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结合部位调节抗体药物偶联物的体内稳定性和治疗活性。

Conjugation site modulates the in vivo stability and therapeutic activity of antibody-drug conjugates.

机构信息

Genentech Inc., 1 DNA Way, S. San Francisco, California, USA.

出版信息

Nat Biotechnol. 2012 Jan 22;30(2):184-9. doi: 10.1038/nbt.2108.

Abstract

The reactive thiol in cysteine is used for coupling maleimide linkers in the generation of antibody conjugates. To assess the impact of the conjugation site, we engineered cysteines into a therapeutic HER2/neu antibody at three sites differing in solvent accessibility and local charge. The highly solvent-accessible site rapidly lost conjugated thiol-reactive linkers in plasma owing to maleimide exchange with reactive thiols in albumin, free cysteine or glutathione. In contrast, a partially accessible site with a positively charged environment promoted hydrolysis of the succinimide ring in the linker, thereby preventing this exchange reaction. The site with partial solvent-accessibility and neutral charge displayed both properties. In a mouse mammary tumor model, the stability and therapeutic activity of the antibody conjugate were affected positively by succinimide ring hydrolysis and negatively by maleimide exchange with thiol-reactive constituents in plasma. Thus, the chemical and structural dynamics of the conjugation site can influence antibody conjugate performance by modulating the stability of the antibody-linker interface.

摘要

半胱氨酸中的反应性巯基用于偶联马来酰亚胺接头,以生成抗体缀合物。为了评估偶联位点的影响,我们在三个溶剂可及性和局部电荷不同的位置设计了半胱氨酸进入治疗性 HER2/neu 抗体。由于马来酰亚胺与白蛋白、游离半胱氨酸或谷胱甘肽中的反应性巯基发生交换,高度可及的位置会导致缀合的硫醇反应性接头在血浆中迅速丢失。相比之下,带有正电荷环境的部分可及位置会促进接头中琥珀酰亚胺环的水解,从而阻止这种交换反应。具有部分溶剂可及性和中性电荷的位置则同时具有这两种性质。在小鼠乳腺肿瘤模型中,抗体缀合物的稳定性和治疗活性受到琥珀酰亚胺环水解的积极影响,而受到与血浆中硫醇反应性成分发生马来酰亚胺交换的负面影响。因此,偶联位点的化学和结构动力学可以通过调节抗体-接头界面的稳定性来影响抗体缀合物的性能。

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