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1.
人B组轮状病毒vp7基因的克隆和序列分析   总被引:8,自引:0,他引:8  
利用逆转录-聚合酶链反应(RT-PCR)技术,扩增了人B组轮状病毒WH-2vp7基因,连接到克隆载体pUCm-T,并对其基因序列进行了分析.WH-2与ADRV的同源性达98%,与印度加尔各达分离株CAL-1达92%,而与动物B组轮状病毒同源性差别较大,如与IDIR(鼠)同源性仅为58%,与WD653(牛)B组轮状病毒同源性为63%,与ATI(牛)同源性为61%.对vp7基因的二级结构分析发现其mRNA折叠形成多达18个发卡环状结构.VP7蛋白是249个氨基酸组成,分子量为28.4kDa,含有3个潜在的N连接的糖基化位点和多个磷酰化位点,从氨基酸序列的同源性来看,WH-2与ADRV的同源性达99%,与CAL-1达95%,而IDIR仅为51%,说明了WH-2和ADRV的起源相同.此研究对了解B组轮状病毒基因的进化和变异规律具有重要意义,也将为B组轮状病毒预防性疫苗的研制提供科学的依据.  相似文献   

2.
为了进一步了解新成人腹泻轮状病毒J19株的基因和蛋白特征,利用一种改良的非依赖核酸序列的单引物扩增方法扩增J19株的11个基因,克隆到pMD18-T载体中并进行测序。在此基础上,将主要抗原蛋白VP4、VP6和VP7的蛋白序列与其它轮状病毒的相关蛋白序列进行比较分析并对VP6蛋白序列做遗传进化分析。结果获得J19株11个基因的全长基因序列。基因序列分析表明J19株的第3、6和第9基因分别长2 512bp、1 287bp和820bp,它们分别预测编码抗原蛋白VP4(823aa)、VP6(396aa)和VP7(258aa)。组成J19株的VP4、VP6和VP7蛋白序列对B组轮状病毒的CAL株、IDIR株以及ADRV株的相关蛋白序列的一致性分别是27.6%、38.5%和22.3%。对分组抗原蛋白VP6的遗传进化分析表明,J19株在进化树上的位置靠近外群蛋白分支以及A、B和C组轮状病毒分支的根部,而且它比较偏向于B组轮状病毒的分支。J19株的VP4、VP6和VP7蛋白序列与其它轮状病毒的相应蛋白序列存在显著差异。VP6蛋白序列的遗传进化分析表明J19株可能是一个新组轮状病毒的代表性毒株;同时,它也可能是一个与B组轮状病毒的起源和进化密切相关的毒株之一。关于新成人腹泻轮状病毒J19株11个基因的克隆及VP4、VP6和VP7基因的序列分析,这是第一次报道。  相似文献   

3.
猪轮状病毒JL94中国分离株衣壳蛋白基因的分析   总被引:1,自引:0,他引:1  
根据GenBank发表的猪轮状病毒衣壳蛋白vp4基因、vp6基因和vp7基因保守序列,设计合成3对引物,分别扩增猪轮状病毒中国分离株JL94株的此3段基因并进行序列分析。结果表明,JL94株vp4基因与国外分离株CRW-8株、OSU株、Gottfried株、4F株和4S株的VP4氨基酸同源性分别为97.16%、95%、71.88%、73.45%和70.88%;JL94株vp6与CRW-8株、OSU株、Gottfried株、4F株和4S株的VP6氨基酸同源性分别为96.98%、97.48%、93.20%、97.48%和93%;JL94株vp7基因与CRW-8株、OSU株、Gottfried株、4F株和4S株的VP7氨基酸同源性分别为98%、99.90%、75.40%、84.66%和80%。可见JL94株同CRW-8株、OSU株同源性更高些;vp4和vp7基因在同型间高度保守而不同型间差距较大,vp6基因在同群和非同群间差别不是很明显。同时可以判定JL94属于A群Ⅰ亚群G5P7血清型PRV。研究猪轮状病毒中国分离株JL94株衣壳蛋白基因的特征,为研制高效抗病毒疫苗奠定基础。  相似文献   

4.
用分子克隆技术从兔出血症病毒(RHDV)中国早期流行株NJ85中成功克隆出vp60基因,序列分析表明基因长度为1740nt,编码579aa。利用GenBank数据库,NJ85与WX84、TP二个RHDV中国毒株vp60基因DNA序列的同源性分别为92.7%和97.2%,氨基酸序列的同源性分别为96.1%和98.6%,与其他国家16个毒株的vp60基因DNA序列的同源性在83.7%-97.0%之间,氨基酸序列的同源性在90.5%~99.0%之间,具有高度的同源性。进一步分析vp60基因的六个分区,A、B、D、F四个区变异率较低,C、E二个区变异率较高。在遗传进化上,历年来的RHDV毒株在氨基酸水平上分析可分为三个支谱系,在核苷酸水平上趋向四个支谱系,谱系没有呈现地域或时间特征。三个中国毒株分布在二个不同的支谱系中。与RHDV同为兔病毒属的欧洲野兔综合征病毒(EBHSV)组成了另一个谱系。运用生物信息学方法分析了NJ85 VP60蛋白的分子量、等电点、疏水性和二级结构,根据同源模型预测分析了三级结构。NJ85 VP60的二级结构以B片层为主,三级结构稳定。病毒衣壳表面有32个杯状凹陷,由90个二聚体组成,二聚体由VP60单体以A/B5和C/C2两种方式构成,单体在二聚体中的构象有A、B、C三种形式。单体含有S、P两个结构域,两者通过柔性绞链连接,P结构域由VP60的C端部分形成,P分为P1和P2二个亚结构域,P2位于病毒衣壳表面,含有病毒株特异性抗原表位和红细胞结合位点。  相似文献   

5.
肖玮  钱渊  张又 《病毒学报》1999,15(4):5249
克隆并测定了引起产科新生儿腹泻暴发的P2[6]、G4型轮状病毒(BN株)VP4的VP8片段和VP7编码基因的核苷酸序列,并据此推导出其氨基酸序列。与相应标准株和地方株(包括有毒株和无毒株)比较的结果表明,所测VP8序列与相同型别(P2[6])的标准株M37(无毒株)和ST3(无毒株)、地方株N16(无毒株)和VE7156(有毒株)之间的同源性为92.8%~98.6%,胰酶作用位点各毒株间相同;位于aa49、aa50、aa52、aa53、aa78处的氨基酸在有毒株与无毒株间(包括BN株)不同,但分别保守。VP7基因与同型(G4)标准株ST3(A亚型/无毒株)和VA70(B亚型/有毒株)、意大利地方株PV5249(A亚型/有毒株)和北京地方株CR117(有毒株)、同型猪有毒株Gott之间的同源性为91.4%~97.8%,其中与A亚型的同源性为95.5%~96.3%,而与B亚型的同源性为91.4%,提示VP7为G4A亚型,位于aa38、aa78、aa145、aa238位点的氨基酸在有毒株与无毒株之间不同,但分别保守。分析了虽为P2[6]型却反常地引起新生儿腹泻暴发毒株(BN)的VP8与VP7基因的变异情况,并对轮状病毒毒力与VP4、VP7基因变异的相互关系进行了讨论,为慎重确定轮状病毒疫苗候选毒株提供理论依据。  相似文献   

6.
以猪轮状病毒JL94株核酸为模板扩增该病毒vp4全基因,对扩增产物进行测序及序列比较;根据VP4的5’端(1bp-750bp)特异片段主要决定其活性的观点,再设计一对引物扩增该主要抗原位点基因,将此主要抗原位点基因同pGEX-6P-1载体连接并转化入E.coli.BL2l(DE3)plays,经IPTG诱导表达出蛋白质;对表达的蛋白进行Westernblot分析、纯化和血清中和抗体试验。结果表明:JL94株与国外分离株CRW.8株、BEN.307株vp4全基因片段氨基酸同源性分别为96.98%和98.05%,说明JL94株与CRW.8株、BEN.307株属于同-vP4血清型;经IPTG诱导VP4主要抗原位点基因获得了高效表达,表达量占菌体蛋白的26%;Westernblot结果和所表达的融合蛋白免疫小鼠产生的中和抗体能阻断JL94在MAl04细胞上引起的细胞病变,说明所表达蛋白有良好的生物学活性。  相似文献   

7.
根据GenBank已发表的猪轮状病毒vp4基因保守序列,设计一对引物扩增猪轮状病毒地方株JL94株vp4全基因;将扩增产物与载体pMD-18T连接进行序列测定并将测序结果同国外分离株进行序列比较。用限制性内切酶BamHI和SalI将vp4基因从pMD-18T-vp4切下;同样用BamHI和SalI双酶切表达载体pGEX-6P-1;将这2个双酶切产物连接并转化,通过酶切鉴定和PCR鉴定证明完成了vp4原核表达载体的构建。测序结果表明:vp4全基因长2362bp,JL94株同国外分离株BEN307株、Gottfried株vp4全基因片段核苷酸同源性分别为93.44%和69.43%;氨基酸同源性分别为96.06%和71.88%。说明JL94株同BEN-307株属同一VP4血清型,而同Gottfried株属于不同血清型。重组原核表达载体pGEX-6P1-vp4的构建为表达VP4蛋白,研制诊断性抗原和病毒重组活载体疫苗奠定了基础。  相似文献   

8.
从3例急性成人腹泻患者粪便中,经电镜观察,成人腹泻轮状病毒—酶联免疫吸附试验(ADRV-ELISA)、普通轮状病毒—酶联免疫吸附试验(Rota-ELISA),猪抗C型(组)轮状病毒和鸡抗D型(组)轮状病毒血清分别与本病毒的免疫电镜试验以及RNA电泳等实验结果,发现了一种新轮状病毒,该病毒的形态结构与普通轮状病毒(Rotavirus)、成人腹泻论状病毒(Adult Diarrhoea Rotavirus,简称ADRV)极为相似,但抗原性与普通轮状病毒(A组),成人腹泻轮状病毒(B组),C型轮状病毒(C组),D型轮状病毒(D组)显然无关。基因分析表明,该病毒基因组由11个双链RNA片段组成,但其RNA电泳图型具有独自的特点,与目前公认的A组、B组、C组、D组论状病毒韵RNA电泳图型均不同,免疫电镜证实,该病毒能被人恢复期血清所凝集,表明该病毒可能是腹泻病人的病因。  相似文献   

9.
对4个IBDV野毒株的致病性和它们的vp2基因高变区序列同时做了比较分析。结果表明,4个IBDV毒株在致病性程度上存在较大差异。其中有一个是真正的超强毒,即GX8/99,其他几个虽然达不到真正超强毒的毒力,但也比经典的标准毒的致死性高得多。在vp2基因高变区,这4个IBDV野毒株与超强毒参考株HK46同源性很高,在DNA水平为96.8%~99.5%,在氨基酸(aa)水平为96.6%~100%o而与疫苗毒D78有很大差异,分别只有91.7%~93.6%和91.8%~93.2%。说明IBDV毒株的vp2基因高变区确实与其致病性有一定关系。特别是SD-1/97、SD-3/98、JS-30/99株之间及其与HK46在DNA和aa水平的同源性高达98.4%和98.6%以上,SD-3/99、JS-30/99株之间及其与HK46的氨基酸同源性为100%。然而,致病性特别高的GX8/99株病毒与其他3个野毒株及HK46在DNA和氨基酸水平的同源性相对较低,在DNA和aa水平的同源性只有96.8%~9712%和96.6%~97.9%。相对于国内的流行毒株和香港超强毒参考株HK46,GX8/99株在致病性和VP2高变区都已发生了一定的变异。  相似文献   

10.
利用一种改良的非依赖核酸序列的单引物扩增方法,从新成人腹泻轮状病毒J19株的核酸中扩增基因,克隆至pMD18-T中并进行测序和基因序列分析。J19株的VP2、VP3的编码基因为基因2、4,分别长2 969bp、2 204bp,它们分别编码973个氨基酸和719个氨基酸。J19株的VP2蛋白序列对B组人轮状病毒IDIR株的一致性为47.2%;J19株的VP3蛋白序列对C组人轮状病毒Cowden株一致性为25.1%。对J19株VP2的遗传进化分析表明,J19株在进化树上的位置靠近外群蛋白以及A、B和C组轮状病毒分枝的根部,并且它比较偏向于B组轮状病毒的分枝。这与VP6的遗传进化分析结果相一致。根据上述结果推测J19株可能是一个与B组轮状病毒的起源和进化密切相关的毒株之一;同时,这表明VP2在研究轮状病毒的遗传进化上具有重要价值。关于新成人腹泻轮状病毒J19株VP2、VP3的编码基因的序列分析,这是首次报道。  相似文献   

11.
应用RT—PCR技术,从兔出血症病毒中国分离株WX84中成功扩增出预期大小为1.7kb的特异性条带,将扩增产物提纯后克隆入pGEM^R—T载体,经转化、筛选及酶切鉴定后,获得了该株病毒衣壳蛋白基因的克隆,序列分析表明扩增的中国株BHD衣壳蛋白基因片段长度为1740bp,共编码580个氨基酸。该核酸序列与其它国家报道的多株BHDV序列相互间同源性高达98.2%一99.0%,其推导的氨基酸序列同源性也达98.3%--99.1%,为极度保守片段。  相似文献   

12.
对猪细小病毒(PPV)SD-68株印2基因进行的克隆和序列测定表明:SD-68株VP2基因全长1740bD,编码579个氨基酸残基组成的多肽;PPVSD-68株与Kresse株、SY-99株、NADL-2(5075)株、NADL-2(4973)株、US-1株的VP2基因比较,核苷酸的同源性在99%以上,氨基酸的同源性在96%以上。进化树分析表明SD-68株与kresse株的亲缘关系最近;在决定毒株组织嗜性的关键氨基酸位点上(378,383及436),SD-68株与kresse株的差异最小,据此推测SD-68株的组织嗜性与Kresse株相似,即SD-68株属皮炎型PPV;而比较弱毒株NADL-2、SD-68和强毒株kresse VP2的氨基酸差异后发现,215、378和383可能是决定PPV致病性强弱的关键位点。  相似文献   

13.
A genomic DNA encoding a second thioredoxin (TRX2) was isolated from the chromosomal DNA of the fission yeast Schizosaccharomyces pombe. The cloned sequence contains 1823 bp and encodes a protein of 121 amino acids. It has extra N-terminal 17 amino acid residues compared to previously identified thioredoxin (TRX1), which are positively charged and hydrophobic amino acids. The additional N-terminal region contains a plausible prepeptidase cleavage site, indicating that the TRX2 protein exists in mitochondria. The cloned TRX2 gene produced functional TRX estimated with insulin reduction assay. The upstream region of the TRX2 gene was fused into the promoterless beta-galactosidase gene of the shuttle vector YEp357R. The 782 bp sequence in the region further upstream of the TRX2 gene was found to be inhibitory in its expression. Synthesis of beta-galactosidase from the fusion plasmid pYFX135-HRL was enhanced by the addition of aluminum chloride and ferrous chloride, indicating that the TRX2 protein is involved in stress response.  相似文献   

14.
J Kurjan  I Herskowitz 《Cell》1982,30(3):933-943
We have cloned and sequenced a gene (MF alpha) coding for alpha-factor, a tridecapeptide mating factor secreted by yeast alpha cells. A plasmid carrying the MF alpha gene was identified by screening for production of alpha-factor by mat alpha 2 mutants, which fail to secrete alpha-factor because of simultaneous synthesis and degradation of the factor. The cloned segment codes for four mature alpha-factor within a putative precursor of 165 amino acids. The putative precursor begins as a signal sequence for secretion. The next segment, of approximately 60 amino acids, contains three potential glycosylation sites. The carboxy-terminal half of the precursor contains four tandem copies of mature alpha-factor, each preceded by spacer peptides of six or eight amino acids (variations of Lys-Arg-Glu-Ala-Asp-Ala-Glu-Ala), which are hypothesized to contain proteolytic processing signals.  相似文献   

15.
Acetogenium kivui is anaerobically growing thermophilic bacterium with a gram-positive type of cell wall structure. The outer surface is covered with a hexagonally packed surface (S) layer. The gene coding for the S-layer polypeptide was cloned in Escherichia coli on two overlapping fragments by using the plasmid pUC18 as the vector. It was expressed under control of a cloned Acetogenium promoter or the lacZ gene. We determined the complete sequence of the structural gene. The mature polypeptide comprises 736 amino acids and is preceded by a typical procaryotic signal sequence of 26 amino acids. It i weakly acidic, weakly hydrophilic, and contains a relatively high proportion of hydroxyamino acids, including two clusters of serine and threonine residues. An N-terminal region of about 200 residues is homologous to the N-terminal part of the middle wall protein, one of the two S-layer proteins of Bacillus brevis, and there is also an internal homology within the N-terminal region of the A. kivui polypeptide.  相似文献   

16.
Escherichia coli contains a soluble, [2Fe-2S] ferredoxin of unknown function (Knoell, H.-E., and Knappe, J. (1974) Eur. J. Biochem. 50, 245-252). Using antiserum to the purified protein to screen E. coli genomic expression libraries, we have cloned a gene (designated fdx) encoding this protein. The DNA sequence of the gene predicts a polypeptide of 110 residues after removal of the initiator methionine (polypeptide M(r) = 12,186, holoprotein M(r) = 12,358). The deduced amino acid sequence is strikingly similar to those of the ferredoxins found in animal mitochondria which function with cytochrome P450 enzymes and to the ferredoxin from Pseudomonas putida which functions with P450cam. The overall sequence identity is approximately 36% when compared with human mitochondrial and P. putida ferredoxins, and the identities include 4 cysteine residues proposed to coordinate the iron cluster. The protein was overproduced approximately 500-fold using an expression plasmid, and the holoprotein was assembled and accumulated in amounts exceeding 30% of the total cell protein. The overexpressed ferredoxin exhibits absorption, circular dichroism, and electron paramagnetic resonance spectra closely resembling those of the animal ferredoxins and P. putida ferredoxin.  相似文献   

17.
Rat apolipoprotein E mRNA. Cloning and sequencing of double-stranded cDNA   总被引:21,自引:0,他引:21  
A 900-base pair clone corresponding to rat liver apolipoprotein E (apo-E) mRNA, and containing a 3'-terminal poly(A) segment, was identified from a library of rat liver cDNA clones in the plasmid pBR322 by specific hybrid selection and translation of mRNA. A restriction endonuclease DNA fragment from this recombinant plasmid was used to clone the 5'-terminal region of the apo-E mRNA by primed synthesis of cDNA. A portion of the double-stranded cDNA corresponding to the 3'-terminal region of apo-E mRNA was subcloned into the bacteriophage M13mp7 and employed as a template for the synthesis of a radioactively labeled, cDNA hybridization probe. This cDNA probe was used in a RNA-blot hybridization assay that showed the length of the apo-E mRNA to be about 1200 nucleotides. The hybridization assay also demonstrated that apo-E mRNA is present in rat intestine, but at about a 100-fold lower level than that of the rat liver. The nucleotide sequence of rat liver apo-E mRNA was determined from the cloned, double-stranded cDNAs. The amino acid sequence of rat liver apo-E was inferred from the nucleotide sequence, which showed that the mRNA codes for a precursor protein of 311 amino acids. A comparison to the NH2-terminal amino acid sequence of rat plasma apo-E indicated that the first 18 amino acids of the primary translation product are not present in the mature protein and are probably removed during co-translational processing. The coding region was flanked by a 3'-untranslated region of 109 nucleotides, which contained a characteristic AAUAAA sequence that ended 13 nucleotides from a 3'-terminal poly(A) segment. At the 5'-terminal region of the mRNA, 23 nucleotides of an untranslated region were also determined. The inferred amino acid sequence of mature rat apo-E, which contains 293 amino acids, was compared to the amino acid sequence of human apo-E, which contains 299 amino acids. Using an alignment that permitted a maximum homology of amino acids, it was found that overall, 69% of the amino acid positions are identical in both proteins. The amino acid identities are clustered in two broad domains separated by a short region of nonhomology, an NH2-terminal domain of 173 residues where 80% are identical, and a COOH-terminal domain of 84 residues where 70% are identical. These two domains may be associated with specific functional roles in the protein.  相似文献   

18.
A polygalacturonase gene of Aspergillus awamori IFO 4033 was cloned by genomic Southern hybridization with a probe of a DNA fragment synthesized by PCR. This was done using primers constructed based on the N-terminal amino acid sequence of a polygalacturonase, protopectinase-AS, produced by the strain and the consensus internal amino acid sequence of fungal polygalacturonases. The cloned polygalacturonase gene, containing an ORF, encodes 362 amino acids, including a 52-bp intron. It contains the consensus nucleotide sequence of PacC binding sites, and its expression was appeared to be regulated by ambient pH. After the intron was excised, the cloned gene was inserted into an expression plasmid for yeast, pMA91, and introduced into Saccharomyces cerevisiae to be expressed. The expressed gene product was purified to a homogeneous preparation, and this confirmed that the polygalacturonase produced was the product of the cloned gene.  相似文献   

19.
The collagenase gene was cloned from Grimontia (Vibrio) hollisae 1706B, and its complete nucleotide sequence was determined. Nucleotide sequencing showed that the open reading frame was 2,301 bp in length and encoded an 84-kDa protein of 767 amino acid residues. The deduced amino acid sequence contains a putative signal sequence and a zinc metalloprotease consensus sequence, the HEXXH motif. G. hollisae collagenase showed 60 and 59% amino acid sequence identities to Vibrio parahaemolyticus and Vibrio alginolyticus collagenase, respectively. In contrast, this enzyme showed < 20% sequence identity with Clostridium histolyticum collagenase. When the recombinant mature collagenase, which consisted of 680 amino acids with a calculated molecular mass of 74 kDa, was produced by the Brevibacillus expression system, a major gelatinolytic protein band of ~ 60 kDa was determined by zymographic analysis. This result suggested that cloned collagenase might undergo processing after secretion. Moreover, the purified recombinant enzyme was shown to possess a specific activity of 5,314 U/mg, an ~ 4-fold greater activity than that of C. histolyticum collagenase.  相似文献   

20.
The catechol 2,3-dioxygenase (C23O) gene in naphthalene catabolic plasmid pND6-1 of Pseudomonas sp. ND6 was cloned and sequenced. The C23O gene was consisted of 924 nucleotides and encoded a polypeptide of molecular weight 36 kDa containing 307 amino acid residues. The C23O of Pseudomonas sp. ND6 exhibited 93% and 89% identities in amino acid sequence with C23Os encoded by naphthalene catabolic plasmid NAH7 from Pseudomonas putida G7 and the chromosome of Pseudomonas stutzeri AN10 respectively. The Pseudomonas sp. ND6 C23O gene was overexpressed in Escherichia coli DH 5alpha using the lac promoter of pUC18, and its gene product was purified by DEAE-Sephacel and Phenyl-Sepharose CL-4B chromatography. The enzymology experiments indicated that the specific activity and thermostability of C23O from Pseudomonas sp. ND6 were better than those of C23O from Pseudomonas putida G7.  相似文献   

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