Mengyao Wang, Yuhong Zhou, Mengxiao Li, Shanhua Qin, Ziyue Qi, Meifang Li, Nan Yang, Yi Zhou, Xiaoya Wei, Yujie Zhang, Zhonghui Yang, Zhihui Cheng
Ehrlichia chaffeensis is an obligate intracellular bacterium that proliferates within monocytes or macrophages and causes human monocytic ehrlichiosis (HME), an emerging life-threatening zoonosis. Doxycycline is the choice of treatment for HME, yet it has prominent side effects. Host cells lack the lysine biosynthetic pathway; thus, the enzymes in this pathway are essential for bacterial growth and recognized as potential targets for the development of novel antibiotics. Here, we demonstrated that inhibitors targeting DapE, which is a key enzyme in the lysine biosynthetic pathway, especially disulfiram, effectively inhibit E. chaffeensis infection and intracellular growth. Through complementation experiments and peptide nucleic acid-mediated dapE knockdown, we showed that DapE in E. chaffeensis is functional and essential for bacterial intracellular growth. Using purified recombinant protein, we found that DapE induces IL-8 expression in host cells. Finally, we identified that NtrX, the response regulator of the two-component system NtrY/NtrX, regulates dapE expression using an electrophoretic mobility shift assay and a reporter assay. Our findings deepen the understanding of E. chaffeensis pathogenesis as well as illustrate that DapE in E. chaffeensis is a potential therapeutic target for the development of novel HME treatments.