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Conformational Difference in Human IgG2 Disulfide Isoforms Revealed by Hydrogen/Deuterium Exchange Mass Spectrometry

机译:氢气/氘交换质谱揭示人IgG2二硫化物同种型的构象差异

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Both recombinant and natural human IgG2 antibodies have several different disulfide bond isoforms, which, possess different global structures, thermal stabilities, and biological activities. A detailed mapping of the structural difference among IgG2 disulfide isoforms, however, has not been established. In this work, we employed hydrogen/deuterium exchange mass Spectrometry to study, the conformation of three major IgG2 disulfide isoforms known as IgG2-B, IgG2-A1, and IgG2-A2 in two recombinant human IgG2 monoclonal antibodies. By comparing the protection factors between amino acid residues in isoforms B and A1 (the classical form); we successfully identified several local regions in which the IgG2-B isoform showed more solvent protection than the IgG2-A1 isoform: On the basis of three-dimensional structural, models of IgG2, these identified regions were located on the Fab domains, close to the hinge, centered on the side where the two Fab ants faced each other in spatial proximity. We speculated that in the more solvent-protected B isoform, the two Fab arms were brought into contact :by the nonclassical disulfide bonds, resulting in a more compact global structure. Loss of Fab domain, flexibility in IgG2-B could limit its ability to access cell-surface epitopes, leading to reduced antigen binding potency. The A2 isoform was, previously found to have disulfide linkages, similar to those of the classical A1 isoform; but With different biophysical behaviors, Out data indicated that, compared to IgG2-A1, IgG2-A2 had less solvent protection in some heavy-chain Fab regions close the,hinge, suggesting that the A2 isoform had more flexible Fab domains.
机译:重组和天然人IgG2抗体均具有几种不同二硫键同种型,其具有不同的全球结构,热稳定性和生物活性。然而,尚未建立IgG2二硫化物同种型结构差异的详细绘图。在这项工作中,我们使用氢/氘交换质谱法研究,在两种重组人IgG2单克隆抗体中称为IgG2-B,IgG2-A1和IgG2-A2的三个主要IgG2二硫化物同种型的构象。通过比较同种型B和A1(典型形式)中氨基酸残基之间的保护因子;我们成功地确定了几种局部区域,其中IgG2-B同种型显示比IgG2-A1同种型更多的溶剂保护:基于IgG2的三维结构,这些所识别的区域位于Fab结构域,接近铰链,以空间接近彼此面对的两侧以侧面为中心。我们推测,在更溶剂保护的B同种型中,两个Fab臂被触及:通过非生物二硫键键,导致更紧凑的全球结构。 Fab结构域的丧失,IgG2-B中的灵活性可以限制其进入细胞表面表位的能力,导致抗原结合效力降低。以前发现A2同种型具有二硫化物键,类似于经典A1同种型的键;但是,通过不同的生物物理行为,向外数据表明,与IgG2-A1相比,IgG2-A2在一些重链Fab区内的溶剂保护较低,铰链呈现铰链,表明A2同种型具有更柔软的Fab结构域。

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