Department of Microbiology and Parasitology; Anhui Province Key Laboratory of Zoonoses, School of Basic Medical Sciences, Anhui Medical University, Hefei, 230032, People's Republic of China.
Parasit Vectors. 2024 Nov 29;17(1):495. doi: 10.1186/s13071-024-06584-z.
TgMIC1, a soluble adhesion protein that typically facilitates parasite invasion, exhibited varying expression levels among distinct virulence strains of Chinese 1 Toxoplasma. This study aims to explore its role in immunological regulation and its association with diverse postinfection outcomes in Toxoplasma infection.
First, the mic1 knockout strain Wh3Δmic1 was generated and assessed for its virulence and proliferative capacity. Subsequently, the serum inflammation levels were examined in mice infected with Wh3Δmic1, Wh3, and Wh6. Furthermore, rMIC1 and rMIC1-T126A/T220A, which lack binding sites to N-glycan in TLR4, were produced for coculture with bone marrow-derived macrophages (BMDMs) to investigate their impact on pyroptosis.
Our data showed Wh3Δmic1 exhibited a significant reduction in invasion efficiency, limited growth, and attenuated inflammatory responses in mice. Additionally, it displayed a decreased capacity to induce pyroptosis when compared with Wh3-infected BMDMs. Moreover, rMIC1 but not rMIC1-T126A/T220A was found to be able to upregulate NOD-like receptor pyrin domain-containing protein 3 (NLRP3) and activate GSDMD and caspase-1 in BMDMs but not in TLR4 and NLRP3 BMDMs.
TgMIC1 is implicated in both parasite invasion and the modulation of macrophage pyroptosis via the TLR4/NLRP3 pathway. This investigation indicates that TgMIC1 serves diverse functions in Toxoplasma gondii infection, thereby enhancing comprehension of the immune regulatory mechanisms of the parasite.
TgMIC1 是一种可溶性黏附蛋白,通常有助于寄生虫入侵,在中国不同毒力株的 1 型弓形虫中表现出不同的表达水平。本研究旨在探讨其在免疫调节中的作用及其与弓形虫感染后不同结局的关系。
首先生成 Wh3Δmic1 的 mic1 敲除株,并评估其毒力和增殖能力。随后,检测 Wh3Δmic1、Wh3 和 Wh6 感染小鼠的血清炎症水平。此外,产生缺乏 TLR4 中 N-糖基结合位点的 rMIC1 和 rMIC1-T126A/T220A 与骨髓来源的巨噬细胞(BMDM)共培养,以研究它们对细胞焦亡的影响。
我们的数据表明,Wh3Δmic1 的入侵效率显著降低,在小鼠体内的生长受限,炎症反应减弱。此外,与 Wh3 感染的 BMDM 相比,它诱导细胞焦亡的能力降低。此外,rMIC1 而非 rMIC1-T126A/T220A 能够上调 BMDM 中的 NOD 样受体 pyrin 结构域包含蛋白 3(NLRP3)并激活 GSDMD 和 caspase-1,但在 TLR4 和 NLRP3 BMDM 中则不然。
TgMIC1 参与寄生虫入侵和通过 TLR4/NLRP3 途径调节巨噬细胞细胞焦亡。本研究表明,TgMIC1 在弓形虫感染中具有多种功能,从而增强了对寄生虫免疫调节机制的理解。