intracellular proliferation

细胞内增殖
  • 文章类型: Journal Article
    探讨李斯特菌致病岛4(LIPI-4)膜通透酶ⅡB(EⅡB)基因在单增李斯特菌毒力中的作用,构建了一个EⅡB缺失菌株(ΔEⅡB)和一个互补菌株。体外实验表明EⅡB缺失影响了野生型菌株Lm928的生物膜形成能力。此外,这种缺失降低了单核细胞增生李斯特菌的细胞内增殖能力。感染ΔEⅡB的小鼠在感染后第1、2和3天存活时间更长,体重减轻较少。ΔEⅡB感染小鼠肝组织中的细菌负荷显著降低,炎症细胞因子IL-β的血液水平显著下降,观察到IL-6、IL-10和TNF-α。EⅡB缺失后,65%(13/20)的基因下调,25%(5/20)上调,10%(2/20)无变化。这些发现表明,EⅡB缺失可能通过下调与毒力和生物膜形成相关基因的转录水平来降低Lm928的体内和体外毒力水平以及生物膜形成能力。这些发现为进一步研究LIPI-4和EⅡB在单核细胞增生李斯特菌中的致病机制奠定了基础。
    To explore the role of the membrane permease ⅡB (EⅡB) gene of Listeria pathogenicity island 4 (LIPI-4) in the virulence of Listeria monocytogenes, both an EⅡB deletion strain (∆EⅡB) and a complemented strain were constructed. In vitro experiments demonstrated that EⅡB deletion affected the biofilm formation ability of the wild-type strain (Lm928). Moreover, this deletion decreased the intracellular proliferation abilities of L. monocytogenes. Mice infected with ∆EⅡB survived longer and experienced less weight loss on days 1, 2, and 3 post-infection. The bacterial load in the liver tissue of ∆EⅡB-infected mice was significantly reduced, and a considerable decrease in the blood levels of inflammatory cytokines IL-β, IL-6, IL-10, and TNF-α were observed. Following EⅡB deletion, 65% (13/20) of genes were downregulated, 25% (5/20) were upregulated, and 10% (2/20) showed no change. These findings suggest that EⅡB deletion may reduce both the in vivo and in vitro virulence levels as well as the biofilm formation ability of Lm928 by downregulating the transcription levels of genes associated with virulence and biofilm formation. These findings provide a foundation for further examining the pathogenic mechanisms of LIPI-4 and EⅡB in L. monocytogenes.
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  • 文章类型: Journal Article
    Macrophages can participate in immune responses by altering their metabolism, and play important roles in controlling bacterial infections. However, Salmonella Enteritidis can survive and proliferate in macrophages. After the deletion of DNA adenine methylase (Dam), the proliferation of Salmonella Enteritidis in macrophages decreased, the molecular mechanism is still unclear. After infecting macrophages with Salmonella Enteritidis wild type and dam gene deletion strains, intracellular metabolites were extracted and detected by non-targeted metabolomics and fatty acid targeted metabolomics. We found Dam had significant effects on arachidonic acid and related metabolic pathways in macrophages. The dam gene can promote the proliferation of Salmonella Enteritidis in macrophages by inhibiting the metabolic pathway of cytosolic phospholipase A2-mediated arachidonic acid production and conversion to prostaglandin E2 in macrophages, reducing the secretion of the pro-inflammatory factors IL-1β and IL-6. In addition, inhibition of arachidonic acid-related pathways in macrophages by Arachidonyl trifluoromethyl ketone could restore the proliferation of dam gene deletion strains in macrophages. This study explored the role of Dam in the process of Salmonella Enteritidis invading host cells from the perspective of host cell metabolism, and provides new insights into the immune escape mechanism of Salmonella Enteritidis.
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  • 文章类型: Journal Article
    李斯特菌溶血素O(LLO)介导的快速吞噬体逃逸是单核细胞增生李斯特菌细胞内复制和发病的先决条件。在从对早期内体Rab5GTP酶呈阴性且对晚期内体Rab7呈阳性的空泡内化后几分钟内发生逃逸。使用突变分析,我们发现单核细胞增生李斯特菌的最佳细胞内增殖需要李斯特菌侵入素InlB。从这个观察开始,我们在HeLa细胞中确定InlB促进含李斯特菌液泡(LCV)的早期吞噬体逃逸和有效的Rab7获取。向LCV募集III类磷酸肌醇3激酶(PI3K)Vps34并积累其脂质产物,磷脂酰肌醇3-磷酸酯(PI3P),两个关键的内体成熟介质,也依赖于InlB。小干扰RNA(siRNA)敲低实验表明,Rab7募集和早期(LLO介导的)逃逸需要Vps34,并支持InlB依赖性细胞内增殖。一起,我们的数据表明,InlB通过破坏III类PI3K/Vps34信号传导加速LCV转化为逃逸有利的Rab7晚期吞噬体。我们的发现揭示了InlBinvasin在李斯特菌发病机制中作为细胞内促进增殖的毒力因子的新功能。重要性通过操纵内体区室避免溶酶体杀死是一种被认为主要限于针内细胞内病原体的毒力机制。我们的发现很重要,因为它们表明细胞溶质病原体,如单核细胞增生李斯特菌,内化后迅速逃离吞噬体,作为生存策略的一部分,也可以广泛颠覆内吞贩运。他们还澄清说,而不是延迟吞噬体成熟(为LLO依赖性破坏留出时间,正如目前所认为的),通过InlBL.单核细胞增多性细胞似乎有助于吞噬液泡快速转化为有利于逃逸的晚期吞噬体。我们的数据强调了细菌毒力因子的多功能性。在细胞表面,InlBinvasin通过I类PI3K激活诱导受体介导的吞噬作用,而在内化后,它利用III类PI3K(Vsp34)来促进细胞内存活。系统地阐明李斯特菌在整个胞吞途径中干扰PI3K信号传导的机制可能会导致新的抗感染疗法。
    Rapid phagosomal escape mediated by listeriolysin O (LLO) is a prerequisite for Listeria monocytogenes intracellular replication and pathogenesis. Escape takes place within minutes after internalization from vacuoles that are negative to the early endosomal Rab5 GTPase and positive to the late endosomal Rab7. Using mutant analysis, we found that the listerial invasin InlB was required for optimal intracellular proliferation of L. monocytogenes. Starting from this observation, we determined in HeLa cells that InlB promotes early phagosomal escape and efficient Rab7 acquisition by the Listeria-containing vacuole (LCV). Recruitment of the class III phosphoinositide 3-kinase (PI3K) Vps34 to the LCV and accumulation of its lipid product, phosphatidylinositol 3-phosphate (PI3P), two key endosomal maturation mediators, were also dependent on InlB. Small interfering RNA (siRNA) knockdown experiments showed that Vps34 was required for Rab7 recruitment and early (LLO-mediated) escape and supported InlB-dependent intracellular proliferation. Together, our data indicate that InlB accelerates LCV conversion into an escape-favorable Rab7 late phagosome via subversion of class III PI3K/Vps34 signaling. Our findings uncover a new function for the InlB invasin in Listeria pathogenesis as an intracellular proliferation-promoting virulence factor. IMPORTANCE Avoidance of lysosomal killing by manipulation of the endosomal compartment is a virulence mechanism assumed to be largely restricted to intravacuolar intracellular pathogens. Our findings are important because they show that cytosolic pathogens like L. monocytogenes, which rapidly escape the phagosome after internalization, can also extensively subvert endocytic trafficking as part of their survival strategy. They also clarify that, instead of delaying phagosome maturation (to allow time for LLO-dependent disruption, as currently thought), via InlB L. monocytogenes appears to facilitate the rapid conversion of the phagocytic vacuole into an escape-conducive late phagosome. Our data highlight the multifunctionality of bacterial virulence factors. At the cell surface, the InlB invasin induces receptor-mediated phagocytosis via class I PI3K activation, whereas after internalization it exploits class III PI3K (Vsp34) to promote intracellular survival. Systematically elucidating the mechanisms by which Listeria interferes with PI3K signaling all along the endocytic pathway may lead to novel anti-infective therapies.
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  • 文章类型: Journal Article
    细胞内原生动物弓形虫感染大约三分之一的世界人口以及各种动物,导致弓形虫病.然而,仍然需要确定刚地弓形虫新鉴定基因的功能。在本研究中,一个新的分子,弓形虫免疫映射蛋白1(TgIMP1),通过CRISPR/Cas9系统对寄生虫的表型变化进行研究。我们发现,与野生型GT1速殖子相比,ΔTgIMP1敲除菌株的毒力降低,在HFF细胞中显示出统计学上减少的斑块和显著延长的小鼠生存期(P<0.05)。此外,体外表型分析数据显示,ΔTgIMP1与野生型GT1菌株之间的细胞内增殖和随后的出口水平不同(P<0.05);而在附着或侵袭过程中没有发现统计学上的差异。这些结果表明,TgIMP1与该寄生虫的细胞内增殖密切相关。
    The intracellular protozoan Toxoplasma gondii infects approximately one-third of the world\'s population as well as various animals, causing toxoplasmosis. However, there remains a need to define the functions of newly identified genes of T. gondii. In the present study, a novel molecule, immune mapped protein 1 of T. gondii (TgIMP1), was devitalized by CRISPR/Cas9 system to investigate the phenotypic changes of the parasite. We found that the virulence of ΔTgIMP1 knockout strain was reduced in comparison with wild-type GT1 tachyzoites, showing a statistically decreased plaque in HFF cells and a significantly prolonged survival period of mice (P < 0.05). Moreover, the data of phenotype analyses in vitro showed a different level of the intracellular proliferation and the subsequent egress between ΔTgIMP1 and wild-type GT1 strain (P < 0.05); while no statistically significant difference was detected during the process of attachment or invasion. These results suggested that TgIMP1 is closely associated with the intracellular proliferation of this parasite.
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  • 文章类型: Journal Article
    Anaplasma phagocytophilum, an obligate intracellular bacterium that propagates within host granulocytes, is considered to modify the host intracellular environment for pathogenesis. However, the mechanism(s) underlying such host modifications remain unclear. Here, we aimed to investigate the relation between A. phagocytophilum and endoplasmic reticulum (ER) stress in THP-1 cells. A. phagocytophilum activated the three ER stress sensors: inositol-requiring enzyme-1 (IRE1), protein kinase RNA-like endoplasmic reticulum kinase (PERK), and activating transcription factor-6 (ATF6). IRE1 activation occurred immediately after host cell invasion by A. phagocytophilum; however, the activated IRE1-induced splicing of X-box-binding protein 1 was not promoted during A. phagocytophilum infection. This suppression was sustained even after the doxycycline-mediated elimination of intracellular A. phagocytophilum. IRE1 knockdown accelerated A. phagocytophilum-induced apoptosis and decreased intracellular A. phagocytophilum. These data suggest that A. phagocytophilum utilizes IRE1 activation to promote its own intracellular proliferation. Moreover, PERK and ATF6 partially mediated A. phagocytophilum-induced apoptosis by promoting the expression of CCAAT/enhancer-binding protein homologous protein, which induces the transcription of several proapoptotic genes. Thus, A. phagocytophilum possibly manipulates the host ER stress signals to facilitate intracellular proliferation and infection of surrounding cells before/after host cell apoptosis.
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  • 文章类型: Journal Article
    Cryptococcus neoformans is a common environmental saprophyte and human fungal pathogen that primarily causes disease in immunocompromised individuals. Similar to many environmentally acquired human fungal pathogens, C. neoformans initiates infection in the lungs. However, the main driver of mortality is invasive cryptococcosis leading to fungal meningitis. After C. neoformans gains a foothold in the lungs, a critical early step in invasion is transversal of the respiratory epithelium. In this review, we summarize current knowledge relating to pulmonary escape. We focus on fungal factors that allow C. neoformans to disseminate from the lungs via intracellular and extracellular routes.
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  • 文章类型: Journal Article
    The Salmonella invasion-associated type III secretion system (T3SS1) is an essential virulence factor required for entry into nonphagocytic cells and consequent uptake into a Salmonella-containing vacuole (SCV). While Salmonella is typically regarded as a vacuolar pathogen, a subset of bacteria escape from the SCV in epithelial cells and eventually hyperreplicate in the cytosol. T3SS1 is downregulated following bacterial entry into mammalian cells, but cytosolic Salmonella cells are T3SS1 induced, suggesting prolonged or resurgent activity of T3SS1 in this population. In order to investigate the postinternalization contributions of T3SS1 to the Salmonella infectious cycle in epithelial cells, we bypassed its requirement for bacterial entry by tagging the T3SS1-energizing ATPase InvC at the C terminus with peptides that are recognized by bacterial tail-specific proteases. This caused a dramatic increase in InvC turnover which rendered even assembled injectisomes inactive. Bacterial strains conditionally expressing these unstable InvC variants were proficient for invasion but underwent rapid and sustained intracellular inactivation of T3SS1 activity when InvC expression ceased. This allowed us to directly implicate T3SS1 activity in cytosolic colonization and bacterial egress. We subsequently identified two T3SS1-delivered effectors, SopB and SipA, that are required for efficient colonization of the epithelial cell cytosol. Overall, our findings support a multifaceted, postinvasion role for T3SS1 and its effectors in defining the cytosolic population of intracellular SalmonellaIMPORTANCE A needle-like apparatus, the type III secretion system (T3SS) injectisome, is absolutely required for Salmonella enterica to enter epithelial cells; this requirement has hampered the analysis of its postentry contributions. To identify T3SS1-dependent intracellular activities, in this study we overcame this limitation by developing a conditional inactivation in the T3SS whereby T3SS activity is chemically induced during culture in liquid broth, permitting bacterial entry into epithelial cells, but is quickly and perpetually inactivated in the absence of inducer. In this sense, the mutant acts like wild-type bacteria when extracellular and as a T3SS mutant once it enters a host cell. This \"conditional\" mutant allowed us to directly link activity of this T3SS with nascent vacuole lysis, cytosolic proliferation, and cellular egress, demonstrating that the invasion-associated T3SS also contributes to essential intracellular stages of the S. enterica infectious cycle.
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  • 文章类型: Journal Article
    新兴的真菌病原体导致整个动物界的疾病负担不断扩大,包括人类发病率和死亡率的上升。然而,我们目前只有有限的可用治疗干预措施。因此,需要对真菌毒力的机制和物种内高毒力的出现有更深入的了解,以进行新的治疗和缓解努力。例如,在过去的十年里,不寻常的加蒂隐球菌谱系,首次在温哥华岛上被发现,已经蔓延到加拿大大陆和太平洋西北地区,感染了健康的个体。导致这种高毒力隐球菌谱系发展的分子变化尚不清楚。为了探索这个,我们追踪了可能导致宿主范围和致病性变化的类似微进化事件的历史。这里,我们详细介绍了两种高度相关的gattii隐球菌VGIIc分离株之间的遗传差异的精细分辨率图谱,这些分离株的毒力特征不同(吞噬作用,呕吐症,巨噬细胞死亡,线粒体微管化和胞内增殖)。我们鉴定了编码区内的少量单点变异,这些变异可能导致毒力的变化。然后,我们将我们的方法扩展到C.gattii的多个谱系,以研究选择如何作用于不同谱系内的关键毒力基因。本文是主题问题的一部分,“应对新出现的真菌对动物健康的威胁,粮食安全和生态系统复原力。
    Emerging fungal pathogens cause an expanding burden of disease across the animal kingdom, including a rise in morbidity and mortality in humans. Yet, we currently have only a limited repertoire of available therapeutic interventions. A greater understanding of the mechanisms of fungal virulence and of the emergence of hypervirulence within species is therefore needed for new treatments and mitigation efforts. For example, over the past decade, an unusual lineage of Cryptococcus gattii, which was first detected on Vancouver Island, has spread to the Canadian mainland and the Pacific Northwest infecting otherwise healthy individuals. The molecular changes that led to the development of this hypervirulent cryptococcal lineage remain unclear. To explore this, we traced the history of similar microevolutionary events that can lead to changes in host range and pathogenicity. Here, we detail fine-resolution mapping of genetic differences between two highly related Cryptococcus gattii VGIIc isolates that differ in their virulence traits (phagocytosis, vomocytosis, macrophage death, mitochondrial tubularization and intracellular proliferation). We identified a small number of single site variants within coding regions that potentially contribute to variations in virulence. We then extended our methods across multiple lineages of C. gattii to study how selection is acting on key virulence genes within different lineages.This article is part of the themed issue \'Tackling emerging fungal threats to animal health, food security and ecosystem resilience\'.
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  • 文章类型: Journal Article
    真菌病原体新生隐球菌对免疫功能低下的患者构成主要威胁,并且是全球人类免疫缺陷病毒(HIV)感染患者的主要杀手。已知隐球菌可以操纵宿主巨噬细胞,并且可以在宿主吞噬细胞内在胞内保持潜伏或增殖。有利的生态位,也使他们对抗真菌剂相对不敏感。在这里,我们报告了通过使用基于荧光的药物筛选方法来鉴定新型梭菌细胞内增殖的潜在抑制剂来解决这一限制的尝试。在FDA批准的小分子的Prestwick化学文库(®)中筛选限制荧光标记的新生梭菌参比菌株(H99-GFP)在巨噬细胞中的细胞内复制的化合物。初步筛选显示1200种化合物中有19种可以显着降低病原体的细胞内生长。二次筛选和宿主细胞毒性测定强调了盐酸芬地林是未来发展的潜在药物候选物。活细胞成像表明,这种Ca(2)通道阻断剂强烈增强了巨噬细胞中的吞噬体成熟,从而改善了真菌杀伤并减少了细胞内复制。虽然相对高剂量的盐酸芬迪林使其不适合临床部署针对隐球菌病,这项研究强调了一种鉴定新的先导化合物的新方法,并揭示了一种药理学上有希望的支架,用于开发这种被忽视的疾病的新型抗真菌疗法。
    The fungal pathogen Cryptococcus neoformans poses a major threat to immunocompromised patients and is a leading killer of human immunodeficiency virus (HIV)-infected patients worldwide. Cryptococci are known to manipulate host macrophages and can either remain latent or proliferate intracellularly within the host phagocyte, a favourable niche that also renders them relatively insensitive to antifungal agents. Here we report an attempt to address this limitation by using a fluorescence-based drug screening method to identify potential inhibitors of intracellular proliferation of C. neoformans. The Prestwick Chemical Library(®) of FDA-approved small molecules was screened for compounds that limit the intracellular replication of a fluorescently-tagged C. neoformans reference strain (H99-GFP) in macrophages. Preliminary screening revealed 19 of 1200 compounds that could significantly reduce intracellular growth of the pathogen. Secondary screening and host cell cytotoxicity assays highlighted fendiline hydrochloride as a potential drug candidate for the development of future anticryptococcal therapies. Live cell imaging demonstrated that this Ca(2+) channel blocker strongly enhanced phagosome maturation in macrophages leading to improved fungal killing and reduced intracellular replication. Whilst the relatively high dose of fendiline hydrochloride required renders it unfit for clinical deployment against cryptococcosis, this study highlights a novel approach for identifying new lead compounds and unravels a pharmacologically promising scaffold towards the development of novel antifungal therapies for this neglected disease.
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  • 文章类型: Journal Article
    Toxoplasma gondii uses a unique mechanism to fulfill its asexual life cycles by which the parasite can infect all the warm-blooded animals including humans. Mitogen-activated protein kinase (MAPK) or extracellular signal-regulated kinase (ERK) pathway widely existed in eukaryotic cells mediates the conversion of environmental stimuli to intracellular events such as proliferation and differentiation. Their counterparts have been identified in Apicomplexan parasites such as ERK7 in T. gondii. To confirm whether the unique mechanism of T. gondii is relevant to MAPK/ERK member, we created a mutant (ΔTgERK7) in GT1 tachyzoites using double homologous recombination method. Our results of virulence evaluation showed 100 % survival of all the ΔTgERK7-infected mice until 35 days post-challenge compared to no survival in wild-type GT1-infected group (10.6 ± 0.34 days). Furthermore, lower parasite loads were detected in the peritoneal fluid of ΔTgERK7-infected mice (P < 0.05). To ensure whether or not ERK7 gene knockout leads to the growth deficiency of T. gondii, the intracellular proliferation of ΔTgERK7 was also examined in vitro. Our data indicated that the proliferation of ΔTgERK7 parasites was significantly prolonged in comparison with wild-type GT1 tachyzoites (P < 0.05). Therefore, we concluded that TgERK7 is important for the intracellular proliferation of T. gondii, which further emphasized that MAPK/ERK derived from T. gondii participates in the regulation of the asexual life cycles to ensure the survival and reinfections of this parasite.
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