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1.
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   

2.
Hippo信号通路是最早在果蝇(Drosophila)中发现的,在进化上高度保守,具有调控细胞增殖与凋亡作用的一条关键信号转导通路。在哺乳动物中,Hippo信号通路在调控细胞增殖、细胞死亡、细胞分化和肿瘤生成等生物学过程中有着十分重要的作用。近年来,Hippo信号通路在免疫系统以及多种功能性免疫细胞中发挥的重要作用逐渐成为该领域的研究热点,特别是Hippo信号通路各成员在免疫细胞应对病毒、细菌入侵或肿瘤发生以及维持自身稳态过程中发挥着重要的作用。因此,深入了解Hippo信号通路各成员对多种功能性免疫细胞的调控机制,有助于绘制新的免疫系统调控网络,阐明各类免疫系统相关疾病的发病机制,期望为诊断、治疗和预防相关疾病提供新的治疗策略或靶点。  相似文献   

3.
干扰素基因刺激因子(Stimulator of interferon gene,STING)作为固有免疫系统的关键性接头蛋白,在外源或内源DNA介导的免疫应答中发挥重要作用,广泛参与宿主体内的多种信号传导过程。概述了STING信号通路分子机制及其在抗病毒感染、自身免疫疾病、神经系统疾病和肿瘤中的作用,介绍了常见的STING激动剂和抑制剂,以期为STING的进一步研究提供参考。  相似文献   

4.
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   

5.
机体天然免疫系统拥有一系列可以探测和抵制微生物侵袭的机制.目前,关于病原RNA的细胞内识别机制有了较为深入的研究和相关报道,但细胞内病原DNA的识别和相应的天然免疫应答机制仍未完全被揭示.阐明上述机制有助于了解和治疗一系列微生物感染相关的疾病,包括病毒和细菌感染类疾病、病毒相关的肿瘤、自身免疫性疾病等.近年来,细胞内多个充当"DNA传感器"的分子和干扰素调节分子被认为在细胞质DNA诱导宿主天然免疫反应过程中起着关键性调节作用.综述了对细胞内病原DNA的主要识别分子、信号通路以及相关的天然免疫调控机制.  相似文献   

6.
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   

7.
p62是一种多功能蛋白,其蛋白分子包含多个结构域,通过与不同蛋白质结合形成细胞中重要的信号中心,从而调控多种信号通路,影响细胞的生长、衰老,甚至死亡等生理过程。p62蛋白通过对mTORC1信号通路的影响在氨基酸信号通路中发挥着关键的调控作用。p62蛋白是自噬体与底物之间的适配蛋白,在细胞自噬过程中起到分子调节器的作用。p62蛋白具有质核穿梭功能,在DNA损伤修复和氧化应激反应中具有重要作用,其异常积累会引起细胞的恶性转变,导致肿瘤的发生。现综述p62在调节多种信号通路,如自噬、氨基酸感知、凋亡及肿瘤发生等过程中的作用。  相似文献   

8.
余淑娟  耿晶  陈兰芬 《遗传》2017,39(7):650-658
Hippo信号通路最初是在果蝇(Drosophila)中被发现的,是在进化上高度保守并能调控器官大小的信号转导通路。在哺乳动物多种组织器官中,Hippo信号通路的关键激酶MST1和MST2(果蝇Hippo激酶的同源分子)通过抑制下游的转录共激活分子YAP(果蝇中为Yorki)的活性来实现对细胞增殖和凋亡的调控。在这些组织器官中条件性敲除Mst1Mst2或过表达Yap大都会造成细胞过度增殖或肿瘤的发生。近年来,随着研究的不断深入,Hippo信号通路不依赖于YAP的非经典功能也逐渐被发现。其中,Hippo信号通路多个成员在免疫系统中的调控功能逐渐成为该领域的研究热点,特别是在免疫细胞发育分化、机体自身免疫性疾病及应对病毒和细菌入侵等过程中所发挥的调控作用。本文重点阐述了Hippo信号通路在T淋巴细胞中发育、分化、活化和迁移等方面及在部分天然免疫细胞抗感染过程中的功能和调控。  相似文献   

9.
经典Wnt信号通路是一条极其保守的信号通路,在多种组织器官发育及疾病发生过程中起重要作用,这条信号通路在胰腺中的作用近年来才逐渐被揭示.研究表明,经典Wnt信号通路在胰腺命运特化、胰腺祖细胞增殖等发育过程中起重要调控作用.另外.这条信号通路与Ⅱ型糖尿病和胰腺肿瘤的发生密切相关.本文对经典Wnt信号通路在胰腺发育及搪尿病和胰腺癌中的作用进行综述.  相似文献   

10.
干扰素信号通路是细胞抵抗病原微生物侵染的重要防线。通过识别病源相关模式分子、激活下游通路,干扰素的表达被显著上调并分泌于细胞外,作用于自身和周围细胞,引发众多下游基因的转录激活。这些基因产物直接参与抗侵染过程或调控机体免疫反应。干扰素信号通路需要被正确调控,其异常激活会导致炎症和自身免疫疾病的发生。正确地识别“自己”和“非己”分子是首要的一步。鉴于干扰素通路所抵抗的微生物侵染中,核酸分子是重要的免疫原性分子,内源性核酸分子的代谢调控显得尤为重要。细胞编码一系列参与核酸代谢的酶,这些蛋白质功能的发挥对保持细胞核酸稳态至关重要。以单基因突变引发的自身免疫疾病Aicardi-Goutières综合征为例,目前发现9种基因可突变致病,均来自DNA代谢相关的和RNA代谢相关的基因。尽管这9种基因突变都导致干扰素通路的异常激活,但中间所依赖的参与蛋白并不相同。可见,同样症状的疾病,其致病机理也可能不同,这也将影响有效治疗方案的确定,凸显基因检测在诊治自身免疫疾病中的必要性。本综述通过阐述细胞内环境稳态对干扰素通路正确识别“自己”和“非己”的重要作用,帮助理解自身免疫疾病的发病机理。  相似文献   

11.
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   

12.
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   

13.
Nucleic acids represent a major class of pathogen and damage signatures, recognized by a variety of host sensors to initiate signaling cascades and immune responses, such as mechanisms of RLR-MAVS, cGAS-STING, TLR-TRIF, and AIM2 inflammasome. Yet, an outstanding challenge is understanding how nucleic acid sensing initiates immune responses and its tethering in various infectious, cancerous, autoimmune, and inflammatory diseases. However, the discovery and application of a plethora of small molecule compounds have substantially facilitated this process. This review provides an overview and recent development of the innate DNA-sensing pathway of cGAS-STING and highlights the multiple agonists and inhibitors in fine-tuning the pathway that can be exploited to improve disease treatment, focusing primarily on crucial pathway components and regulators.  相似文献   

14.
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   

15.
本研究旨在探究非洲猪瘟病毒(African swine fever virus, ASFV) I226R蛋白(I226R protein, pI226R)抑制cGAS-STING信号通路的作用机制。利用双荧光素酶报告系统和实时荧光定量PCR (real-time quantitative PCR, qPCR)证明pI226R显著抑制cGAS-STING通路介导的I型干扰素及干扰素刺激相关基因的产生。免疫共沉淀及激光共聚焦显微镜试验发现pI226R与cGAS蛋白相互作用。免疫印迹分析证明pI226R通过自噬-溶酶体途径促进cGAS蛋白的降解。同时,pI226R阻碍了cGAS与E3泛素连接酶三基序蛋白56 (tripartite motif protein 56, TRIM56)的结合,导致cGAS的单泛素化减弱,从而抑制了cGAS的活化和cGAS-STING通路的激活。总之,本研究证明ASFV pI226R通过拮抗cGAS进而抑制宿主的抗病毒天然免疫反应,进一步增加了对研究ASFV免疫逃逸机制的理解,为疫苗的研发提供了理论基础。  相似文献   

16.
Hedgehog信号通路在动物胚胎期及出生后骨骼肌的生长发育过程中发挥着重要作用。本文综述了Hedgehog信号通路对骨骼肌细胞增殖分化及肌纤维特性的调控作用及其在骨骼肌发育过程中与其它信号通路交互作用最新研究进展,为畜禽肉品质改良和肌肉相关疾病治疗提供理论基础。  相似文献   

17.
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   

18.
The presence of DNA in the cytoplasm of tumor cells induces the dendritic cell to produce type-I IFNs. Classically, the presence of foreign DNA in host cells' cytoplasm during viral infection elicits cGAS-STING mediated type-I IFN signaling and cytokine production. It is likely that cytosolic DNA leads to senescence and immune surveillance in transformed cells during the early stages of carcinogenesis. However, multiple factors, such as loss of cell-cycle checkpoint, mitochondrial damage and chromosomal instability, can lead to persistent accumulation of DNA in the cytoplasm of metastatic tumor cells. That is why aberrant activation of the type I IFN pathway is frequently associated with highly aggressive tumors. Intriguingly, two powerful intracellular deoxyribonucleases, DNase2 and TREX1, can target the cytoplasmic DNA for degradation. Yet the tumor cells consistently accumulate cytoplasmic DNA. This review highlights recent work connecting the lack of DNase2 and TREX1 function to innate immune signaling. It also summarizes the possible mechanisms that limit the activity of DNase2 and TREX1 in tumor cells and contributes to chronic inflammation.  相似文献   

19.
The cytosolic DNA-sensing cGAS-STING pathway has been proved to be involved in tumor progression and influence the effect of cancer immunotherapy. However, little attentions have been paid to the role of cGAS-STING pathway on cancer stemness. Herein, we found that the cGAS-STING pathway was activated in different tumor cells. cGAS- or STING-knockout impaired the capability of tumor formation in vivo and tumorsphere formation in vitro. In addition, loss of cGAS-STING cascade promoted tumor apoptosis, but inhibited tumor growth and metastasis. We further demonstrated that cGAS-STING pathway potentiated tumor formation by sustaining cancer stemness. Moreover, analysis of RNA-seq showed that cGAS-STING pathway maintained cancer stemness probably by activating STAT3. Our findings highlight the role of intrinsic activation of cGAS-STING pathway in tumorigenesis, and reveal a new mechanism of its regulation of tumor progression via sustaining cancer stemness through STAT3 activation.  相似文献   

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