Department of Systems Pharmacology and Translational Therapeutics, Perelman School of Medicine and ‡Department of Bioengineering, University of Pennsylvania , Philadelphia, Pennsylvania 19104, United States.
Bioconjug Chem. 2018 Jan 17;29(1):56-66. doi: 10.1021/acs.bioconjchem.7b00592. Epub 2017 Dec 29.
The conjugation of antibodies to drugs and drug carriers improves delivery to target tissues. Widespread implementation and effective translation of this pharmacologic strategy awaits the development of affinity ligands capable of a defined degree of modification and highly efficient bioconjugation without loss of affinity. To date, such ligands are lacking for the targeting of therapeutics to vascular endothelial cells. To enable site-specific, click-chemistry conjugation to therapeutic cargo, we used the bacterial transpeptidase, sortase A, to attach short azidolysine containing peptides to three endothelial-specific single chain antibody fragments (scFv). While direct fusion of a recognition motif (sortag) to the scFv C-terminus generally resulted in low levels of sortase-mediated modification, improved reaction efficiency was observed for one protein, in which two amino acids had been introduced during cloning. This prompted insertion of a short, semi-rigid linker between scFv and sortag. The linker significantly enhanced modification of all three proteins, to the extent that unmodified scFv could no longer be detected. As proof of principle, purified, azide-modified scFv was conjugated to the antioxidant enzyme, catalase, resulting in robust endothelial targeting of functional cargo in vitro and in vivo.
抗体与药物和药物载体的缀合可改善药物向靶组织的递送。这种药理策略的广泛实施和有效转化,需要开发出能够进行一定程度修饰且高效生物偶联而不损失亲和力的亲和配体。迄今为止,对于将治疗药物靶向血管内皮细胞,还缺乏这样的配体。为了实现对治疗药物有效负载的特异性点击化学偶联,我们使用细菌转肽酶,即 sortase A,将含有短叠氮赖氨酸的肽连接到三个内皮细胞特异性单链抗体片段(scFv)上。虽然将识别基序(sortag)直接融合到 scFv 的 C 末端通常会导致 sortase 介导的修饰水平较低,但在克隆过程中引入两个氨基酸后,观察到一种蛋白质的反应效率提高。这促使在 scFv 和 sortag 之间插入一个短的、半刚性接头。该接头显著增强了所有三种蛋白质的修饰程度,以至于无法再检测到未修饰的 scFv。作为原理验证,纯化的、叠氮化物修饰的 scFv 与抗氧化酶,即过氧化氢酶相偶联,导致功能性有效负载在体外和体内的内皮靶向性增强。