The Key Laboratory of Molecular Microbiology and Technology, Ministry of Education, Nankai University, Tianjin 300071, China.
Department of Microbiology, College of Life Sciences, Nankai University, Tianjin 300071, China.
Int J Mol Sci. 2024 Jul 19;25(14):7895. doi: 10.3390/ijms25147895.
infects and proliferates inside monocytes or macrophages and causes human monocytic ehrlichiosis (HME), an emerging life-threatening tick-borne zoonosis. After internalization, resides in specialized membrane-bound inclusions, -containing vesicles (ECVs), to evade from host cell innate immune responses and obtain nutrients. However, mechanisms exploited by host cells to inhibit growth in ECVs are still largely unknown. Here we demonstrate that host cells recognize Ech_1067, a penicillin-binding protein, and then upregulate the expression of PIT1, which is a phosphate transporter and transports phosphate from ECVs to the cytosol to inhibit bacterial growth. We found that host cells upregulate the PIT1 expression upon infection using transcriptome sequencing, qRT-PCR and Western blotting, and PIT1 is localized on the ECV membrane in infected THP-1 cells using confocal microscopy. Silence of PIT1 using shRNA enhances intracellular growth. Finally, we found that Ech_1067 induces the upregulation of PIT1 expression through the MyD88-NF-κB pathway using recombinant protein for stimulation and siRNA for silence. Our findings deepen the understanding of the innate immune responses of host cells to inhibit bacterial intracellular growth and facilitate the development of new therapeutics for HME.
感染并在单核细胞或巨噬细胞内增殖,导致人类单核细胞埃立克体病(HME),这是一种新出现的危及生命的蜱传动物病。进入细胞内后, 位于特殊的膜结合内含物中, -包含小泡(ECV),以逃避宿主细胞固有免疫反应并获取营养。然而,宿主细胞用来抑制 ECV 中 生长的机制在很大程度上仍然未知。在这里,我们证明宿主细胞识别 Ech_1067,一种青霉素结合蛋白,然后上调磷酸转运蛋白 PIT1 的表达,PIT1 将磷酸从 ECV 转运到细胞质中以抑制细菌生长。我们通过转录组测序、qRT-PCR 和 Western blot 发现,在 感染后,宿主细胞上调 PIT1 的表达,并用共聚焦显微镜发现 PIT1 定位于感染的 THP-1 细胞的 ECV 膜上。使用 shRNA 沉默 PIT1 会增强 细胞内生长。最后,我们发现 Ech_1067 通过刺激重组蛋白和沉默 siRNA 诱导 PIT1 表达的上调通过 MyD88-NF-κB 途径。我们的研究结果加深了对宿主细胞固有免疫反应抑制细菌细胞内生长的理解,并为 HME 的新疗法的开发提供了便利。