形式时同样有效。然而,用针对TSHR氨基末端的mAb A10进行免疫沉淀时,35 kDa的去糖基化A亚基清晰可见,但用抗c - myc mAb时则不可见,这表明338 - 349位残基处的c - myc表位丢失了。此外,尽管用抗c - myc mAb在TSHRmyc细胞中未检测到A亚基,但125I - TSH与细胞表面的交联显示,TSHRmyc细胞和表达野生型TSHR的细胞中A亚基的表达相似。总之,我们的研究为G蛋白偶联受体提供了一个惊人的新发现。与TSHR中存在一个裂解位点的普遍概念相反,我们提供的证据表明实际上有两个这样的位点。TSHR与胰岛素类似,在分子内裂解为两个亚基的过程中可能会释放出一个C肽。

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