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1.
炎症小体(inflammasomes)活化后产生的IL-1β和IL-18等促炎因子对天然免疫和适应性免疫具有重要作用.炎症小体持续活化可引起促炎因子过度表达,导致慢性炎症和自身免疫疾病的发生.正常生理状态下,机体存在多种炎症小体负调机制,以维持免疫反应平衡.病理状态下,感染机体的病原微生物通过多种途径抑制炎症小体信号通路的活化及促炎因子的产生,以利于免疫逃逸.本文综述了机体和病原微生物对炎症小体信号通路的负调控机理.阐明炎症小体信号通路负调控机制将为感染性疾病及其他炎症小体相关炎症性疾病的治疗提供策略.  相似文献   

2.
炎症小体(inflammasomes)活化后产生的IL-1β和IL-18等促炎因子对天然免疫和适应性免疫具有重要作用.炎症小体持续活化可引起促炎因子过度表达,导致慢性炎症和自身免疫疾病的发生.正常生理状态下,机体存在多种炎症小体负调机制,以维持免疫反应平衡.病理状态下,感染机体的病原微生物通过多种途径抑制炎症小体信号通路的活化及促炎因子的产生,以利于免疫逃逸.本文综述了机体和病原微生物对炎症小体信号通路的负调控机理.阐明炎症小体信号通路负调控机制将为感染性疾病及其他炎症小体相关炎症性疾病的治疗提供策略.  相似文献   

3.
Liu HZ  Yang HZ  Hu ZW 《生理科学进展》2008,39(2):114-118
Toll样受体(TLRs)广泛表达于固有免疫和获得性免疫系统.它们通过识别内外源性致病原含有的保守病原体相关模式分子,启动宿主防卫反应.TLRs也是沟通固有免疫和获得性免疫反应,尤其是T细胞介导的细胞免疫反应的重要桥梁.新近研究表明,几乎所有亚型TLR均表达在B淋巴细胞,不仅参与B细胞增殖、成熟和功能调节,而且在系统性红斑狼疮和慢性淋巴细胞白血病等疾病发生过程中发挥重要调节作用.以TLRs为靶点,调节B细胞介导的免疫反应,可能成为具有崭新应用前景的免疫治疗途径和方法.  相似文献   

4.
Toll样受体(Toll-like receptors,TLRs)是在各种生物的各器官都广泛表达的一系列模式识别受体。微生物、病毒及一些原虫等病原体相关分子模式都能作为TLRs的激动剂介导机体产生先天性免疫反应,TLRs也能活化细胞因子介导适应性免疫反应。TLRs在细胞增殖,存活,凋亡和血管生成过程中起到重要作用。小鼠上现已发现13种TLRs,其中有11种以上存在于人类机体中。随着对TLRs研究的深入,人们发现激活TLRs能够产生一系列具有抗肿瘤,抗病毒作用的细胞因子,为疾病的治疗开拓了新的道路。本文对TLRs家族及其激动剂的最新研究进展做一综述。  相似文献   

5.
机体损伤后通过诱导组织细胞产生复杂而又相互调控的系列反应,来促进损伤组织的再生.不同细胞因子、生长因子及细胞之间的协调平衡对于组织再生的调节非常重要,免疫系统在此过程中起着极其重要的作用.Toll样受体(Toll-like receptors,TLRs)可识别微生物病原体,在触发机体防御性抗病原微生物免疫反应中发挥着重要作用,是先天免疫系统中必不可少的重要成分,TLRs内源性配体的存在提示TLRs不仅可诱导机体防御性的抗微生物免疫反应,同时还是机体损伤后启动组织再生修复的敏感监测系统.本文概述了TLRs及其内源性配体,以及TLRs在诱导损伤后组织再生中的作用.TLR内源性配体及其在组织再生过程中的作用为促进机体损伤组织的再生修复提供了新的思路策略.  相似文献   

6.
<正>中科院上海生科院生物化学与细胞生物学研究所/国家蛋白质科学中心·上海周兆才研究组在一项最新研究中,发现了生发中心激酶MST4直接靶向TRAF6,从而调控免疫炎症信号通路的分子机制,为免疫炎症相关疾病的诊疗提供了新的思路。相关研究成果2月2日在线发表于《自然-免疫学》。在天然免疫应答过程中,Toll样受体首先识别病原特有的相关分子模式,然后通过中转信号分子TRAF6,迅速激活免疫炎症反应,以达到清除病原的目的。然而,过度的免疫反应却会导致感染性休克,给机体造成严重损伤。因此,在健康机体中,免疫炎症反应必须受到极为精确的分子  相似文献   

7.
真核细胞转录因子NF-κB通过调节多种靶基因表达,参与炎症、免疫反应、程序性细胞死亡、细胞增殖和分化的调控。RelA是NF-κB家族一个重要的成员,其翻译后修饰可精准调控NF-κB的转录活性,在调节炎症、肿瘤、代谢以及免疫应答等重要的生命活动及相关疾病的发生发展过程中起重要作用。现总结相关领域最新研究进展,综述RelA翻译后修饰的种类、调控机制,对NF-κB通路功能的影响,及其在NF-κB介导的炎症、癌症等多种疾病中的功能。  相似文献   

8.
党旖旎  李军 《生物磁学》2013,(26):5197-5200,5186
树突状细胞(dendriticcells,DCs)是目前已知功能最强的抗原提呈细胞(antigenpresentingcell,APC),是介导固有免疫和适应性免疫的桥梁,在机体抗感染、抗肿瘤等方面发挥重要作用。Toll样受体(toll.1ikereceptor,TLRs)是一类重要的模式识别受体(paRemrecognitionreceptors,PRRs),可识别入侵的病原体相关分子模式(pathogen-associatedmoleculepatterns,PAMPs),通过招募接头蛋白、活化蛋白激酶和激活转录因子进行信号传导,从而引起效应细胞的活化和促炎因子的释放。不同亚型的DCs分布有不同的TLRs,多种TLRs可识别外来入侵的病原体成分,发挥重要的免疫学作用:诱导DCs分化成熟,摄取递呈抗原,促进DCs分泌多种细胞因子发挥作用。在炎症、病毒感染、自身免疫性疾病和肿瘤等疾病状态下,DCs表面TLRs的表达上调或下调,并且存在功能障碍,可影响DCs的分化成熟,导致其功能低下,这与疾病的发生和发展密切相关。本文综述了TLRs及其信号通路对树突状细胞的活化及功能的影响。  相似文献   

9.
戴静雯  周萍萍  李素  仇华吉 《微生物学报》2022,62(10):3709-3721
天然免疫是机体通过识别自身或外部危险信号后,为维持体内稳态而逐步建立起来的一系列防御反应,当宿主细胞内的模式识别受体识别胞内病原相关分子模式后激活干扰素(interferon, IFN)、核因子-kappa B (nuclear factor-kappa B, NF-κB)和炎性小体等信号通路。IFNs在天然免疫应答中发挥重要作用,它诱导的抗病毒基因能够通过多种方式抵御病毒的感染,炎症反应则是机体自动的防御反应,能够在病毒感染机体时释放促炎性细胞因子以调控机体的免疫反应,进而发挥抗病毒作用。在病毒感染过程中,IFN信号通路与炎症反应调控网络中的关键分子如NF-κB/RelA、PKR等存在一定的交互作用,此外,IFN信号通路及其产生的细胞因子又影响其他信号通路的活化,进而调控机体的免疫应答以维持自身稳态,它们之间的交互调控失衡将会引起过度炎症反应,导致组织器官的免疫病理损伤,例如SARS-CoV-2感染机体时产生的过度炎症反应。本文综述了机体抗病毒免疫过程中干扰素信号通路与炎症反应之间的交互调控,为研发抗病毒策略提供新思路。  相似文献   

10.
弹状病毒(Rhabdovirus)是引起鱼类病毒性传染病的重要病原之一.近几年,鱼类弹状病毒感染斑马鱼(Danio rerio)诱导非特异性免疫反应的分子机制研究备受关注.作者通过鱼类弹状病毒感染斑马鱼进行转录组和蛋白质组学研究,结果表明,Toll样受体(TLRs)、RIG-Ⅰ样受体(RLRs)等介导的干扰素(IFNs)反应以及补体途径等被激活,并且丝裂原活化蛋白激酶(MAPKs)、髓样分化因子88(My D88)/核因子κB(NF-κB)炎症信号通路等参与抗病毒应答的调控过程.本文首次综述了4种鱼类弹状病毒(SVCV,VHSV,IHNV,SHRV)感染诱导斑马鱼免疫应答的分子调控及其研究进展,以期将来为鱼类弹状病毒性疾病研究与防治提供科学参考.  相似文献   

11.
The negative regulation of Toll-like receptor and associated pathways   总被引:5,自引:0,他引:5  
Toll-like receptors (TLRs) are essential mediators of both innate and adaptive immunity by recognizing and eliciting responses upon invasion of pathogens. The response of TLRs must be stringently regulated as exaggerated expression of signalling components as well as pro-inflammatory cytokines can have devastating effects on the host, resulting in chronic inflammatory diseases, autoimmune disorders and aid in the pathogenesis of TLR-associated human diseases. Therefore, it is essential that negative regulators act at multiple levels within TLR signalling cascades, as well as through eliciting negative-feedback mechanisms in order to synchronize the positive activation and negative regulation of signal transduction to avert potentially harmful immunological consequences. This review explores the various mechanisms employed by negative regulators to ensure the appropriate modulation of both immune and inflammatory responses.  相似文献   

12.
13.
Toll-like receptors (TLRs) were evolved to detect invading pathogens and to induce innate immune responses in order to mount host defense mechanisms. It becomes apparent that the activation of certain TLRs is also modulated by endogenous molecules including lipid components, fatty acids. Results from epidemiological and animal studies demonstrated that saturated and polyunsaturated dietary fatty acids can differentially modify the risk of development of many chronic diseases. Inflammation is now recognized as an important underlying etiologic condition for the pathogenesis of many chronic diseases. Therefore, if the activation of TLRs and consequent inflammatory and immune responses are differentially modulated by types of lipids in vivo, this would suggest that the risk of the development of chronic inflammatory diseases and the host defense against microbial infection may be modified by the types of dietary fat consumed.  相似文献   

14.
Lack of Toll IL-1R8 exacerbates Th17 cell responses in fungal infection   总被引:2,自引:0,他引:2  
TLRs contribute to the inflammatory response in fungal infections. Although inflammation is an essential component of the protective response to fungi, its dysregulation may significantly worsen fungal diseases. In this study, we tested the hypothesis that Toll IL-1R8 (TIR8)/single Ig IL-1-related receptor, a member of the IL-1R family acting as a negative regulator of TLR/IL-1R signaling, affects TLR responses in fungal infections. Genetically engineered Tir8(-/-) mice were assessed for inflammatory and adaptive Th cell responses to Candida albicans and Aspergillus fumigatus. Inflammatory pathology and susceptibility to infection were higher in Tir8(-/-) mice and were causally linked to the activation of the Th17 pathway. IL-1R signaling was involved in Th17 cell activation by IL-6 and TGF-beta in that limited inflammatory pathology and relative absence of Th17 cell activation were observed in IL-1RI(-/-) mice. These data demonstrate that TIR8 is required for host resistance to fungal infections and that it functions to negatively regulate IL-1-dependent activation of inflammatory Th17 responses. TIR8 may contribute toward fine-tuning the balance between protective immunity and immunopathology in infection.  相似文献   

15.
Toll-like receptors (TLRs) are a family of transmembrane proteins that recognize conserved molecular motifs on microorganisms. Ligand binding to TLRs initiates signaling cascades that activate NF-kappaB, MAPK, and interferon response factors. These culminate in cellular responses including activation of antimicrobial killing mechanisms, production of cytokines and chemokines, maturation of antigen presenting cells, and the recruitment of the adaptive immune response. Intestinal epithelial cells represent a unique population of cells that exist in direct contact with a biomass of bacteria. Initiation of TLR signaling is tightly regulated because prolonged and excessive activation of TLRs can lead to uncontrolled inflammation detrimental to the host. Varied mechanisms appear to contribute to control of TLR activation in the intestinal epithelium. These include the collective effects of several negative regulators that include IRAK-M, TOLLIP, SIGIRR, A20, Nod2, and PPARgamma. However, it remains to be determined whether they comprise the entire spectrum of negative control mechanisms and how they are bypassed to trigger activation during challenge by pathogens.  相似文献   

16.
Even though the Toll-like receptor (TLR) pathway is integral to inflammatory defense mechanisms, its excessive signaling may be devastating. Cells have acquired a cascade of strategies to regulate TLR signaling by targeting protein-protein interactions, or ubiquitin chains, but the details of the inhibition mechanisms are still unclear. Here, we provide the structural basis for the regulation of TLR signaling by constructing architectures of protein-protein interactions. Structural data suggest that 1) Toll/IL-1R (TIR) domain-containing regulators (BCAP, SIGIRR, and ST2) interfere with TIR domain signalosome formation; 2) major deubiquitinases such as A20, CYLD, and DUBA prevent association of TRAF6 and TRAF3 with their partners, in addition to removing K63-linked ubiquitin chains that serve as a docking platform for downstream effectors; 3) alternative downstream pathways of TLRs also restrict signaling by competing to bind common partners through shared binding sites. We also performed in silico mutagenesis analysis to characterize the effects of oncogenic mutations on the negative regulators and to observe the cellular outcome (whether there is/is not inflammation). Missense mutations that fall on interfaces and nonsense/frameshift mutations that result in truncated negative regulators disrupt the interactions with the targets, thereby enabling constitutive activation of the nuclear factor-kappa B, and contributing to chronic inflammation, autoimmune diseases, and oncogenesis.  相似文献   

17.
Negative regulation of toll-like receptor-mediated immune responses   总被引:1,自引:0,他引:1  
Toll-like receptors (TLRs) are involved in host defence against invading pathogens, functioning as primary sensors of microbial products and activating signalling pathways that induce the expression of immune and pro-inflammatory genes. However, TLRs have also been implicated in several immune-mediated and inflammatory diseases. As the immune system needs to constantly strike a balance between activation and inhibition to avoid detrimental and inappropriate inflammatory responses, TLR signalling must be tightly regulated. Here, we discuss the various negative regulatory mechanisms that have evolved to attenuate TLR signalling to maintain this immunological balance.  相似文献   

18.
Toll-like receptors (TLRs) play a critical role in sensing microbial components and inducing innate immune and inflammatory responses by recognizing invading microbial pathogens. Lipopolysaccharide-induced dimerization of TLR4 is required for the activation of downstream signaling pathways including nuclear factor-kappa B (NF-κB). Therefore, TLR4 dimerization may be an early regulatory event in activating ligand-induced signaling pathways and induction of subsequent immune responses. Here, we report biochemical evidence that 6-shogaol, the most bioactive component of ginger, inhibits lipopolysaccharide-induced dimerization of TLR4 resulting in the inhibition of NF-κB activation and the expression of cyclooxygenase-2. Furthermore, we demonstrate that 6-shogaol can directly inhibit TLR-mediated signaling pathways at the receptor level. These results suggest that 6-shogaol can modulate TLR-mediated inflammatory responses, which may influence the risk of chronic inflammatory diseases.  相似文献   

19.
Toll-like receptors (TLRs) play an important role in host defense by sensing invading microbial pathogens and initiating innate immune responses. The stimulation of TLRs by microbial components triggers the activation of myeloid differential factor 88 (MyD88)- and toll-interleukin-1 receptor domain-containing adapter inducing interferon-β (TRIF)-dependent downstream signaling pathways. Isoliquiritigen in (ILG), an active ingredient of Licorice, has been used for centuries to treat many chronic diseases. ILG inhibits the MyD88-dependent pathway by inhibiting the activity of inhibitor-κB kinase. However, it is not known whether ILG inhibits the TRIF-dependent pathway. To evaluate the therapeutic potential of ILG, we examined its effect on signal transduction via the TRIF-dependent pathway of TLRs induced by several agonists. ILG inhibited nuclear factor-κB and interferon regulatory factor 3 activation induced by lipopolysaccharide or polyinosinic-polycytidylic acid. ILG inhibited the lipopolysaccharide-induced phosphorylation of interferon regulatory factor 3 as well as interferon-inducible genes such as interferon inducible protein-10, and regulated activation of normal T-cell expressed and secreted (RANTES). These results suggest that ILG can modulate TRIF-dependent signaling pathways of TLRs, leading to decreased inflammatory gene expression.  相似文献   

20.
TLRs are primary sensors of invading pathogens, recognizing conserved microbial molecules and activating signaling pathways that are pivotal to innate and adaptive immune responses. However, a TLR signaling pathway must be tightly controlled because its excessive activation can contribute to the pathogenesis of many human diseases. This review provides a summary of the different mechanisms that are involved in the negative regulation of TLR signaling pathways.  相似文献   

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