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基因工程抗体分子的制备与特性分析

Production and characterization of genetically engineered antibody molecules.

作者信息

Morrison S L, Canfield S, Porter S, Tan L K, Tao M H, Wims L A

机构信息

Department of Microbiology, Columbia University College of Physicians and Surgeons, New York, NY 10032.

出版信息

Clin Chem. 1988 Sep;34(9):1668-75.

PMID:3138036
Abstract

Expression of antibody heavy- and light-chain genes by transfection permits the production of monoclonal antibodies with improved biological and antigen-binding properties. The immunoglobulin genes are placed in vectors containing a gene for encoding a protein that provides a biochemically selectable function in eukaryotic cells; these vectors are transfected into myeloma and hybridoma cells. Selection of drug-resistant cells permits the efficient isolation of the rare cells that express the transfected DNA. By placing heavy and light chains on plasmids with different selectable markers, one can deliver heavy- and light-chain genes simultaneously to the same cell. The transfected immunoglobulin genes are efficiently expressed and the proteins produced are a faithful mirror of the genes that were introduced. Using the standard techniques of genetic engineering and gene transfection, we can now produce antibodies of widely varying structures, including chimeric antibodies with segments derived from different species. These antibodies provide useful reagents to study structure-function relationships within the antibody molecule. Ultimately it will be possible to produce a new generation of antibody molecules with improved antigen-binding properties and effector functions.

摘要

通过转染表达抗体重链和轻链基因可产生具有改善的生物学和抗原结合特性的单克隆抗体。免疫球蛋白基因被置于含有编码一种在真核细胞中提供生化可选择功能的蛋白质的基因的载体中;这些载体被转染到骨髓瘤细胞和杂交瘤细胞中。选择耐药细胞可有效分离出表达转染DNA的稀有细胞。通过将重链和轻链置于具有不同选择标记的质粒上,可将重链和轻链基因同时传递到同一个细胞中。转染的免疫球蛋白基因能高效表达,产生的蛋白质忠实地反映了导入的基因。利用基因工程和基因转染的标准技术,我们现在能够生产结构广泛不同的抗体,包括具有源自不同物种片段的嵌合抗体。这些抗体为研究抗体分子内的结构-功能关系提供了有用的试剂。最终,有可能生产出具有改善的抗原结合特性和效应功能的新一代抗体分子。

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