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利用甲氨蝶呤扩增法大规模合成重组人促甲状腺素:色谱、免疫学及生物学特性分析

Large scale synthesis of recombinant human thyrotropin using methotrexate amplification: chromatographic, immunological, and biological characterization.

作者信息

Hussain A, Zimmerman C A, Boose J A, Froehlich J, Richardson A, Horowitz R S, Collins M T, Lash R W

机构信息

Department of Medicine, University of Maryland School of Medicine, Baltimore, USA.

出版信息

J Clin Endocrinol Metab. 1996 Mar;81(3):1184-8. doi: 10.1210/jcem.81.3.8772598.

Abstract

Studies of human TSH (hTSH) structure and function have been limited by difficulties in producing large quantities of recombinant hormone. We describe a system for the stable expression of high levels of recombinant human TSH (rec hTSH) using a mutant form of dihydrofolate reductase (dhfr) as an amplifiable dominant selectable marker. A vector expressing both the hTSH alpha-subunit and the mutant dhfr was cotransfected with a hTSH beta-subunit expression vector into dhfr-deficient cells. Amplification of the transfected sequences by methotrexate selection, followed by cell culture in a hollow fiber perfusion system, yielded rec hTSH production as high as 100,000 microU/ mL. Immunoradiometric assays using five different antibodies revealed no differences in the immunological activities of rec hTSH and pituitary hTSH. Bioactivity was measured in a novel TSH bioassay coupling the generation of cAMP by a transfected hTSH receptor to the cAMP-dependent regulation of a luciferase reporter gene. The ED50 for bovine TSH in this bioassay was 1.4 ng/mL (3.5 x 10(-11) mol/L). The ratio of the ED50 values for rec hTSH and pituitary hTSH was 1.0:1.1 (P = NS), indicating that the two TSHs were of equivalent potency. In conclusion, we have developed techniques for the high level production of rec hTSH that is immunologically and biologically equivalent to pituitary hTSH. The ability to produce large quantities of rec hTSH using standard laboratory techniques should facilitate future studies, such as the development of clinically useful TSH analogs.

摘要

由于难以大量生产重组激素,对人促甲状腺激素(hTSH)结构和功能的研究受到了限制。我们描述了一种利用二氢叶酸还原酶(dhfr)的突变形式作为可扩增显性选择标记来稳定表达高水平重组人促甲状腺激素(rec hTSH)的系统。将表达hTSHα亚基和突变dhfr的载体与hTSHβ亚基表达载体共转染到缺乏dhfr的细胞中。通过甲氨蝶呤选择扩增转染序列,然后在中空纤维灌注系统中进行细胞培养,产生的rec hTSH产量高达100,000微单位/毫升。使用五种不同抗体的免疫放射测定法显示,rec hTSH和垂体hTSH的免疫活性没有差异。通过一种新型的TSH生物测定法测量生物活性,该方法将转染的hTSH受体产生cAMP与荧光素酶报告基因的cAMP依赖性调节偶联起来。在该生物测定法中,牛TSH的ED50为1.4纳克/毫升(3.5×10⁻¹¹摩尔/升)。rec hTSH和垂体hTSH的ED50值之比为1.0:1.1(P = 无显著性差异),表明这两种TSH具有同等效力。总之,我们已经开发出了用于高水平生产rec hTSH的技术,其在免疫和生物学上与垂体hTSH等效。使用标准实验室技术大量生产rec hTSH的能力应有助于未来的研究,例如开发临床上有用的TSH类似物。

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