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1.
非洲猪瘟病毒(African swine fever virus,ASFV)拥有多种逃逸宿主免疫应答的策略,造成病毒难以被宿主清除。cGAS-STING信号通路介导的天然免疫在抗ASFV感染中发挥了重要作用,然而病毒编码的多个蛋白靶向该通路中的不同分子以拮抗宿主的I型干扰素应答。利用基因编辑技术敲除这些病毒基因后,ASFV对宿主的致病性降低,成为基因缺失疫苗的研制潜在靶点。本文对目前已知参与调控宿主cGAS-STING信号通路的病毒蛋白进行总结,旨在阐明这些蛋白免疫逃逸cGAS-STING信号通路的分子机制,加深对ASFV免疫逃逸策略的理解,以期为ASFV致病机制研究与疫苗创制提供参考。  相似文献   

2.
为了探究ASFV E248R蛋白调控cGAS-STING信号通路的机制,利用双荧光素酶报告系统验证ASFV E248R蛋白够剂量依赖性地抑制cGAS-STING和HT-DNA诱导的IFN-β的产生。通过相对定量PCR技术验证,过表达E248R抑制IFNB1、RANTES、IL-6和TNF-αβ基因的转录水平。免疫共沉淀和激光共聚焦试验结果表明,E248R与STING相互作用。通过蛋白印迹试验证实,过表达E248R可抑制STING的表达。研究表明ASFV E248R蛋白通过抑制STING的表达拮抗天然免疫应答。该结果将扩展对ASF免疫逃逸的认知,为疫苗的研制提供新的思路。  相似文献   

3.
cGAS-STING信号通路:免疫监视的重要机制   总被引:1,自引:1,他引:0  
周萍萍  王涛  孙元  仇华吉 《微生物学报》2021,61(7):1882-1895
免疫系统识别病原微生物的主要机制之一是识别其核酸。环磷酸鸟苷-腺苷合成酶(cGAS)是一种胞质DNA感受器,感知病原DNA后激活cGAS-STING通路。该通路不仅介导天然免疫应答以抵抗多种含DNA的病原微生物感染,还能感知肿瘤来源的DNA而产生抗肿瘤免疫应答。然而,自体DNA对cGAS-STING通路的异常激活也会导致自身免疫性和炎症性疾病。本文综述了cGAS-STING信号通路及其在抗病毒天然免疫中的调控作用与功能,阐述了cGAS-STING通路在抗病毒感染和疾病中发挥的作用。  相似文献   

4.
【背景】猪圆环病毒是引起猪圆环病毒病的病原,能够引起严重的免疫抑制和临床症状,给养猪业造成严重的经济损失。【目的】研究猪圆环病毒3型(Porcinecircovirus3,PCV3)衣壳蛋白(Capsid protein,Cap)对宿主天然免疫应答的调控作用,解析其免疫抑制机制对阐明猪圆环病毒致病机制具有重要意义。【方法】通过构建Cap真核表达质粒,利用Westernblotting进行表达验证,实时荧光定量(RT-PCR)、双荧光素酶基因报告系统和ELISA探究Cap对I型干扰素通路活化的影响,通过免疫共沉淀探索其作用机制。【结果】真核表达质粒成功表达并且证实Cap可以抑制DNA模拟物Poly(dA:dT)诱导的I型干扰素通路的活化;Cap可以与天然免疫通路节点分子MITA相互作用。【结论】研究发现PCV3病毒Cap蛋白与干扰素通路节点分子MITA相互作用发挥免疫抑制作用,这为阐明PCV3免疫抑制机制提供了理论依据。  相似文献   

5.
人类冠状病毒调节宿主抗病毒天然免疫分子机制   总被引:1,自引:0,他引:1  
SARS冠状病毒和正在全球流行的猪源H1N1型流感病毒等人类新发呼吸道病毒对人类生命健康构成严重威胁.人类重要呼吸道病毒与宿主抗病毒天然免疫的关系是近年来研究热点.SARS冠状病毒等很多RNA病毒能够编码某种蛋白质,抑制干扰素表达以及干扰素介导的抗病毒信号通路.人类冠状病毒木瓜样蛋白酶(papain-like protease,PLP)利用其自身去泛素化酶(DUB)活性,使干扰素表达通路中重要调节蛋白发生去泛素化,从而抑制干扰素信号传导.同时,PLP蛋白酶通过阻碍干扰素表达信号通路中最新发现的重要调节蛋白ERIS(也称MITA/STING)二聚化,使其失活并丧失激活干扰素通路的功能,这些发现对于阐明人类重要呼吸道病毒对宿主细胞抗病毒天然免疫反应的调节作用及其机制具有重要意义,为人类新发病毒致病机理、免疫防治以及抗病毒药物研究提供新的思路.  相似文献   

6.
为研究猪圆环病毒2型 (Porcine circovirus type 2,PCV2) 感染的猪肺泡巨噬细胞 (Porcine alveolar macrophages,PAMs) 分泌Ⅰ型干扰素信号通路,以PCV2病毒感染PAMs为研究对象,采用酶联免疫吸附测定 (Enzyme-linked immunosorbent assay,ELISA)、实时荧光定量PCR和Western blotting,分析PCV2感染对PAMsⅠ型干扰素的诱导、cGAS/STING信号通路相关基因mRNA和蛋白表达的影响,并应用靶向cGAS和STING特异性siRNA、抑制剂BX795和BAY 11-7082,解析cGAS、STING、TBK1和NF-κB/P65在PAMs生成Ⅰ型干扰素中的作用。结果显示,PAMs感染PCV2病毒48 h后Ⅰ型干扰素的表达量显著升高 (P<0.05),cGAS mRNA的表达量在感染48 h和72 h后显著升高 (P<0.01),STING mRNA表达量在PCV2感染72 h后显著上升 (P<0.01),TBK1 mRNA、IRF3 mRNA感染48 h后显著升高 (P<0.01)。PCV2能够显著升高PAMs胞浆STING、TBK1和IRF3蛋白含量,降低胞浆NF-κB/p65的含量,促进NF-κB/p65和IRF3入核。敲低PAMs中cGAS或STING表达水平后,PCV2感染PAMs 48 h后,Ⅰ型干扰素的表达水平显著下降 (P<0.01);BAX795抑制TBK1后,PCV2感染PAMs 48 hⅠ型干扰素的表达水平显著下降 (P<0.01),BAY 11-7082 抑制NF-κB/P65表达后,PCV2感染PAMs 48 h I型干扰素的表达量与PCV2组相比无显著性差异 (P>0.05)。结果表明,PAMs感染PCV2后通过cGAS/STING/TBK1/IRF3信号通路诱导Ⅰ型干扰素分泌。  相似文献   

7.
先天免疫是宿主抵御外来病原体入侵的第一道防线,而模式识别受体(pattern recognition receptors,PRRs)是介导先天免疫应答关键分子。PRRs通过识别病原体相关分子模式(pathogen associated molecular patterns,PAMPs)来激活宿主先天免疫反应。二十一世纪先天免疫领域里程碑式发现-环磷酸鸟苷腺苷合成酶(cyclic GMP-AMP synthase,cGAS),cGAS在宿主先天免疫过程中发挥重要作用,通过识别外源DNA产生第二信使2’,3’-环化鸟苷酸腺苷酸(2’,3’-cyclic guanosine monophosphate adenosine monophosphate,2’,3’-cGAMP)来介导干扰素基因刺激因子(stimulator of interferon genes,STING)的活化,从而促进下游干扰素(IFN)和其他细胞因子分泌来发挥宿主的抗病毒反应。近年研究发现,cGAS/STING通路在宿主抗细菌感染过程中发挥着重要作用,同时细菌也进化出不同机制来拮抗cGAS/STING通路。本文主要对cGAS/STING通路的生物学功能及其在细菌感染中的作用进行综述,为进一步研发新型抗菌药物提供理论参考。  相似文献   

8.
猪流行性腹泻病毒(porcine epidemic diarrhea virus,PEDV)能引起猪腹泻等肠道疾病,属于α属冠状病毒,它的爆发给很多国家养猪业造成了严重的经济损失。2010年以来,PEDV感染在中国出现大规模爆发,一种突变型PEDV也于2013年在美国出现并迅速传播。 RNA病毒能够通过Toll样受体通路3(TLR3)和RIG-I样受体通路(RLR)诱导I型干扰素的产生。但以往的研究表明,PEDV感染能抑制I型干扰素的合成。近年来有关PEDV调节宿主天然免疫应答的研究取得了很大进展。PEDV主要通过编码作为干扰素拮抗剂的病毒蛋白以及隐藏病毒自身病原相关分子模式(PAMP)等两种方式逃逸宿主天然免疫应答。目前已报道,PEDV非结构蛋白1可通过降解CBP阻碍干扰素调节因子3(IRF-3)组装成增强子复合体;木瓜蛋白酶样蛋白酶可通过其去泛素化酶活性阻断天然免疫信号通路传递;3C样蛋白酶可通过剪切NEMO发挥干扰素拮抗剂活性;核衣壳蛋白通过结合TBK1抑制I型干扰素产生。PEDV也可通过合成加帽酶隐藏其病原相关分子dsRNA来避免激活天然免疫通路。PEDV抗病毒天然免疫机制阐明为研究PEDV感染免疫和致病机制提供了重要的理论依据,为研发抗PEDV新型疫苗和药物提供了基础。  相似文献   

9.
曾喻兵  李飞  朱玲  徐志文 《病毒学报》2021,37(4):957-963
非洲猪瘟(African swine fever,ASF)是由非洲猪瘟病毒(African swine fever virus,ASFV)感染引起的一种急性、热性、高度接触性、致死性动物传染病.由于ASFV基因组庞大,变异能力强,免疫逃逸机制复杂,至今无有效药物和疫苗.近年来,对多基因家族的研究取得了很大的进展,可变区多基因家族拷贝数变化是导致ASFV变异的主要原因,且陆续发现多基因家族在决定细胞宿主范围、影响病毒毒力强弱、抑制Ⅰ型干扰素信号通路、抑制干扰素抗病毒效应和促进病毒蜱源感染中具有重要作用.本文对当前的ASFV多基因家族研究进展进行总结,阐述其在基因变异和病毒感染中的作用,以期为非洲猪瘟免疫逃逸机制的探索和疫苗的研发提供理论依据.  相似文献   

10.
维甲酸诱导基因I样受体家族(retinoid acid-inducible gene-I-like receptors, RLRs)信号通路作为众多抗感染免疫信号通路之一,在诱导促炎细胞因子、趋化因子和I型干扰素产生等方面发挥重要的调控作用。作为蛋白质翻译后修饰之一的泛素化(ubiquitination),是由泛素蛋白(ubiquitin)与目标蛋白上不同的氨基酸位点产生结合来调控蛋白的命运,如启动蛋白酶体途径降解蛋白或激活转运等功能。而RLRs信号通路分子的泛素化修饰既是调控多种效应因子的方式之一,也是病毒经此诱发动物重要疾病以及自身免疫病、慢性炎症的经典路径之一。本文主要综述RLRs信号通路中重要的效应器分子的典型结构特征、泛素化修饰类型和功能,探讨泛素化修饰调控RLRs信号通路关键分子的作用,为相关疾病的干预或治疗提供参考。  相似文献   

11.
The cytosolic DNA sensor cyclic GMP-AMP (cGAMP) synthetase (cGAS) has emerged as a fundamental component fueling the anti-pathogen immunity. Because of its pivotal role in initiating innate immune response, the activity of cGAS must be tightly fine-tuned to maintain immune homeostasis in antiviral response. Here, we reported that neddylation modification was indispensable for appropriate cGAS-STING signaling activation. Blocking neddylation pathway using neddylation inhibitor MLN4924 substantially impaired the induction of type I interferon and proinflammatory cytokines, which was selectively dependent on Nedd8 E2 enzyme Ube2m. We further found that deficiency of the Nedd8 E3 ligase Rnf111 greatly attenuated DNA-triggered cGAS activation while not affecting cGAMP induced activation of STING, demonstrating that Rnf111 was the Nedd8 E3 ligase of cGAS. By performing mass spectrometry, we identified Lys231 and Lys421 as essential neddylation sites in human cGAS. Mechanistically, Rnf111 interacted with and polyneddylated cGAS, which in turn promoted its dimerization and enhanced the DNA-binding ability, leading to proper cGAS-STING pathway activation. In the same line, the Ube2m or Rnf111 deficiency mice exhibited severe defects in innate immune response and were susceptible to HSV-1 infection. Collectively, our study uncovered a vital role of the Ube2m-Rnf111 neddylation axis in promoting the activity of the cGAS-STING pathway and highlighted the importance of neddylation modification in antiviral defense.  相似文献   

12.
Cyclic GMP-AMP (cGAMP) synthase (cGAS) is recently identified as a cytosolic DNA sensor and generates a non-canonical cGAMP that contains G(2′,5′)pA and A(3′,5′)pG phosphodiester linkages. cGAMP activates STING which triggers innate immune responses in mammals. However, the evolutionary functions and origins of cGAS and STING remain largely elusive. Here, we carried out comprehensive evolutionary analyses of the cGAS-STING pathway. Phylogenetic analysis of cGAS and STING families showed that their origins could be traced back to a choanoflagellate Monosiga brevicollis. Modern cGAS and STING may have acquired structural features, including zinc-ribbon domain and critical amino acid residues for DNA binding in cGAS as well as carboxy terminal tail domain for transducing signals in STING, only recently in vertebrates. In invertebrates, cGAS homologs may not act as DNA sensors. Both proteins cooperate extensively, have similar evolutionary characteristics, and thus may have co-evolved during metazoan evolution. cGAS homologs and a prokaryotic dinucleotide cyclase for canonical cGAMP share conserved secondary structures and catalytic residues. Therefore, non-mammalian cGAS may function as a nucleotidyltransferase and could produce cGAMP and other cyclic dinucleotides. Taken together, assembling signaling components of the cGAS-STING pathway onto the eukaryotic evolutionary map illuminates the functions and origins of this innate immune pathway.  相似文献   

13.
Innate immunity plays an important role not only during infection but also homeostatic role during stress conditions. Activation of the immune system including innate immune response plays a critical role in the initiation and progression of tumorigenesis. The innate immune sensor recognizes pathogen-associated molecular patterns (PAMPs) and activates cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) (cGAS-STING) and induces type-1 immune response during viral and bacterial infection. cGAS-STING is regulated differently in conditions like cellular senescence and DNA damage in normal and tumor cells and is implicated in the progression of tumors from different origins. cGAS binds to cytoplasmic dsDNA and synthesize cyclic GMP-AMP (2’3’-cGAMP), which selectively activates STING and downstream IFN and NF-κB activation. We here reviewed the cGAS-STING signalling pathway and its cross-talk with other pathways to modulate tumorigenesis. Further, the review also focused on emerging studies that targeted the cGAS-STING pathway for developing targeted therapeutics and combinatorial regimens for cancer of different origins.  相似文献   

14.
Viruses use diverse strategies to impair the antiviral immunity of host in order to promote infection and pathogenesis. Herein, we found that PCV2 infection promotes the infection of DNA viruses through inhibiting IFN-β induction in vivo and in vitro. In the early phase of infection, PCV2 promotes the phosphorylation of cGAS at S278 via activation of PI3K/Akt signaling, which directly silences the catalytic activity of cGAS. Subsequently, phosphorylation of cGAS at S278 can facilitate the K48-linked poly-ubiquitination of cGAS at K389, which can been served as a signal for recognizing by the ubiquitin-binding domain of histone deacetylase 6 (HDAC6), to promote the translocation of K48-ubiquitinated-cGAS from cytosol to autolysosome depending on the deacetylase activity of HDAC6, thereby eventually resulting in a markedly increased cGAS degradation in PCV2 infection-induced autophagic cells relative to Earle’s Balanced Salt Solution (EBSS)-induced autophagic cells (a typical starving autophagy). Importantly, we found that PCV2 Cap and its binding protein gC1qR act as predominant regulators to promote porcine cGAS phosphorylation and HDAC6 activation through mediating PI3K/AKT signaling and PKCδ signaling activation. Based on this finding, gC1qR-binding activity deficient PCV2 mutant (PCV2RmA) indeed shows a weakened inhibitory effect on IFN-β induction and a weaker boost effect for other DNA viruses infection compared to wild-type PCV2. Collectively, our findings illuminate a systematic regulation mechanism by which porcine circovirus counteracts the cGAS-STING signaling pathway to inhibit the type I interferon induction and promote DNA virus infection, and identify gC1qR as an important regulator for the immunosuppression induced by PCV2.  相似文献   

15.
Recent studies have illustrated the functional significance of DNA recognition in the activation of innate immune responses among a variety of diseases. The cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway has been found to be modulated by post-translational modifications and can regulate the immune response via type I IFNs. Accumulating evidence indicates a pivotal role of cGAS-STING signaling, being protective or pathogenic, in the development of diseases. Thus, a comprehensive understanding of the post-translational modifications of cGAS-STING pathway and their role in disease development will provide insights in predicting individual disease outcomes and developing appropriate therapies. In this review, we will discuss the regulation of the cGAS-STING pathway and its implications in disease pathologies, as well as pharmacologic strategies to target the cGAS-STING pathway for therapeutic intervention.  相似文献   

16.
Viral interference with secretory cargo is a common mechanism for pathogen immune evasion. Selective down regulation of critical immune system molecules such as major histocompatibility complex (MHC) proteins enables pathogens to mask themselves from their host. African swine fever virus (ASFV) disrupts the trans-Golgi network (TGN) by altering the localization of TGN46, an organelle marker for the distal secretory pathway. Reorganization of membrane transport components may provide a mechanism whereby ASFV can disrupt the correct secretion and/or cell surface expression of host proteins. In the study reported here, we used the tsO45 temperature-sensitive mutant of the G protein of vesicular stomatitis virus to show that ASFV significantly reduces the rate at which the protein is delivered to the plasma membrane. This is linked to a general reorganization of the secretory pathway during infection and a specific, microtubule-dependent disruption of structural components of the TGN. Golgin p230 and TGN46 are separated into distinct vesicles, whereupon TGN46 is depleted. These data suggest that disruption of the TGN by ASFV can slow membrane traffic during viral infection. This may be functionally important because infection of macrophages with virulent isolates of ASFV increased the expression of MHC class I genes, but there was no parallel increase in MHC class I molecule delivery to the plasma membrane.  相似文献   

17.
Type I interferons are effector cytokines essential for the regulation of the innate immunity. A key effector of the type I interferon response that is dysregulated in autoimmunity and cancer is the cGAS-STING signalling axis. Recent work suggests that calcium and associated signalling proteins can regulate both cGAS-STING and autoimmunity. How calcium regulates STING activation is complex and involves both stimulatory and inhibitory mechanisms. One of these is calmodulin-mediated signalling that is necessary for STING activation. The alterations in calcium flux that occur during STING activation can also regulate autophagy, which in turn plays a role in innate immunity through the clearance of intracellular pathogens. Also connected to calcium signalling pathways is the cGAS inhibitor TREX1, a cytoplasmic exonuclease linked to several autoimmune diseases including systemic lupus erythematosus (SLE). In this review, we summarize these and other findings that indicate a regulatory role for calcium signalling in innate and autoimmunity through the cGAS-STING pathway.  相似文献   

18.
19.
The innate immune system utilizes pattern recognition receptors cyclic GMP-AMP synthase(cGAS)to sense cytosolic double-stranded(ds) DNA and initiate type 1 interferon signaling and autophagy pathway, which collaborate to limit pathogen infections as well as alarm the adaptive immune response. The genomes of herpesviruses are large dsDNA, which represent a major class of pathogen signatures recognized by cellular DNA sensor cGAS. However, to successfully establish the persistent infection, herpesviruses have evolved their viral genes to modulate different aspects of host immune signaling. This review summarizes the evasion strategies of host cGAS DNA sensing pathway by Kaposi's Sarcoma-associated Herpesvirus(KSHV) and their contributions to KSHV life cycles.  相似文献   

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