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1.
Jia XH  Yang XL  Jia TJ 《生理科学进展》2010,41(6):467-470
沙眼衣原体分泌性蛋白在沙眼衣原体致病过程中起重要作用,质粒编码的蛋白pgp3(即pORF5)是迄今为止发现的唯一由沙眼衣原体质粒编码的分泌性蛋白。pgp3在沙眼衣原体感染早期即可表达,在感染人群中具有很强的免疫原性,且人抗体对pgp3的识别具有高度的结构依赖性,对该蛋白的研究将有助于进一步了解衣原体质粒编码蛋白的作用及衣原体致病机制,以寻找更好的衣原体诊断方法和防治措施。本文就沙眼衣原体质粒编码蛋白pgp3的生物学性质及其致病机制作一简要综述。  相似文献   

2.
沙眼衣原体除含有高度保守的基因组外,也含一个7.5kb的隐蔽性质粒,隐蔽性质粒具有8个开放阅读(ORF1-8),编码8种质粒蛋白pgpl-8。质粒蛋白在沙眼衣原体致病过程中发挥重要的作用,尤其是新近发现沙眼衣原体的唯一一种分泌到胞浆中的分泌性蛋白pgp3和对毒力相关基因具有转录调节功能的pgp4。对就沙衣原体的质粒蛋白研究现状进行了综述。  相似文献   

3.
【目的】探讨不同免疫途径沙眼衣原体(Chlamydia trachomatis,Ct)分泌性蛋白Pgp3的免疫保护效果,分析其可能的保护机制,以确定Pgp3蛋白疫苗在Ct疫苗研制中的应用价值。【方法】分泌性蛋白Pgp3经滴鼻或肌注途径免疫雌性Balb/c小鼠,免疫60 d后,阴道接种鼠沙眼衣原体(Chlamydia muridarum,Cm)建立生殖道感染动物模型,在该模型中评价Pgp3蛋白疫苗抗Cm感染的保护效果,并探讨其机制。【结果】滴鼻或肌注免疫后,小鼠血清及生殖道中检测到了特异性抗体;小鼠脾淋巴细胞产生IFN-γ、IL-17及IL-5水平均明显高于对照组,且滴鼻免疫组IFN-γ水平升高较肌注组更显著(P<0.05);Pgp3蛋白滴鼻免疫组小鼠经Cm生殖道感染后,阴道带菌时间明显缩短,输卵管病理改变轻而肌注免疫组其保护作用不明显。【结论】Pgp3蛋白经滴鼻免疫可有效诱导小鼠产生明显的抗Cm保护效应。其可能的免疫保护机制与诱导Th1型为主的细胞免疫应答及高效价的特异性抗体有关,提示Pgp3蛋白疫苗具有潜在的疫苗研究与开发价值。  相似文献   

4.
【目的】克隆表达高致病性2型猪链球菌05ZYH33株的SspA截短型基因,验证其是否具有酶学活性,并构建该基因的缺失突变株细菌,探讨其在2型猪链球菌致病过程中所起的作用【。方法】构建SS2的SspA截短型基因05SSU0811原核表达质粒,表达并纯化05SSU0811蛋白,运用丝氨酸蛋白酶底物Succinyl-Ala-Ala-Pro-Phe-p-nitroanilide(pNa),通过显色反应检测表达产物的酶学活性;运用同源重组技术敲除05SSU0811基因,多重交叉PCR筛选敲除株并测序鉴定,动物试验分析05SSU0811基因缺失对细菌毒力的影响。【结果】成功表达并纯化05SSU0811蛋白,浓度约为3.5 g/L。丝氨酸蛋白酶活性测定试验证实其具有酶学活性;获得05SSU0811基因缺失突变株,小鼠攻毒试验表明,野生株攻毒的20只小鼠全部死亡,基因缺失突变株攻毒组死亡9只,死亡率45%,两组间死亡率有显著性差异。表明05SSU0811基因缺失的菌株毒力较野生株明显下降。【结论】05SSU0811基因编码的截短型丝氨酸蛋白酶仍然具有酶学活性,SS2的截短型基因SspA在高致病性2型猪链球菌的致病性方面具有一定作用。  相似文献   

5.
摘要:【目的】利用真核细胞分泌表达犬细小病毒VP2蛋白和研究其特性。【方法】为构建犬细小病毒(Canine parvovirus, CPV)VP2基因的真核分泌型表达载体,首先通过酶切从含有人CD5信号肽序列的质粒中将CD5信号肽基因片段切出,将其连接到真核表达载体pcDNA3.1A的多克隆位点上,构建成pcDNA3.1-CD5sp质粒。然后再通过PCR方法从含有犬细小病毒VP2基因的质粒中扩增VP2基因,并将其插入到pcDNA3.1- CD5sp载体中CD5信号肽的下游,构建成VP2基因的真核分泌型表达载体pcDNA-CD5sp-VP2。经磷酸钙介导转染293T细胞,使其在真核细胞中进行分泌表达,并通过ELISA检测表达的VP2蛋白与犬转铁蛋白受体(TfR)结合的活性。【结果】序列分析结果表明,本实验构建的犬细小病毒VP2基因真核分泌型表达载体结构正确,将该表达载体转染的293T细胞,在培养基中通过Western-blot检测到有VP2重组蛋白的存在。经ELISA检测表明表达的重组VP2蛋白具有与犬转铁蛋白受体结合的活性。【结论】 利用人的CD5信号肽实现了犬细小病毒VP2蛋白在真核细胞中的分泌表达,表达的VP2蛋白具有与犬转铁蛋白受体结合的活性。  相似文献   

6.
【背景】细菌性果斑病(bacterial fruit blotch,BFB)是葫芦科植物上一种严重的检疫性病害,其病原菌为西瓜食酸菌(Acidovorax citrulli)。目前已知Ⅲ型分泌效应物(typeⅢsecreted effectors,T3SEs)是该病菌的关键致病因子,但对其效应物功能和作用机制的认识非常有限。【目的】鉴定西瓜食酸菌Ⅲ型分泌效应物基因aopW,分析其编码蛋白质影响植物免疫的方式,为更深入地认识该基因在西瓜食酸菌致病机制中的作用奠定基础。【方法】利用生物信息学分析其序列特征;借助荧光定量PCR技术分析aopW的表达调控及其与抗病相关基因表达间的关系;利用基因突变及基因功能互补手段,通过分析致病性、寄主活性氧积累量等解析基因功能;采用瞬时表达技术了解AopW诱导非寄主hypersensitive response (HR)能力及其亚细胞定位情况。【结果】aopW基因启动子区存在Ⅲ型分泌系统(type Ⅲ secretion system,T3SS)核心基因结合位点,其编码的蛋白不存在信号肽和跨膜螺旋区,与Ⅲ型分泌效应物harpin蛋白同源;T3SS核心基因hr...  相似文献   

7.
衣原体具有广泛的致病谱,能够引起多种疾病,而分泌性蛋白在衣原体致病过程中发挥了重要的作用。Pgp3 (plasmid gene protein 3)是由衣原体质粒基因编码的一种主要定位于宿主细胞质的分泌性蛋白,具有调控炎症反应、细胞凋亡、自噬等多种生物学功能。Pgp3也是一种免疫优势抗原,可用于衣原体疾病的诊断和作为疫苗研制的靶点。全面、深入地研究该蛋白功能将有助于进一步了解衣原体的致病机制,为衣原体感染的诊断和防治提供新的思路。  相似文献   

8.
【目的】以肠炎沙门菌肽脯氨酰顺反异构酶SlyD为对象,构建基因缺失株及表达纯化该蛋白,为研究其在肠炎沙门菌致病性与应激等方面的作用奠定基础。【方法】参考Gen Bank登录的肠炎沙门菌基因组序列设计用于slyD基因敲除及原核表达的特异引物,运用自杀质粒介导的同源重组技术对肠炎沙门菌C50041 slyD基因进行敲除,构建C50041ΔslyD缺失株;原核表达SlyD蛋白,通过α-糜蛋白酶耦联法对其PPIase活性进行测定;利用生物信息学相关软件,分析SlyD蛋白的氨基酸序列及功能域。【结果】PCR鉴定与测序结果证明成功构建了肠炎沙门菌C50041ΔslyD缺失株,其生长特性与野生株基本一致;SDS-PAGE及PPIase活性分析表明,获得了具有生物活性的可溶性SlyD蛋白;生物信息学分析显示SlyD蛋白由FKBP样肽脯氨酰顺反异构酶结构域、分子伴侣功能域和金属结合区域3个功能区域组成。【结论】成功获得了肠炎沙门菌C50041ΔslyD缺失株和具有PPIase活性的重组SlyD蛋白。  相似文献   

9.
一种新型酿酒酵母附加型分泌表达载体的构建   总被引:3,自引:0,他引:3  
用化学法合成克鲁维酵母的菊粉酶基因的信号肽序列(INU),将其嵌入酵母附加型表达质粒pYES2,得到一套新型的分泌表达载体pYES2I,pYES2Ⅱ,pYES2Ⅲ。然后用PCR方法分别扩增大肠杆菌的天冬酰胺酶基因(ASN)和短芽孢杆菌α乙酰乳酸脱羧酶(ALDC)基因,连接到INU下游,得到重组质粒pASN和pALDC。分别将这两个重组质粒转化酿酒酵母菌株INVScⅠ中表达,胞内和胞外的酶活分析表明ASN和ALDC基因都能在酿酒酵母中分泌表达,表明菊粉酶信号肽序列能很好地将酿酒酵母中的重组蛋白分泌到胞外。稳定性分析表明,重组酵母菌株在没有选择压力的条件下连续接种培养100h,未发现重组质粒的不稳定性。  相似文献   

10.
摘要: 【目的】确定rmlB 基因在大肠杆菌( O2: K1) L-型鼠李糖合成中的作用。【方法】将基因rmlB 进行原核表达并测定酶活; 用同源重组的方法将rmlB 基因敲除,分析表型变化,并运用质谱,以及核磁共振等手段分析脂多糖O 侧链的结构,以确定rmlB 在O 抗原合成中的作用。【结果】成功对rmlB 基因进行了表达并测定了重组蛋白的酶活,确定蛋白RmlB 具有dTDP-D-glucose 4,6-dehydratase 活性。成功构建了rmlB 基因缺失突变株,对突变株进行表型分析发现突变株的表型与野生株相比无变化。对突变株分析发现突变株中的O抗原仍含有L-型鼠李糖,说明在该菌株中可能存在RmlB 的同功能酶或者存在其它的L-型鼠李糖合成途径。【结论】rmlB 基因编码的蛋白具有dTDP-D-glucose 4,6-dehydratase 活性但此基因对于L-型鼠李糖的合成不是必需的。  相似文献   

11.
Qi M  Lei L  Gong S  Liu Q  DeLisa MP  Zhong G 《Journal of bacteriology》2011,193(10):2498-2509
The Chlamydia-specific hypothetical protein CT795 was dominantly recognized by human antisera produced during C. trachomatis infection but not by animal antisera raised against dead chlamydia organisms. The immundominant region recognized by the human antibodies was mapped to the N-terminal fragment T22-S69. The endogenous CT795 was detected in the cytoplasm of host cells during C. trachomatis infection and was highly enriched in the host cytosolic fraction but absent in the purified chlamydia organisms, suggesting that CT795 is synthesized and secreted into host cell cytoplasm without incorporation into the organisms. All C. trachomatis serovars tested secreted CT795. A predicted signal peptide of CT795 directed the mature PhoA to cross Escherichia coli inner membranes. The secretion of CT795 in Chlamydia-infected cells was inhibited by a C(16) compound targeting signal peptidase I, but not by a C(1) compound known to block the type III secretion pathway. These results suggest that CT795, like CPAF (a Chlamydia-secreted virulence factor), is secreted into the host cell cytoplasm via a sec-dependent mechanism and not by a type III secretion pathway. The above characterizations of CT795 have provided important information for further understanding the potential roles of CT795 in C. trachomatis pathogenesis.  相似文献   

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14.
Chlamydia trachomatis remains one of the few major human pathogens for which there is no transformation system. C. trachomatis has a unique obligate intracellular developmental cycle. The extracellular infectious elementary body (EB) is an infectious, electron-dense structure that, following host cell infection, differentiates into a non-infectious replicative form known as a reticulate body (RB). Host cells infected by C. trachomatis that are treated with penicillin are not lysed because this antibiotic prevents the maturation of RBs into EBs. Instead the RBs fail to divide although DNA replication continues. We have exploited these observations to develop a transformation protocol based on expression of β-lactamase that utilizes rescue from the penicillin-induced phenotype. We constructed a vector which carries both the chlamydial endogenous plasmid and an E.coli plasmid origin of replication so that it can shuttle between these two bacterial recipients. The vector, when introduced into C. trachomatis L2 under selection conditions, cures the endogenous chlamydial plasmid. We have shown that foreign promoters operate in vivo in C. trachomatis and that active β-lactamase and chloramphenicol acetyl transferase are expressed. To demonstrate the technology we have isolated chlamydial transformants that express the green fluorescent protein (GFP). As proof of principle, we have shown that manipulation of chlamydial biochemistry is possible by transformation of a plasmid-free C. trachomatis recipient strain. The acquisition of the plasmid restores the ability of the plasmid-free C. trachomatis to synthesise and accumulate glycogen within inclusions. These findings pave the way for a comprehensive genetic study on chlamydial gene function that has hitherto not been possible. Application of this technology avoids the use of therapeutic antibiotics and therefore the procedures do not require high level containment and will allow the analysis of genome function by complementation.  相似文献   

15.
A method was developed to study plasmid stability in Escherichia coli cells, which utilised the high speed analysis properties of flow cytometry. To discriminate between plasmid-harbouring cells and plasmid-free cells a plasmid-encoded Lac repressor protein was used to regulate the expression of a chromosomally inserted green fluorescent protein gene in the host cells. Flow cytometric analysis enabled detection and quantification of plasmid-free cells due to their green fluorescent phenotype. The reported system offers real-time analysis in combination with a very low detection level of plasmid loss in bacterial populations. This could be useful in future investigations of plasmid stability and population selection in bacterial communities.  相似文献   

16.
Glycogen has been localized both inside and outside Chlamydia trachomatis organisms. We now report that C. trachomatis glycogen synthase (GlgA) was detected in both chlamydial organism-associated and -free forms. The organism-free GlgA molecules were localized both in the lumen of chlamydial inclusions and in the cytosol of host cells. The cytosolic GlgA displayed a distribution pattern similar to that of a known C. trachomatis-secreted protease, CPAF. The detection of GlgA was specific since the anti-GlgA antibody labeling was only removed by preabsorption with GlgA but not CPAF fusion proteins. GlgA was detectable at 12h and its localization into host cell cytosol only became apparent at 24h after infection. The cytosolic localization of GlgA was conserved among all C. trachomatis serovars. However, the significance of the GlgA secretion into host cell cytoplasm remains unclear since, while expression of chlamydial GlgA in HeLa cells increased glycogen stores, it did not affect a subsequent infection with C. trachomatis. Similar to several other C. trachomatis-secreted proteins, GlgA is immunogenic in women urogenitally infected with C. trachomatis, suggesting that GlgA is expressed and may be secreted into host cell cytosol during C. trachomatis infection in humans. These findings have provided important information for further understanding C. trachomatis pathogenic mechanisms.  相似文献   

17.
Chlamydia trachomatis is an obligate intracellular gram-negative pathogen and the etiologic agent of significant ocular and genital tract diseases. Chlamydiae primarily infect epithelial cells, and the inflammatory response of these cells to the infection directs both the innate and adaptive immune response. This study focused on determining the cellular immune receptors involved in the early events following infection with the L2 serovar of C. trachomatis.We found that dominant negative MyD88 inhibited interleukin-8 (IL-8) secretion during a productive infection with chlamydia. Furthermore, expression of Toll-like receptor (TLR)-2 was required for IL-8 secretion from infected cells, whereas the effect of TLR4/MD-2 expression was minimal. Cell activation was dependent on infection with live, replicating bacteria, because infection with UV-irradiated bacteria and treatment of infected cells with chloramphenicol, but not ampicillin, abrogated the induction of IL-8 secretion. Finally, we show that both TLR2 and MyD88 co-localize with the intracellular chlamydial inclusion, suggesting that TLR2 is actively engaged in signaling from this intracellular location. These data support the role of TLR2 in the host response to infection with C. trachomatis. Our data further demonstrate that TLR2 and the adaptor MyD88 are specifically recruited to the bacterial or inclusion membrane during a productive infection with chlamydia and provide the first evidence that intracellular TLR2 is responsible for signal transduction during infection with an intracellular bacterium.  相似文献   

18.
Chlamydia trachomatis is an obligate intracellular pathogen that replicates in a vacuole termed the inclusion. Many of the interactions of chlamydiae with the host cell are dependent upon bacterial protein synthesis and presumably exposure of these proteins to the cytosol. Because of the dearth of genetic tools for chlamydiae, previous studies examining secreted proteins required the use of heterologous bacterial systems. Recent advances in genetic manipulation of chlamydia now allow for transformation of the bacteria with plasmids. We describe here a shuttle vector system, pBOMB4, that permits expression of recombinant proteins under constitutive or conditional promoter control. We show that the inclusion membrane protein IncD is secreted in a type III-dependent manner from Yersinia pseudotuberculosis and also secreted from C. trachomatis in infected cells where it localizes appropriately to the inclusion membrane. IncD truncated of the first 30 amino acids containing the secretion signal is no longer secreted and is retained by the bacteria. Cytosolic exposure of secreted proteins can be confirmed by using CyaA, GSK, or microinjection assays. A protein predicted to be retained within the bacteria, NrdB is indeed localized to the chlamydia. In addition, we have shown that the chlamydial effector protein, CPAF, which is secreted into the host cell cytosol by a Sec-dependent pathway, also accesses the cytosol when expressed from this system. These assays should prove useful to assess the secretion of other chlamydial proteins that are potentially exposed to the cytosol of the host cell.  相似文献   

19.
The obligate intracellular bacterium Chlamydia trachomatis occupies a parasitophorous vacuole termed an inclusion. During its intracellular developmental cycle, C. trachomatis maintains this intracellular niche, presumably by expressing a type III secretion system, which deploys a set of host cell-interactive proteins including inclusion membrane-localized proteins termed Incs. Some Incs are expressed and secreted by 2 h (early cycle) after infection, whereas the expression of type III-specific genes is not detectable until 6-12 h (mid-cycle). To resolve this paradox, we investigated the presence of a type III apparatus on elementary bodies (EBs) that might function early in infection. We demonstrate the existence of the type III secretory apparatus by matrix-assisted laser desorption ionization time-of-flight (MALDI-TOF) and immunoblot analyses of purified EB extracts. Immunoblots using polyclonal antibodies specific for the core apparatus component CdsJ identified this protein in both EB and reticulate body (RB) extracts. Furthermore, CdsJ-specific signals were detected by immunoblot of whole infected-culture extracts and by indirect immunofluorescence of infected monolayers at times before the detection of cdsJ-specific message. Finally, expression of IncC, expressed by 2 h after infection during C. trachomatis infections, in Yersinia pseudotuberculosis resulted in its secretion via the Yersinia type III apparatus. Based on these data, we propose a model in which type III secretion pores are present on EBs and mediate secretion of early Incs and possible additional effectors. Mid-cycle expression of type III genes would then replenish secretion apparatus on vegetative RBs and serve as a source of secretion pores for subsequently formed EBs.  相似文献   

20.
The obligate intracellular pathogen Chlamydia trachomatis expresses a type III secretion system (T3SS) which has the potential to contribute significantly to pathogenesis. Based on a demonstrated role of type III secretion (T3S)-specific chaperones in the secretion of antihost proteins by gram-negative pathogens, we initiated a study of selected putative Chlamydia T3S chaperones in an effort to gain mechanistic insight into the Chlamydia T3SS and to potentially identify Chlamydia-specific secreted products. C. trachomatis Scc2 and Scc3 are homologous to SycD of Yersinia spp. Functional studies of the heterologous Yersinia T3SS indicated that although neither Scc2 nor Scc3 was able to fully complement a sycD null mutant, both have SycD-like characteristics. Both were able to associate with the translocator protein YopD, and Scc3 expression restored limited secretion of YopD in in vitro studies of T3S. CopB (CT578) and CopB2 (CT861) are encoded adjacent to scc2 and scc3, respectively, and have structural similarities with the YopB family of T3S translocators. Either Scc2 or Scc3 coprecipitates with CopB from C. trachomatis extracts. Expression of CopB or CopB2 in Yersinia resulted in their type III-dependent secretion, and localization studies with C. trachomatis-infected cells indicated that both were secreted by Chlamydia.  相似文献   

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