C型凝集素受体相关的NF-κB信号通路在肠炎及肠癌发病过程中的分子机制研究
批准号:
91542107
项目类别:
重大研究计划
资助金额:
70.0 万元
负责人:
林欣
依托单位:
学科分类:
H0302.消化系统免疫相关疾病
结题年份:
2018
批准年份:
2015
项目状态:
已结题
项目参与者:
丁志超、郑洪丽、朱松标、郭亚慧、张珊珊、刘华娟
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中文摘要
结肠癌是严重威胁人类健康的一类常见胃肠道恶性肿瘤。炎性肠病患者结肠癌发病率显著增高。研究发现,肠道系统中除细菌外存在很多真菌,但对于其如何与肠道免疫系统相互作用影响肠道系统动态平衡最终导致肠癌发生的机制尚不清楚。C型凝集素受体激活的NF-κB信号通路对真菌引起的免疫反应至关重要。.我们前期研究发现C型凝集素受体Dectin-3 或NF-κB激活的关键分子CARD9敲除的小鼠对DSS诱导的肠炎更易感, C. tropicalis是肠道系统中的主要真菌群。本项目从C型凝集素受体相关的NF-κB信号通路入手,探讨肠道系统中真菌激活的免疫信号通路,特别是CARD9依赖的NF-κB通路在DSS诱导的肠炎模型及DSS/AOM诱导的肠癌小鼠模型中影响肠道免疫系统并导致疾病的分子机制。这些问题的解决,有助于阐明肠道真菌与免疫系统相互作用影响肠病发生的分子机制,为日益严重的肠癌提供新的分子靶标和治疗策略。
英文摘要
Colorectal cancer is a common gastrointestinal malignant tumors threatening human health. Patients with inflammatory bowel disease (IBD)- either Crohn’s disease (CD) or ulcerative colitis (UC) are at increased risk for developing cancers of the gastrointestinal tract, particularly colorectal cancer (CRC). Interactions between the commensal microbiota and the gut immune system are critical for establishing colonic epithelial homeostasis. Although the vast majority of studies on commensal microbiota have focused on gut bacteria, recent studies have begun to note the importance of commensal fungi in gut. A rich fungal community that interacts with the immune system was proved in mammalian gut. However, how commensal fungi interacts with immune system and whether this interaction affects colonic epithelial homeostasis remains unknown. Emerging evidence indicates that several mammalian C-type lectin receptors (CLRs) function as pattern recognition receptors (PRRs) for sensing fungal infections, and trigger multiple signaling cascades leading to expression of various pro-inflammatory cytokines and anti-microbial proteins..In our recent studies, we have found that Dectin-2 and Dectin-3, two CLRs, form a heterodimeric complex and function as a PRR for sensing fungal infection. Interestingly, in our preliminary studies, we found that Dectin-3 and CARD9 KO mice were more susceptible to DSS-induced colitis than wild type mice. C. tropicalis, which is an opportunistic fungal pathogen, was significantly increased in the colonic epithelial. Based on our preliminary studies, we propose to characterize the molecular mechanism by which Dectin-3 and CARD9 deficiency leads to altered immunity to commensal fungi in the gut; to determine how interactions between commensal fungi and Dectin-3 influence colitis; and to determine how Dectin-3/CARD9 signaling mediates colonic epithelial homeostasis. These lines of investigation will reveal molecular mechanism by which host innate immune system affect colonic epithelial homeostasis in response to commensal fungal dysbiosis, which will provide the molecular basis of potential therapeutic targets for designing adjuvant and vaccine against microbial dysbiosis in gut.
结肠癌是严重威胁人类健康的一类常见胃肠道恶性肿瘤。炎性肠病患者结肠癌发病率显著增高。研究发现,肠道系统中除细菌外存在很多真菌,但对于其如何与肠道免疫系统相互作用影响肠道系统动态平衡最终导致肠癌发生的机制尚不清楚。C型凝集素受体激活的NF-κB信号通路对真菌引起的免疫反应至关重要。.本项目从C型凝集素受体相关的NF-κB信号通路入手,探讨肠道系统中真菌激活的免疫信号通路,特别是CARD9依赖的NF-κB通路在肠炎和肠癌小鼠模型中影响肠道免疫系统并导致疾病的分子机制。我们阐述了C型凝集素受体Dectin-3和下游信号通路重要蛋白CARD9及其突变体CARD9-S12N介导的真菌免疫在肠道稳态维持中的重要作用,发现了肠道共生真菌在炎症性肠病发病中的新型机制,对于临床肠道疾病的诊治具有重要意义;此外,还鉴定了Cbl-b和JNK两个抗真菌免疫负调控因子。这些问题的解决,有助于阐明肠道真菌与免疫系统相互作用影响肠病发生的分子机制,为日益严重的肠癌提供新的分子靶标和治疗策略。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
The Adaptor Protein CARD9 Protects against Colon Cancer by Restricting Mycobiota-Mediated Expansion of Myeloid-Derived Suppressor Cells.
接头蛋白 CARD9 通过限制分枝菌介导的骨髓来源抑制细胞的扩增来预防结肠癌
DOI:10.1016/j.immuni.2018.08.018
发表时间:2018-09-18
期刊:Immunity
影响因子:32.4
作者:Wang T;Fan C;Yao A;Xu X;Zheng G;You Y;Jiang C;Zhao X;Hou Y;Hung MC;Lin X
通讯作者:Lin X
Gain-of-Function Mutation of Card14 Leads to Spontaneous Psoriasis-like Skin Inflammation through Enhanced Keratinocyte Response to IL-17A
Card14 的功能获得突变通过增强角质形成细胞对 IL-17A 的反应导致自发性银屑病样皮肤炎症
DOI:10.1016/j.immuni.2018.05.012
发表时间:2018-07-17
期刊:IMMUNITY
影响因子:32.4
作者:Wang, Mingchao;Zhang, Shanshan;Xin Lin
通讯作者:Xin Lin
C-Type Lectin Receptor CD23 Is Required for Host Defense against Candida albicans and Aspergillus fumigatus Infection
C 型凝集素受体 CD23 是宿主防御白色念珠菌和烟曲霉感染所必需的
DOI:10.4049/jimmunol.1800620
发表时间:2018-10-15
期刊:JOURNAL OF IMMUNOLOGY
影响因子:4.4
作者:Guo, Yahui;Chang, Qing;Zhao, Xueqiang
通讯作者:Zhao, Xueqiang
JNK1 negatively controls antifungal innate immunity by suppressing CD23 expression.
JNK1 通过抑制 CD23 表达负向控制抗真菌先天免疫
DOI:10.1038/nm.4260
发表时间:2017-03
期刊:Nature medicine
影响因子:82.9
作者:Zhao X;Guo Y;Jiang C;Chang Q;Zhang S;Luo T;Zhang B;Jia X;Hung MC;Dong C;Lin X
通讯作者:Lin X
CARD9S12N facilitates the production of IL-5 by alveolar macrophages for the induction of type 2 immune responses
CARD9(S12N) 促进肺泡巨噬细胞产生 IL-5,以诱导 2 型免疫反应
DOI:10.1038/s41590-018-0112-4
发表时间:2018-06-01
期刊:NATURE IMMUNOLOGY
影响因子:30.5
作者:Xu, Xia;Xu, Jin-Fu;Lin, Xin
通讯作者:Lin, Xin
CARD9 S12N突变影响炎症性肠病发病的分子机制研究
- 批准号:91942303
- 项目类别:重大研究计划
- 资助金额:250.0万元
- 批准年份:2019
- 负责人:林欣
- 依托单位:
真菌感染过程中的免疫调节分子机制研究
- 批准号:81630058
- 项目类别:重点项目
- 资助金额:275.0万元
- 批准年份:2016
- 负责人:林欣
- 依托单位:
TMEM43-S358L突变在NF-kB炎症信号通路中的功能及其对ARVD心肌病的贡献
- 批准号:81570211
- 项目类别:面上项目
- 资助金额:67.0万元
- 批准年份:2015
- 负责人:林欣
- 依托单位:
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