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Genetic engineering of single-chain gonadotropins and hormone-receptor fusion proteins.

机译:单链促性腺激素和激素受体融合蛋白的基因工程。

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摘要

The gonadotropin hormone family is distinguished by its heterodimeric structure in which the members share a common alpha subunit and a hormone-specific beta subunit. Since assembly of the heterodimer is often the rate-limiting step in production of functional hormone, single-chain hormones have been engineered by genetically linking the two subunits. The single-chain hormone can in turn be fused to its receptor to produce a functional single-chain hormone-receptor complex. These fusion constructs offer a valuable new approach in structure-function studies and in the generation of hormone analogs. In this article we describe the experimental design for the generation of single-chain human chorionic gonadotropin and single-chain hormone-receptor fusion complex and strategies for the expression of these fusion proteins. Copyright 2000 Academic Press.
机译:促性腺激素家族的特点是其异二聚体结构,其中成员共享一个共同的α亚基和一个激素特异性β亚基。由于异二聚​​体的组装通常是功能性激素生产中的限速步骤,因此通过遗传连接两个亚基来设计单链激素。单链激素又可以与其受体融合以产生功能性单链激素-受体复合物。这些融合构建体为结构功能研究和激素类似物的产生提供了一种有价值的新方法。在本文中,我们描述了单链人绒毛膜促性腺激素和单链激素受体融合复合物生成的实验设计以及这些融合蛋白的表达策略。版权所有2000学术出版社。

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