Deoxynucleic Acids from Cryptococcus neoformans Activate Myeloid Dendritic Cells via a TLR9-Dependent Pathway

新生隐球菌 TLR9型 生物 分子生物学 CpG寡核苷酸 CD40 巴非霉素 微生物学 基因 基因表达 细胞毒性T细胞 体外 DNA甲基化 生物化学 细胞凋亡 自噬
作者
Kiwamu Nakamura,Akiko Miyazato,Gang Xiao,Mochammad Hatta,Ken Inden,Tetsuji Aoyagi,Kohei Shiratori,Kiyoshi Takeda,Shizuo Akira,Shinobu Saijo,Yoichiro Iwakura,Yoshiyuki Adachi,Naohito Ohno,Kazuo Suzuki,Jiro Fujita,Mitsuo Kaku,Kazuyoshi Kawakami
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:180 (6): 4067-4074 被引量:106
标识
DOI:10.4049/jimmunol.180.6.4067
摘要

Abstract The mechanism of host cell recognition of Cryptococcus neoformans, an opportunistic fungal pathogen in immunocompromised patients, remains poorly understood. In the present study, we asked whether the DNA of this yeast activates mouse bone marrow-derived myeloid dendritic cells (BM-DCs). BM-DCs released IL-12p40 and expressed CD40 upon stimulation with cryptococcal DNA, and the response was abolished by treatment with DNase, but not with RNase. IL-12p40 production and CD40 expression were attenuated by chloroquine, bafilomycin A, and inhibitory oligodeoxynucleotides (ODN) that suppressed the responses caused by CpG-ODN. Activation of BM-DCs by cryptococcal DNA was almost completely abrogated in TLR9 gene-disrupted (TLR9−/−) mice and MyD88−/− mice, similar to that by CpG-ODN. In addition, upon stimulation with whole yeast cells of acapsular C. neoformans, TLR9−/− BM-DCs produced a lower amount of IL-12p40 than those from wild-type mice, and TLR9−/− mice were more susceptible to pulmonary infection with this fungal pathogen than wild-type mice, as shown by increased number of live colonies in lungs. Treatment of cryptococcal DNA with methylase resulted in reduced IL-12p40 synthesis by BM-DCs. Furthermore, using a luciferase reporter assay, cryptococcal DNA activated NF-κB in HEK293 cells transfected with the TLR9 gene. Finally, confocal microscopy showed colocalization of fluorescence-labeled cryptococcal DNA with CpG-ODN and the findings merged in part with the distribution of TLR9 in BM-DCs. Our results demonstrate that cryptococcal DNA causes activation of BM-DCs in a TLR9-dependent manner and suggest that the CpG motif-containing DNA may contribute to the development of inflammatory responses after infection with C. neoformans.

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