Lianhua Qin, Junfang Xu, Jianxia Chen, Sen Wang, Ruijuan Zheng, Zhenling Cui, Zhonghua Liu, Xiangyang Wu, Jie Wang, Xiaochen Huang, Zhaohui Wang, Mingqiao Wang, Rong Pan, Stefan H E Kaufmann, Xun Meng, Lu Zhang, Wei Sha, Haipeng Liu
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引用次数: 0
摘要
深入了解宿主细胞与结核分枝杆菌(Mtb)之间的相互作用,为合理设计新型结核病(TB)干预策略提供了重要指导。分枝杆菌拥有独特的复杂细胞壁,阿拉伯半乳聚糖(AG)是其中的关键成分。AG已被确认为Mtb的毒力因子,可被宿主的galectin-9识别。在这里,我们证明了加列汀-9 通过碳水化合物识别域 2 的 AG 结合特性直接抑制了分枝杆菌的生长。基于加列汀-9与AG之间的相互作用,我们开发了一种单克隆抗体(mAb)筛选方法,并鉴定出了能有效抑制Mtb生长的AG特异性mAb。从机理上讲,蛋白质组学分析和形态学特征显示,AG 特异性 mAbs 可调节 AG 的生物合成,从而诱导细胞壁膨胀。因此,Galectin-9 或抗体直接与 AG 结合有助于防止结核病。我们的发现为合理设计新型结核病控制免疫治疗策略铺平了道路。
Cell-autonomous targeting of arabinogalactan by host immune factors inhibits mycobacterial growth.
Deeper understanding of the crosstalk between host cells and Mycobacterium tuberculosis (Mtb) provides crucial guidelines for the rational design of novel intervention strategies against tuberculosis (TB). Mycobacteria possess a unique complex cell wall with arabinogalactan (AG) as a critical component. AG has been identified as a virulence factor of Mtb which is recognized by host galectin-9. Here, we demonstrate that galectin-9 directly inhibited mycobacterial growth through AG-binding property of carbohydrate-recognition domain 2. Furthermore, IgG antibodies with AG specificity were detected in the serum of TB patients. Based on the interaction between galectin-9 and AG, we developed a monoclonal antibody (mAb) screening assay and identified AG-specific mAbs which profoundly inhibit Mtb growth. Mechanistically, proteomic profiling and morphological characterizations revealed that AG-specific mAbs regulate AG biosynthesis, thereby inducing cell wall swelling. Thus, direct AG-binding by galectin-9 or antibodies contributes to protection against TB. Our findings pave the way for the rational design of novel immunotherapeutic strategies for TB control.
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