淋病奈瑟菌
微生物学
抗菌剂
单克隆抗体
化学
免疫系统
流出
蛋白酵素
结合
细菌
蛋白酶
肽
细菌外膜
连接器
性传播疾病用杀菌剂
先天免疫系统
抗菌肽
生物
病毒学
奈瑟菌
抗体
内化
毒性
体外
体内
作用机理
药品
酶
作者
Hayley Lavender,Vincent Oliver,Daniel Lucy,Timothy A. Barendt,Ann E. Jerse,Christoph M. Tang
标识
DOI:10.1073/pnas.2534217123
摘要
Neisseria gonorrhoeae is the causative agent of gonorrhea, a sexually transmitted infection which is rising in incidence, with increasing drug-resistant strains posing a significant public health threat. To address the urgent need for novel therapies, we developed an antibody–drug conjugate (ADC) that targets this important human pathogen. We utilized Tridecaptin A 1, a potent antimicrobial peptide (AMP) against Gram-negative bacteria that exhibits significant toxicity against human cells, limiting its development for clinical use. By conjugating the Tridecaptin A 1 analogue, Oct-TriA 1 to a monoclonal antibody (mAb) that specifically targets gonococcal MtrE, the outer membrane component of a drug efflux pump that is upregulated in resistant strains, we aim to selectively deliver the AMP to the gonococcus. However, Oct-TriA 1 was not bactericidal when directly conjugated to mAb. To circumvent this, we exploited an immune evasion mechanism employed by the gonococcus by introducing a linker between Oct-TriA 1 and the mAb which is specifically cleaved by the IgA protease (IgAP) secreted by the gonococcus; the IgAP inactivates human IgA. This ADC has no detectable toxicity for relevant human cells, kills the gonococcus in an MtrE- and IgAP-dependent manner, and is active against a strain which is resistant to first line agents. This modular ADC platform could be extended to other bacterial pathogens which employ proteases to evade immune killing, offering a strategy in the fight against antimicrobial resistance.
科研通智能强力驱动
Strongly Powered by AbleSci AI