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用于评估重链和轻链对抗体结合位点贡献的核磁共振技术。

NMR technique for assessing contributions of heavy and light chains to an antibody combining site.

作者信息

Anglister J, Frey T, McConnell H M

出版信息

Nature. 1985;315(6014):65-7. doi: 10.1038/315065a0.

Abstract

Nuclear magnetic resonance (NMR) has been used extensively to study the structure of antibody combining sites. In recent studies we have observed the proton resonance spectra of the Fab fragment of a monoclonal anti-spin-label antibody derived from a hybridoma grown on various specifically deuterated amino acids. The broadening of the proton resonance signals by the paramagnetic hapten, together with selective deuteration, has allowed the identification of most of the amino acids in the combining-site region of this antibody and has also provided estimates of distances between amino-acid protons and the unpaired electron. Here we show how recombination of specifically deuterated heavy and light chains permits the assignment of single amino-acid proton resonance signals to either the heavy or light chain. In addition, the spectra of such recombinants demonstrate that their combining-site structures must be almost identical to the native structure.

摘要

核磁共振(NMR)已被广泛用于研究抗体结合位点的结构。在最近的研究中,我们观察了源自生长在各种特定氘代氨基酸上的杂交瘤的单克隆抗自旋标记抗体的Fab片段的质子共振光谱。顺磁性半抗原导致的质子共振信号展宽,再加上选择性氘代,使得我们能够识别该抗体结合位点区域中的大多数氨基酸,并且还提供了氨基酸质子与未配对电子之间距离的估计值。在这里,我们展示了特定氘代重链和轻链的重组如何允许将单个氨基酸质子共振信号分配给重链或轻链。此外,这些重组体的光谱表明它们的结合位点结构必须与天然结构几乎相同。

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