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弓形虫依赖 TLR9 诱导肠道 α-防御素。

TLR9-dependent induction of intestinal alpha-defensins by Toxoplasma gondii.

机构信息

Department of Medicine, Dartmouth Medical School, Lebanon, NH 03756, USA.

出版信息

J Immunol. 2010 Jun 15;184(12):7022-9. doi: 10.4049/jimmunol.0901642. Epub 2010 May 19.

Abstract

Alpha-defensins (or Cryptdins [Crps]) are a group of antimicrobial peptides produced as a component of Paneth cell (PC) secretory granules in the small intestine. In vivo ligation of TLR9 by synthetic agonists leads to PC degranulation, although the mechanism by which this occurs remains uncertain. In this report, we investigated TLR9-dependent mechanisms, triggered by the parasite Toxoplasma gondii, inducing Crp release in the lumen. Oral challenge of C57BL/6J (B6) wild-type (WT) mice with T. gondii induced TLR9 mRNA upregulation associated with a marked increase of type I IFN mRNA expression. PC secretory granules were released, and Crp-3/-5 mRNA expression by purified epithelial cells was increased following oral challenge of B6 WT mice. Although PCs failed to degranulate in infected B6 TLR9-/- mice, i.p. injection of mouse IFN-beta alone led to Crp-3/-5 mRNA upregulation in B6 WT and TLR9-/- mice. In addition, modulation of Crp mRNA expression in response to T. gondii infection was abrogated in B6 IFNAR-/- mice, which lack a functional type I IFN receptor. Taken together, these data demonstrate that T. gondii induces Crp-3/-5 production and release by PCs via a TLR9-dependent production of type I IFNs. Crps have a limited direct effect against T. gondii but may indirectly affect the early control of T. gondii invasiveness by promoting the initiation of a protective Th1 response against the parasite.

摘要

α-防御素(或 Cryptdins [Crps])是一组抗菌肽,作为小肠 Paneth 细胞(PC)分泌颗粒的组成部分产生。体内 TLR9 的合成激动剂的连接导致 PC 脱颗粒,尽管其发生的机制尚不确定。在本报告中,我们研究了由寄生虫弓形虫触发的 TLR9 依赖性机制,这些机制诱导腔中 Crp 的释放。用弓形虫对 C57BL/6J(B6)野生型(WT)小鼠进行口服挑战诱导 TLR9 mRNA 上调,与 I 型 IFN mRNA 表达的显著增加相关。PC 分泌颗粒被释放,并且在用 B6 WT 小鼠进行口服挑战后,纯化的上皮细胞中的 Crp-3/-5 mRNA 表达增加。尽管在感染 B6 TLR9-/-小鼠中 PC 未能脱颗粒,但单独注射小鼠 IFN-β会导致 B6 WT 和 TLR9-/-小鼠中的 Crp-3/-5 mRNA 上调。此外,在缺乏功能性 I 型 IFN 受体的 B6 IFNAR-/-小鼠中,对 T. gondii 感染的 Crp mRNA 表达的调节被阻断。综上所述,这些数据表明,弓形虫通过 TLR9 依赖性产生 I 型 IFNs 诱导 Crp-3/-5 的产生和释放。Crps 对 T. gondii 有有限的直接作用,但可以通过促进针对寄生虫的保护性 Th1 反应的启动,间接影响对 T. gondii 侵袭性的早期控制。

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