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单克隆免疫球蛋白h1B4等电异质性的起源

Origin of the isoelectric heterogeneity of monoclonal immunoglobulin h1B4.

作者信息

Tsai P K, Bruner M W, Irwin J I, Ip C C, Oliver C N, Nelson R W, Volkin D B, Middaugh C R

机构信息

Department of Pharmaceutical Research, Merck Research Laboratories, West Point, Pennsylvania 19486.

出版信息

Pharm Res. 1993 Nov;10(11):1580-6. doi: 10.1023/a:1018912417607.

Abstract

The origin of the microheterogeneity of a highly purified antiinflammatory humanized monoclonal antibody prepared in mammalian cell culture has been investigated. This antibody is an IgG directed toward human CD18 (a subunit of leukocyte integrins). When the IgG preparation is subjected to isoelectric focusing, it is found to contain four major species with pI values ranging from 6 to 7. Although the relative amounts of each form differ and some species are present only in small quantities, each has been isolated by a combination of high-resolution anion-exchange chromatography and isoelectric focusing. Comparative studies reveal no detectable differences in overall secondary (far UV circular dichroism) or tertiary (intrinsic fluorescence) structure, molecular weight (laser-desorption mass spectroscopy), or antigen binding activity. When each of the isolated species is incubated under conditions which favor deamidation, it is converted to forms of lower pI which appear to correspond to naturally observed species. While the isolated light chain is relatively homogeneous, the heavy chain exhibits a pattern of isoelectric focusing bands similar to that of the intact immunoglobulin. These results suggest that in this case, charge microheterogeneity is due to the sequential deamidation of the immunoglobulin heavy chain.

摘要

对在哺乳动物细胞培养中制备的高度纯化的抗炎人源化单克隆抗体的微观异质性来源进行了研究。该抗体是一种针对人CD18(白细胞整合素的一个亚基)的IgG。当对该IgG制剂进行等电聚焦时,发现它含有四种主要成分,其pI值范围为6至7。尽管每种形式的相对含量不同,且有些成分仅少量存在,但每种成分都已通过高分辨率阴离子交换色谱和等电聚焦相结合的方法分离出来。比较研究表明,在整体二级结构(远紫外圆二色性)或三级结构(固有荧光)、分子量(激光解吸质谱)或抗原结合活性方面均未检测到差异。当将每种分离出的成分在有利于脱酰胺化的条件下孵育时,它会转化为较低pI的形式,这些形式似乎与天然观察到的成分相对应。虽然分离出的轻链相对均一,但重链呈现出与完整免疫球蛋白相似的等电聚焦带模式。这些结果表明,在这种情况下,电荷微观异质性是由于免疫球蛋白重链的顺序脱酰胺化所致。

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