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1.
【背景】鸭疫里默氏菌(Riemerella anatipestifer,RA)可引起鸭等多种禽类败血症和浆膜炎,给禽养殖业造成严重经济损失。蛋白疫苗是预防RA感染的重要策略之一。目前,有关RA重组蛋白免疫原性报道较少,且其应用也受到单一蛋白抗原诱导的特异性免疫反应不足的限制。【目的】探究分子伴侣DnaK、外膜蛋白A (outer membrane protein A,OmpA)和OmpA-DnaK蛋白疫苗在鸭体内诱导的免疫应答,评估其免疫原性,为RA疫苗抗原研发提供依据。【方法】克隆DnaK和OmpA基因并分别与pET-32a(+)载体相连,利用限制性酶切位点Nco I和Bam H I将OmpA连接至DnaK基因上游,经原核表达和纯化制得重组蛋白DnaK、OmpA和OmpA-DnaK。3种重组蛋白分别皮下免疫雏鸭2次,检测其血清抗体滴度、淋巴细胞增殖和细胞因子(IL-2和IL-4)水平;以RA-GH5肌肉注射攻毒,检查其组织病理学变化及免疫保护率。【结果】成功表达了DnaK、OmpA和OmpA-DnaK重组蛋白,分子量分别约为90、60和130 kDa。3种蛋白疫苗均能诱导宿主产生体液...  相似文献   

2.
目的:旨在建立耐低温革兰氏阴性菌外膜蛋白体外折叠体系,为膜蛋白合成耐低温机制提供理论基础。方法:以包涵体的形式在大肠杆菌中过量表达了来源于耐低温希瓦氏菌的OmpA同源外膜蛋白Omp74的全蛋白质和N端跨膜结构域,纯化包涵体后,用高浓度尿素或强阴离子表面活性剂溶液溶解包涵体,以非离子表面活性剂为折叠介质,建立该外膜蛋白的体外折叠体系,同时以大肠杆菌的OmpA作为对照进行了比较研究。结果:与OmpA相比,Omp74体外折叠受温度影响较小,低浓度的阴离子表面活性剂能促Omp74的折叠,但对OmpA的折叠没有影响;C端结构域抑制Omp74在表面活性剂中的折叠;Omp74在0.5%的月桂酰基麦芽糖苷(DDM)和0.4%的十二烷基肌氨酸钠的混合溶液中能达到接近100%的折叠效率。  相似文献   

3.
【目的】鸭疫里氏杆菌(Riemerella anatipestifer,RA)是一种重要的禽病病原,分为21个血清型。但一直缺乏一种针对多种血清型广泛适用的抗体检测方法。前期的研究表明,外膜蛋白A (Outer membrane protein A,OmpA)广泛存在于多种血清型的RA菌株中,是一种重要的免疫原性蛋白,并且其基因序列在RA血清型之间具有高度的保守性,提示其可以作为RA感染血清抗体检测的靶点分子。以重组蛋白OmpA建立间接酶联免疫吸附试验检测RA的抗体。【方法】通过诱导表达条件的摸索及蛋白纯化,获得适用于ELISA包被的重组OmpA抗原。通过Western-blot证明重组蛋白OmpA是否与RA多种血清型发生免疫学反应。进行方阵试验以确定ELISA抗原的最佳包被浓度、被检测血清的反应浓度。重复性、特异性和敏感性试验检查该方法的实用性。【结果】实验证实加入1%乙醇的诱导培养基有利于重组蛋白的可溶性表达。Western-blot结果表明,重组蛋白OmpA可以与1、2、6、10、11、13、14和17型多种RA主要流行血清型有良好的免疫反应性。经方阵试验确定抗原的最佳包被浓度为8 mg/L,待检血清的最佳稀释度为1:160。所建立检测方法具有良好的重复性、特异性和敏感性。【结论】实验建立的鸭疫里氏杆菌多种血清型间接ELISA检测方法可以用于免疫后抗体消长以及感染性抗体的检测。  相似文献   

4.
副溶血弧菌SH112株OmpA蛋白的高效表达及免疫学特性   总被引:1,自引:0,他引:1  
【目的】我们前期研究表明副溶血弧菌SH112株的OmpA蛋白在该菌的致病过程中发挥重要作用,是亚单位疫苗研制的潜在靶标抗原。本研究进一步对ompA(VPA1186)基因进行克隆表达,并研究其免疫学特性。【方法】扩增去除信号肽序列的成熟外膜蛋白OmpA的基因片段,定向克隆至表达载体,基因测序后对其编码蛋白质进行生物信息学分析。重组蛋白His-OmpA经纯化后,免疫ICR小鼠制备鼠多抗血清。Western blotting检测该蛋白的免疫原性及鼠多抗血清的特异性。动物实验验证其免疫保护率。【结果】成功表达分子量约为40.0 kDa的重组蛋白His-OmpA。制备的鼠多抗血清ELISA效价可达1∶50000以上。Westernblotting检测结果显示,该血清可与His-OmpA蛋白、总外膜蛋白和全菌蛋白发生特异性反应,说明所表达的目的蛋白保持原蛋白的免疫原性。此外,该高免血清可与其他主要血清型的副溶血弧菌发生特异性交叉反应,而与其他非副溶血弧菌菌株无交叉反应,表明该血清特异性较高,且提示OmpA蛋白可能是副溶血弧菌属的共同保护性抗原。小鼠免疫保护实验结果表明,该蛋白可提供约35%的免疫保护率。【结论】OmpA蛋白可作为诊断副溶血弧菌感染和亚单位疫苗研制的靶蛋白,为进一步开展该蛋白的功能研究提供了参考。  相似文献   

5.
糖原合成酶激酶-3β (glycogen synthase kinase-3β,GSK-3β)除了在抑制糖原合成中的重要作用外,越来越多的研究表明它是细胞凋亡过程中的一个关键信号调节蛋白.然而,在细胞凋亡过程中它调节的主要下游促凋亡蛋白依然不明确,尤其是Bcl-2家族的促凋亡蛋白(Bax是其中最重要的蛋白之一).通过对GSK-3β和Bax两种蛋白进行荧光标记,在单分子水平上研究了十字孢碱(staurosperine,STS)诱导人肺腺癌细胞(ASTC-α-1)凋亡过程中,GSK-3β活化与Bax转位之间的关系.实验结果表明STS诱导ASTC-α-1凋亡过程中,共转染pCFP-Bax和 pYFP-GSK-3β的细胞发生凋亡的时间明显早于单转染 pYFP-Bax的细胞,并且Bax发牛转位的时间也明显提前.这些结果显示在STS这种凋亡因素刺激下,GSK-3β可以通过促进Bax转位从而加速细胞凋亡.这是单分子荧光成像技术研究活细胞内分子事件的又一个重要应用.  相似文献   

6.
目的克隆表达和鉴定问号钩端螺旋体(L.interrogans)黄疸出血群赖型赖株中一个新的外膜蛋白(Omp)A家族基因LA0301,研究LA0301编码蛋白的抗原性和在15个钩端螺旋体(简称钩体)血清群代表株中的保守性,探讨其在疫苗研究中的意义。方法生物信息学软件分析预测LA0301的特征。构建原核表达重组体pQE31-LA0301,经IPTG诱导后用十二烷基磺酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)及蛋白质印迹法(Western blot)鉴定表达情况。用表达的重组蛋白免疫BALB/c小鼠,Western印迹检测其免疫反应性和在不同血清型钩体中的保守性。酶联免疫吸附试验(ELISA)和Western印迹检测兔抗钩体全菌血清中的LA0301编码蛋白的抗体。结果生物信息学预测结果显示,LA0301具有OmpA家族的结构域。克隆表达了重组质粒pQE31-LA0301,重组蛋白能刺激BALB/c小鼠产生特异性抗体,效价为1:32000。在兔抗钩体全菌血清中检测到特异的LA0301蛋白抗体,并在15个血清群的代表株钩体中均可检测到LA0301蛋白。结论LA0301蛋白是问号钩体中一个新的OmpA家族蛋白,具有良好的抗原性和保守性,并且能在钩体感染的过程中刺激机体产生相应的抗体。为进一步研究钩体新型疫苗候选基因奠定了基础。  相似文献   

7.
黄丽  方维焕  俞盈  宋厚辉 《生物工程学报》2012,28(11):1378-1387
病原菌膜蛋白的原位标记和定位追踪是一项非常繁琐的工作。为了建立一种可以用于快速鉴定膜蛋白、且分辨率达到纳米级别的膜蛋白荧光定位技术,将结核分枝杆菌外膜蛋白OmpA与具有光敏活性的蛋白mEos2m在无致病性的耻垢分枝杆菌中进行融合表达。重组菌固定在载玻片上后,利用405 nm激光激活mEos2m。利用普通荧光体视显微镜、正置荧光显微镜和超分辨率光激活定位显微镜观察OmpA-mEos2m,分析融合蛋白在细菌内的分布情况,并捕获光激活蛋白在细胞膜上释放的光子信号。通过超分辨率光激活定位显微镜,发现OmpA-mEos2m融合蛋白在细胞膜上呈"带"状环绕分布,这是观察到膜蛋白在细胞膜上定位的最直接证据。mEos2m与OmpA融合表达后,并不改变OmpA的膜蛋白属性和定位特征。因此可以将mEos2m用于其他非多聚体膜蛋白的融合和定位研究。可以应用非致病性的耻垢分枝杆菌作为模型,采用高分辨率活菌成像技术,研究致病性的结核分枝杆菌蛋白结构、定位和功能。这是目前为止国内采用光激活定位显微成像技术研究膜蛋白的首次报道。  相似文献   

8.
利用非病毒载体转运目的基因时,转位肽和转位蛋白能够促进外源DNA通过内吞体膜屏障,实现高效的基因转移。转位结构域存在于一些病毒蛋白、毒素蛋白和合成肤中。  相似文献   

9.
崔阳  董涛 《微生物学通报》2021,48(12):4564-4580
[背景] 需钠弧菌(Vibrio natriegens)是一种快速生长的革兰氏阴性菌,作为一种新兴工具在生物技术领域有重要的应用潜力。此前的研究主要集中在开发利用V. natriegens成为体内外重组蛋白生产的工具。然而,许多支持细菌进行快速生长和蛋白质生产的生理活动大部分仍未确定。外膜囊泡(Outer Membrane Vesicle,OMV)是由革兰氏阴性细菌普遍产生的一种球形小泡,其不仅具有重要的功能,而且还可以作为一种应用于疫苗治疗的高效运载工具。[目的] 表征指数生长期OMV的蛋白质组并利用OMV进行异源蛋白的递送。[方法] 使用透射电镜、动态光散射和质谱学的方法,观察OMV的形态及粒径分布并鉴定蛋白组成。以超折叠绿色荧光蛋白(Superfolded Green Fluorescent Protein,sfGFP)作为货物蛋白来确定OMV蛋白载体。[结果] 从细菌培养的指数期中期和末期分别提取的OMV中鉴定到了288个和317个蛋白。这些蛋白分属不同的功能组,包括ABC转运蛋白、鞭毛、双组分系统。相比之下,同时鉴定了全细胞样品,其在指数期中期和末期分别含有1 480个和1 565个蛋白。我们筛选OMV的蛋白作为候选载体发现了一种属于OmpA家族的蛋白(命名为OmpA24),其能够将sfGFP以融合货物蛋白的形式运载到OMV中。[结论] 首次证实V. natriegens能够在指数生长期产生OMV,并展示了第一个不同生长时期OMV和全细胞的蛋白质组鉴定结果。OmpA24是将外源融合货物蛋白呈递到OMV中的有前景的载体。本研究有助于促进V. natriegens在蛋白表达和OMV介导的分泌中的应用。  相似文献   

10.
细菌外膜蛋白与细菌对异丙醇耐受关系密切,但迄今为止尚未见相关研究.本文首先采用基于双向电泳(two dimensional electrophoresis,2-DE)的蛋白质组学技术,研究E.coli K-12 BW25113在有无异丙醇条件下外膜蛋白表达的差异.结果发现,外膜蛋白LamB、FadL和OmpC以及OmpT、Tsx、OmpA和OmpF在异丙醇应激条件下表达量分别上调和下调.然后通过基因敲除、补救和高表达等功能基因组学的方法,探讨这些功能外膜蛋白在异丙醇应激耐受中所起的作用,发现LamB、OmpA和OmpC在E.coli K-12 BW25113对异丙醇耐受过程中起到更重要的作用.最后,对EnvZ/OmpR双组分信号转导系统在对异丙醇耐受中的作用进行了研究,证实EnvZ/OmpR双组分信号转导系统确实参与细菌对异丙醇的耐受.因此,外膜蛋白的改变和EnvZ/OmpR双组分信号转导系统的调节是革兰氏阴性细菌对异丙醇耐受的一种重要机制。  相似文献   

11.
12.
L Chen  D Rhoads    P C Tai 《Journal of bacteriology》1985,161(3):973-980
We previously described a system for translocating the periplasmic enzyme alkaline phosphatase and the outer membrane protein OmpA into inverted membrane vesicles of Escherichia coli. We have now optimized and substantially improved the translocation system by including polyamines and by reducing the amount of membrane used. Under these conditions, efficient translocation was seen even posttranslationally, i.e., when vesicles were not added until after protein synthesis was stopped. This was the case not only with the OmpA protein, which is synthesized by free polysomes and hence is presumably exported posttranslationally in the cell, but also with alkaline phosphatase, which is synthesized only by membrane-bound polysomes and has been shown to be secreted cotranslationally in the cells. Prolonged incubation rendered the precursors inactive for subsequent translocation. Posttranslational translocation was impaired, like cotranslational translocation, by inhibitors of the proton motive force and by treatment of the vesicles with protease. Since it appears that E. coli can translocate the same proteins either cotranslationally or posttranslationally, the cotranslational mode may perhaps be more efficient, but not obligatory, for the secretion of bacterial proteins.  相似文献   

13.
Y B Yang  J Lian    P C Tai 《Journal of bacteriology》1997,179(23):7386-7393
SecY, a component of the protein translocation system in Escherichia coli, was depleted at a nonpermissive temperature in a strain which had a temperature-sensitive polar effect on the expression of its secY. Membrane vesicles prepared from these cells, when grown at the nonpermissive temperature, contained about 5% SecY and similarly low levels of SecG. As expected, translocation of alkaline phosphatase precursors across these SecY-deficient membranes was severely impaired and appeared to be directly related to the decrease of SecY amounts. However, despite such a dramatic reduction in SecY and SecG levels, these membranes exhibited 50 to 70% of the wild-type translocation activity, including the processing of the signal peptide, of OmpA precursor (proOmpA). This translocation activity in SecY-deficient membranes was still SecA and ATP dependent and was not unique to proOmpA, as lipoprotein and lambda receptor protein precursors were also transported efficiently. Membranes that were reconstituted from these SecY-depleted membranes contained undetectable amounts of SecY yet were also shown to possess substantial translocation activity for proOmpA. These results indicate that the requirement of SecY for translocation is not obligatory for all secretory proteins and may depend on the nature of precursors. Consequently, it is unlikely that SecY is the essential core channel through which all precursors traverse across membranes; rather, SecY probably contributes to efficiency and specificity.  相似文献   

14.
The translocation of secretory proteins derived from a Gram-positive (Staphylococcus hyicus prolipase) or a Gram-negative (Escherichia coli pre-OmpA protein) bacterium across the cytoplasmic membrane was studied in E. coli and Bacillus subtilis. in both microorganisms, the prolipase was found to be secreted across the plasma membrane when either the pre-prolipase signal peptide (38 amino acids in length) or the pre-OmpA signal peptide (21 amino acids in length) was used. Expression of the gene encoding the authentic pre-OmpA protein in B. subtilis resulted in the translocation of mature OmpA protein across the plasma membrane. Processing of the OmpA precursor in B. subtilis required the electrochemical potential and was sensitive to sodium azide, suggesting that the B. subtilis SecA homologue was involved in the translocation process. The mature OmpA protein, which was most likely present in an aggregated state, was fully accessible to proteases in protoplasted cells. Therefore, our results clearly demonstrate that an outer membrane protein can be secreted by B. subtilis, supporting the notion that the basic mechanism of protein translocation is highly conserved in Gram-positive and Gram-negative bacteria.  相似文献   

15.
Synthesis of OmpA protein of Escherichia coli K12 in Bacillus subtilis   总被引:5,自引:0,他引:5  
We have inserted a C-terminally truncated gene of the major outer membrane protein OmpA of Escherichia coli downstream from the promoter and signal sequence of the secretory alpha-amylase of Bacillus amyloliquefaciens in a secretion vector of Bacillus subtilis. B. subtilis transformed with the hybrid plasmid synthesized a protein that was immunologically identified as OmpA. All the protein was present in the particulate fraction. The size of the protein compared to the peptide synthesized in vitro from the same template indicated that the alpha-amylase derived signal peptide was not removed; this was verified by N-terminal amino acid sequence determination. The lack of cleavage suggests that there was little or no translocation of OmpA protein across the cytoplasmic membrane. This is an unexpected difference compared with periplasmic proteins, which were both secreted and processed when fused to the same signal peptide. A requirement of a specific component for the export of outer membrane proteins is suggested.  相似文献   

16.
We have shown previously that Escherichia coli can translocate the same protein either co- or posttranslationally and that ATP hydrolysis is essential for the posttranslational translocation of the precursors of alkaline phosphatase and OmpA protein into inverted E. coli membrane vesicles. ATP-dependent protein translocation has now been further characterized. In the absence of exogenous Mg2+, dATP, formycin A-5'-triphosphate, ATP-alpha-S, and N1-oxide-ATP could replace ATP, but many other nucleotides were not only ineffective but inhibited ATP-dependent translocation. The inhibitors included nonhydrolyzable ATP analogs, ATP-gamma-S, 8-azido-ATP, AMP, ADP, cyclic AMP, PPi, and tripolyphosphate. On the other hand, adenosine, adenosine 5'-tetraphosphate, and N1,N6-etheno-ATP neither supported nor inhibited translocation. Moreover, photoaffinity labeling of azido-adenine nucleotides rendered membranes inactive for subsequent ATP-dependent protein translocation. These results suggest that protein translocation involves at least an ATP-binding site in the membrane and hydrolysis of ATP and that both the adenosine and phosphate moieties of ATP play a role.  相似文献   

17.
The proton motive force (delta mu H+) plays an important role, although it is not absolutely essential, in the in vitro translocation of secretory proteins, such as OmpA, across the cytoplasmic membrane of Escherichia coli (Yamada, H., Tokuda, H., and Mizushima, S. (1989) J. Biol. Chem. 264, 1723-1728). The transient accumulation in membrane vesicles of a possible translocation intermediate of OmpA was observed in the absence of delta mu H+. The intermediate was detected on a polyacrylamide gel as a proteinase K-resistant band corresponding to a molecular weight of 26,000. The intermediate did not possess the signal peptide. The appearance of this band was inhibited in the absence of ATP or the presence of adenosine 5'-(beta,gamma-imino)triphosphate (AMP-PNP) and enhanced upon the addition of SecA. Upon the addition of NADH that energizes the membrane, the intermediate was converted to the translocated form of OmpA, even in the presence of AMP-PNP. These results suggest different requirements of ATP and delta mu H+ for the early and late stages of the translocation reaction. The SecA requirement for the early stage of the translocation has also been suggested. In addition to this band, two other bands were observed at higher positions on the gel, when the translocation reaction was performed in the absence of delta mu H+. Although these two bands also represented the mature form of OmpA, which was partly protected from the proteinase K treatment by the membrane vesicles, the accumulation was not transient. These bands did not appear when the translocation reaction was performed in the presence of dithiothreitol. Together with other evidence, the above observations suggest that OmpA, which has an intramolecular disulfide bridge, cannot undergo the translocation unless delta mu H+ is imposed.  相似文献   

18.
Chaperone proteins bind to newly synthesized polypeptides and assist in various assembly reactions. The Escherichia coli chaperone protein SecB binds precursors of exported proteins and assists in export. In vitro, SecB can bind to many unfolded proteins. In this report, we demonstrate that SecB binding in vivo is highly selective; the major polypeptides that are bound by SecB are nascent precursors of the exported proteins maltose-binding protein (MBP), LamB, OmpF, and OmpA. These results support the hypothesis that the primary physiological function of SecB is to stimulate protein export. By interacting with nascent polypeptides, SecB probably stimulates their cotranslational association with the membrane-bound protein translocation apparatus.  相似文献   

19.
Processing of preproteins by liposomes bearing leader peptidase   总被引:2,自引:0,他引:2  
Y Ohno-Iwashita  P Wolfe  K Ito  W Wickner 《Biochemistry》1984,23(25):6178-6184
Procoat, the precursor form of M13 coat protein, assembles into sealed liposomes bearing only internally oriented leader peptidase and is processed to yield transmembrane coat protein [Ohno-Iwashita, Y., & Wickner, W. (1983) J. Biol. Chem. 258, 1895-1900]. The precursors of maltose-binding protein and of outer membrane protein A (OmpA) are also processed by these liposomes, showing that these preproteins can at least partially insert across a lipid bilayer. The ability to insert into a bilayer may be a general property of preproteins. The cleavage products, mature OmpA and maltose-binding protein, are not sequestered within the liposomes, suggesting that an additional factor(s) is (are) required for complete translocation. Liposomes were also prepared with leader peptidase in a more physiological, membrane-spanning orientation. These liposomes were also active in the cleavage of externally added procoat, pro-OmpA, and pre maltose-binding protein, though the mature OmpA and maltose-binding protein were still not sequestered within the liposomes. Pretreatment of these liposomes with trypsin cleaved near the amino terminus of the leader peptidase, inactivating the enzyme. The function of this amino-terminal domain, on the opposite side of the membrane from the catalytic domain, is unknown.  相似文献   

20.
The ompA gene of Escherichia coli codes for a major protein of the outer membrane. When this gene was moved between various unrelated strains (E. coli K-12 and two clinical isolates of E. coli) by transduction, the gene was expressed very poorly. Recombinants carrying “foreign” genes produced no OmpA protein which could be detected on polyacrylamide gels and became resistant to bacteriophage K3, which uses this protein as receptor. The recombinants were sensitive to host-range mutants of K3, indicating a very low level of OmpA protein was produced. When an E. coli K-12 recombinant carrying an unexpressed foreign ompA allele was subjected to two cycles of selection for an OmpA+ phenotype, a mutant strain was obtained which was sensitive to K3 and which expressed nearly normal levels of OmpA protein in the outer membrane. This strain carried mutations in the foreign ompA gene, as indicated both by genetic mapping and the alteration of a peptide in the mutant OmpA protein. The ability of the OmpA protein to bind to lipopolysaccharide (LPS) showed similar strain specificity, and the mutant OmpA protein which was expressed in an unrelated host showed enhanced ability to bind LPS from its new host. Thus, cell surface expression of the ompA gene appears to depend upon the ability of the gene product to bind LPS, suggesting that an interaction between the protein and LPS plays an essential role in biosynthesis of this outer membrane protein.  相似文献   

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