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1.
以3株国内分离的亚洲1型口蹄疫病毒(分别命名为F1、F2、F3)为研究目标,根据GenBank中注册的FMDV VP1基因的序列设计1对引物,采用RT-PCR方法成功地扩增出含有VP1全基因的片段,并测定了3个毒株VP1基因的序列。结果表明,3株亚洲1型FMDV毒株VP1基因长度均为633bp,编码211个氨基酸。3株毒株彼此之间的核苷酸序列同源性在82.8%~99.1%之间,雅导氨基酸序列同源性在89.1%~99.1%之间。从系统发生树看,F1株与我国香港2005年牛毒株序列同源性99.5%,属同一遗传谱系,F2株、F3株与2005年引起河北省万全县、北京市延庆县、甘肃静宁县疫情的毒株分属同一个基因群。  相似文献   

2.
为揭示近年来鸭甲肝病毒3型(DHAV-3)中国分离株VP1基因的遗传变异规律,本研究对2012年从山东省分离到的13株DHAV-3的VP1基因分别进行PCR扩增、序列测序与分析。结果显示,13株DHAV-3的VP1基因均由720个核苷酸组成,共编码240个氨基酸,核苷酸序列和氨基酸序列同源性分别为94.6%~99.9%和95.0%~100%。与GenBank中公布的31株DHAV-3的VP1基因的核苷酸和氨基酸序列同源性分别为92.5%~100%和90.8%~100%。系统进化分析显示,DHAV-3可分为两个基因型,其中除疫苗毒B63之外所有中国分离株均属于GⅠ型,越南分离毒株主要属于GⅡ型S1亚型,而韩国分离株组成GⅡ型中的S2亚型,具有明显的地域特征。  相似文献   

3.
提取6株O型口蹄疫病毒(FMDV)(T1-T6)的RNA,用一对通用引物经RT-PCR方法将6株FMDVVP1基因片段扩增出来.克隆测序,核苷酸序列分析表明,T1-T6六株vp1基因的核苷酸序列同源性在95%~99.8%之间,氨基酸序列同源性在94.8%~100%之间.T1-T6六株病毒vp1基因的核苷酸序列与已经发表的O/HKN/14/82、O/TAW/81/97、O/PHI/7/96、O/HKN/1/99和O/HKN/16/96的同源性较高,核苷酸序列同源性在86.1%~95.8%之间;发现6株毒株的主要中和抗原表位140-160、200-213位的氨基酸序列完全相同,推测它们有相近的中和抗体表位和抗原性.故推断本试验中的6株FMDV株属于同一基因型,即FMDV O型中国拓朴型(Cathaytopotype).  相似文献   

4.
提取6株O型口蹄疫病毒(FMDV)(T1-T6)的RNA,用一对通用引物经RT-PCR方法将6株FMDVVP1基因片段扩增出来。克隆测序,核苷酸序列分析表明,T1-T6六株vp1基因的核苷酸序列同源性在95%~99.8%之间,氨基酸序列同源性在94.8%~100%之间。T1-T6六株病毒vp1基因的核苷酸序列与已经发表的O/HKN/14/82、O/TAW/81/97、O/PHI/7/96、O/HKN/1/99和O/HKN/16/96的同源性较高,核苷酸序列同源性在86.1%~95.8%之间;发现6株毒株的主要中和抗原表位140-160、200-213位的氨基酸序列完全相同,推测它们有相近的中和抗体表位和抗原性。故推断本试验中的6株FMDV株属于同一基因型,即FMDVO型中国拓朴型(Cathaytopotype)。  相似文献   

5.
口蹄疫病毒结构蛋白氨基酸的变化是病毒抗原性变异的分子基础,大部分抗原表位位于主要的免疫原蛋白VP1上,部分非线性抗原表位位于VP2和VP3上。本研究首次成功测定了 Asia1 型口蹄疫病毒(YNBS/58)四种结构蛋白基因( p1 区)的核苷酸序列,全长 2199 个碱基,编码 733 个氨基酸,该基因与 Ind63/72、Pka3/54、Israel、China/99、C1/Germany、A22、ZIM7/83/2 毒株的 p1 基因核苷酸序列同源性分别为 88. 4%、86. 0%、89. 3%、68.6%、67.6%、66.8%、50.3%,推导的氨基酸序列同源性分别为 94.1%、93.2%、95.1%、79.9%、77.0%、76.5%、58.1%;将YNBS/58株与 Ind63/72、Pka3/54、Israel株的 vp1、vp2、vp3、vp4 基因和编码蛋白分别进行同源性比较,发现VP1的序列变异最大,VP2、VP3、VP4次之,且VP1的氨基酸变异主要集中在 42-50 位和 137-156 位。实现了YNBS/58株结构蛋白基因在大肠杆菌中的高效表达,其表达的融合蛋白以包涵体形式存在,分子量约为88kDa,占菌体总蛋白的16%左右,并利用镍柱对目的蛋白进行了纯化,纯度达 90%以上,本实验为进一步研究 A sia1型口蹄疫病毒的分子流行病学、p1基因及其编码蛋白的生物学功能奠定了基础。  相似文献   

6.
口蹄疫病毒结构蛋白氨基酸的变化是病毒抗原性变异的分子基础,大部分抗原表位位于主要的免疫原蛋白VP1上,部分非线性抗原表位位于VP2和VP3上.本研究首次成功测定了Asia1型口蹄疫病毒(YNBS/58)四种结构蛋白基因(p1区)的核苷酸序列,全长2199个碱基,编码733个氨基酸,该基因与Ind63/72、Pka3/54、Israel、China/99、C1/Germany、A22、ZIM7/83/2毒株的p1基因核苷酸序列同源性分别为88.4%、86.0%、89.3%、68.6%、67.6%、66.8%、50.3%,推导的氨基酸序列同源性分别为94.1%、93.2%、95.1%、79.9%、77.0%、76.5%、58.1%;将YNBS/58株与Ind63/72、Pka3/54、Israel株的vp1、vp2、vp3、vp4基因和编码蛋白分别进行同源性比较,发现VP1的序列变异最大,VP2、VP3、VP4次之,且VP1的氨基酸变异主要集中在42-50位和137-156位.实现了YNBS/58株结构蛋白基因在大肠杆菌中的高效表达,其表达的融合蛋白以包涵体形式存在,分子量约为88kDa,占菌体总蛋白的16%左右,并利用镍柱对目的蛋白进行了纯化,纯度达90%以上,本实验为进一步研究A-sia1型口蹄疫病毒的分子流行病学、p1基因及其编码蛋白的生物学功能奠定了基础.  相似文献   

7.
目的运用分子生物学方法对长沙市1例手足口病(Hand foot and mouth Disease,HFMD)患者咽拭子标本进行未分型肠道病毒的鉴定及VP1基因特征分析。方法采用兼并引物RT-PCR扩增病毒VP1区片段,BLAST比对确定其型别;特异性引物扩增VP1区基因全长,测定序列进行分析。结果所得序列BLAST比对分析为Coxsackievirus A12(CVA12)型肠道病毒;病毒VP1区基因序列全长为888bp,编码296个氨基酸,同源性分析显示与国内外CVA12毒株核苷酸同源性介于81.9%~98.4%之间;氨基酸同源性在95.3%~100.0%之间。与CVA12美国标准株Texas-12核苷酸同源性为81.9%,氨基酸同源性为95.3%。系统进化表明,长沙市CVA12与国内毒株亲缘关系较近,而与日本、美国则亲缘关系较远。结论从1例手足口病轻症病例中鉴定出CVA12型肠道病毒,该病毒VP1区基因进化特征与国内CVA12毒株亲缘关系近。  相似文献   

8.
禽Ⅰ型副粘病毒f基因克隆及序列分析   总被引:7,自引:0,他引:7  
用RT-PCR一步法对云南省不同禽类(鸡、鸽子)3株禽I型副粘病毒F基因进行扩增和克隆,并对其f基因片段核苷酸序列进行分析,结果表明,云南省禽I型副粘病毒各毒株同源性为88.1%~94.9%,与疫苗株LaSota和强毒株F48E9的同源性为85.6%.所分离两株新城疫病毒在F蛋白裂解位点区(112~117aa)的氨基酸序列与强毒株在这一区域的序列完全相同,表明为强毒株.鸽I型副粘病毒F蛋白裂解位点区的氨基酸序列与PPMV ZQ98-1株在这一区域的序列完全相同,揭示为中强毒株.以1 662bp核苷酸绘制系统发育树,表明云南地方新城疫病毒属于基因Ⅶ型,鸽I型副粘病毒属于基因Ⅵ型.  相似文献   

9.
肠道病毒ECHO13中国分离株的基因特征   总被引:1,自引:0,他引:1  
为研究ECHO13病毒中国分离株的分子特征及其与世界其它分离株之间的基因关系,对1998年、2000年从中国福建省分离到2株ECHO13病毒进行基因序列对比分析.2株病毒分别命名为Fujian98-1和Fujian00-1,用逆转录-聚合酶链反应(RT-PCR)扩增出VP1蛋白编码基因全长861个核苷酸片段并进行序列测定,将2株ECHO13病毒的VP1序列与所有已发表的ECHO13病毒VP1基因全长进行同源性比较.结果显示,福建分离株之间核苷酸同源性为79.6%,氨基酸同源性为93.4%;与遗传距离最近的法国CF1089-91(AJ537604)毒株的核苷酸同源性分别为80%和88%,与代表株Del Carmen的核苷酸同源性分别为75.8%和77.9%.通过VP1基因分析,福建2株病毒均属于ECHO13病毒,与血清中和试验鉴定结果一致.下载所有已发表的ECHO13病毒VP1序列并构建进化树,发现福建2株病毒分属不同的分枝,提示这2株病毒来自不同的病毒传播链.进一步分析发现,整个ECHO13病毒可划分为3个不同的基因型:A、B和C基因型.福建Fujian98-1和Fujian00-1分别被划分在基因型B和C中,各基因型之间的核苷酸差异均大于20%.为验证该分型方法,将26株来自不同国家和时间的ECHO13病毒和2株福建分离ECHO13病毒部分VP1基因序列进行对比分析,建立进化树.结果显示,所有ECHO13病毒被分在A、B和C3个基因型中,而2株福建分离病毒仍然被分在B和C基因型中.除了B基因型1株病毒以外,所有3个基因型之间的核苷酸差异均大于15%,与VP1全长分型结果基本一致,说明部分VP1序列的基因分析也能用于对ECHO13病毒进行规律和分子流行病学的研究中.该研究首次报道了ECHO13病毒中国分离株的VP1蛋白基因全长序列,并推荐按VP1基因全长核苷酸差异≥20%作为划分基因型的标准,将已知的ECHO13病毒划分为A、B和C3个基因型.同时也可用病毒VP1基因5′端部分序列替代VP1全长序列来划分基因型.  相似文献   

10.
中国6省2005年麻疹病毒分离株分子特征分析   总被引:29,自引:1,他引:28  
研究2005年我国6省麻疹暴发、流行的野毒株基因型特征和分子流行病学,为进一步的麻疹防治策略提供科学依据.用RT-PCR方法,从2005年6省分离的48株麻疹病毒株中扩增出核蛋白(nucleoprotein, N)基因C末端676个核苷酸片段.再对扩增产物进行核苷酸序列测定和分析,并以C末端456个核苷酸片段构建基因亲缘性关系树,进行核苷酸、氨基酸同源性分析.6省分离的48株麻疹病毒均为H1基因型,其中两株为H1b亚型, 其余为H1a亚型.48株野毒株的核苷酸同源性为95.1%~100%(核苷酸差异为0~22bp),氨基酸同源性为92.7%~100%;与我国疫苗株S191的核苷酸同源性为88.7%~92.5%,氨基酸同源性为88.0%~91.2%.其中Shaanxi05-1和Yunnan05-1,Anhui05-2和Ningxia05-9的N末端456个核苷酸的同源性为100%;Hebei05-19、Anhui00-2和Liaoning02-2,Hebei05-1和Chongqing04-3的核苷酸的同源性为100%.引起2005年我国6省麻疹暴发流行的野毒株为H1基因型,并以H1a为绝对优势亚型.各省之间存在相同毒株引起的传播链,不同年份之间存在相同麻疹野毒株的持续循环传播.同时提示,有必要进一步研究由核苷酸变异引起的氨基酸变异及中和抗原位点等生物学性状的改变,可能影响麻疹病毒的毒力和传播力.  相似文献   

11.
LINE-1编码蛋白L1-ORF1的原核表达纯化和多克隆抗体制备   总被引:1,自引:0,他引:1  
目的: 制备具有肿瘤组织特异性表达的L1-ORF1蛋白多克隆抗体并进行初步应用研究。方法:采取基因工程表达方法制备L1-ORF1蛋白,免疫家兔制备多克隆抗体,间接ELISA检测抗体效价,Western blot和细胞免疫荧光方法检测抗体特异性,免疫检测验证其识别肿瘤细胞内L1-ORF1蛋白的特异性。结果:制备的抗L1-ORF1蛋白多克隆抗体具有很高的敏感性与特异性,免疫学检测表明该抗体不仅能检测出正常细胞中瞬时表达的L1-ORF1蛋白,而且可检测出肿瘤细胞中天然表达的L1-ORF1蛋白。结论:制备的多克隆抗体具有较高的敏感性与特异性,为以后该抗体的进一步应用奠定了基础。  相似文献   

12.
13.
Overexpression of JNK binding domain inhibited glucose deprivation-induced JNK1 activation, relocalization of Daxx from the nucleus to the cytoplasm, and apoptosis signal-regulating kinase 1 (ASK1) oligomerization in human prostate adenocarcinoma DU-145 cells. However, SB203580, a p38 inhibitor, did not prevent relocalization of Daxx and oligomerization of ASK1 during glucose deprivation. Studies from in vivo labeling and immune complex kinase assay demonstrated that phosphorylation of Daxx occurred during glucose deprivation, and its phosphorylation was mediated through the ASK1-SEK1-JNK1-HIPK1 signal transduction pathway. Data from immunofluorescence staining and protein interaction assay suggest that phosphorylated Daxx may be translocated to the cytoplasm, bind to ASK1, and subsequently lead to ASK1 oligomerization. Mutation of Daxx Ser667 to Ala results in suppression of Daxx relocalization during glucose deprivation, suggesting that Ser667 residue plays an important role in the relocalization of Daxx. Unlike wild-type Daxx, a Daxx deletion mutant (amino acids 501-625) mainly localized to the cytoplasm, where it associated with ASK1, activated JNK1, and induced ASK1 oligomerization without glucose deprivation. Taken together, these results show that glucose deprivation activates the ASK1-SEK1-JNK1-HIPK1 pathway, and the activated HIPK1 is probably involved in the relocalization of Daxx from the nucleus to the cytoplasm. The relocalized Daxx may play an important role in glucose deprivation-induced ASK1 oligomerization.  相似文献   

14.
Most strains of the insecticidal bacterium Bacillus thuringiensis have a combination of different protoxins in their parasporal crystals. Some of the combinations clearly interact synergistically, like the toxins present in B. thuringiensis subsp. israelensis. In this paper we describe a novel joint activity of toxins from different strains of B. thuringiensis. In vitro bioassays in which we used pure, trypsin-activated Cry1Ac1 proteins from B. thuringiensis subsp. kurstaki, Cyt1A1 from B. thuringiensis subsp. israelensis, and Trichoplusia ni BTI-Tn5B1-4 cells revealed contrasting susceptibility characteristics. The 50% lethal concentrations (LC50s) were estimated to be 4,967 of Cry1Ac1 per ml of medium and 11.69 ng of Cyt1A1 per ml of medium. When mixtures of these toxins in different proportions were assayed, eight different LC50s were obtained. All of these LC50s were significantly higher than the expected LC50s of the mixtures. In addition, a series of bioassays were performed with late first-instar larvae of the cabbage looper and pure Cry1Ac1 and Cyt1A1 crystals, as well as two different combinations of the two toxins. The estimated mean LC50 of Cry1Ac1 was 2.46 ng/cm2 of diet, while Cyt1A1 crystals exhibited no toxicity, even at very high concentrations. The estimated mean LC50s of Cry1Ac1 crystals were 15.69 and 19.05 ng per cm2 of diet when these crystals were mixed with 100 and 1,000 ng of Cyt1A1 crystals per cm2 of diet, respectively. These results indicate that there is clear antagonism between the two toxins both in vitro and in vivo. Other joint-action analyses corroborated these results. Although this is the second report of antagonism between B. thuringiensis toxins, our evidence is the first evidence of antagonism between toxins from different subspecies of B. thuringiensis (B. thuringiensis subsp. kurstaki and B. thuringiensis subsp. israelensis) detected both in vivo and in vitro. Some possible explanations for this relationship are discussed.  相似文献   

15.
PCTAIRE1, also known as CDK16, is a cyclin-dependent kinase that is regulated by cyclin Y. It is a member of the serine-threonine family of kinases and its functions have primarily been implicated in cellular processes like vesicular transport, neuronal growth and development, myogenesis, spermatogenesis and cell proliferation. However, as extensive studies on PCTAIRE1 have not yet been conducted, the signaling pathways for this kinase involved in governing many cellular processes are yet to be elucidated in detail. Here, we report the association of PCTAIRE1 with important cellular proteins involved in major cell signaling pathways, especially cell proliferation. In particular, here we show that PCTAIRE1 interacts with AKT1, a key player of the PI3K signaling pathway that is responsible for promoting cell survival and proliferation. Our studies show that PCTAIRE1 is a substrate of AKT1 that gets stabilized by it. Further, we show that PCTAIRE1 also interacts with and is degraded by LKB1, a kinase that is known to suppress cellular proliferation and also regulate cellular energy metabolism. Moreover, our results show that PCTAIRE1 is also degraded by BRCA1, a well-known tumor suppressor. Together, our studies highlight the regulation of PCTAIRE1 by key players of the major cell signaling pathways involved in regulating cell proliferation, and therefore, provide crucial links that could be explored further to elucidate the mechanistic role of PCTAIRE1 in cell proliferation and tumorigenesis.  相似文献   

16.
Most strains of the insecticidal bacterium Bacillus thuringiensis have a combination of different protoxins in their parasporal crystals. Some of the combinations clearly interact synergistically, like the toxins present in B. thuringiensis subsp. israelensis. In this paper we describe a novel joint activity of toxins from different strains of B. thuringiensis. In vitro bioassays in which we used pure, trypsin-activated Cry1Ac1 proteins from B. thuringiensis subsp. kurstaki, Cyt1A1 from B. thuringiensis subsp. israelensis, and Trichoplusia ni BTI-Tn5B1-4 cells revealed contrasting susceptibility characteristics. The 50% lethal concentrations (LC50s) were estimated to be 4,967 of Cry1Ac1 per ml of medium and 11.69 ng of Cyt1A1 per ml of medium. When mixtures of these toxins in different proportions were assayed, eight different LC50s were obtained. All of these LC50s were significantly higher than the expected LC50s of the mixtures. In addition, a series of bioassays were performed with late first-instar larvae of the cabbage looper and pure Cry1Ac1 and Cyt1A1 crystals, as well as two different combinations of the two toxins. The estimated mean LC50 of Cry1Ac1 was 2.46 ng/cm2 of diet, while Cyt1A1 crystals exhibited no toxicity, even at very high concentrations. The estimated mean LC50s of Cry1Ac1 crystals were 15.69 and 19.05 ng per cm2 of diet when these crystals were mixed with 100 and 1,000 ng of Cyt1A1 crystals per cm2 of diet, respectively. These results indicate that there is clear antagonism between the two toxins both in vitro and in vivo. Other joint-action analyses corroborated these results. Although this is the second report of antagonism between B. thuringiensis toxins, our evidence is the first evidence of antagonism between toxins from different subspecies of B. thuringiensis (B. thuringiensis subsp. kurstaki and B. thuringiensis subsp. israelensis) detected both in vivo and in vitro. Some possible explanations for this relationship are discussed.  相似文献   

17.
18.
Dou T  Gu S  Liu J  Chen F  Zeng L  Guo L  Xie Y  Mao Y 《Molecular biology reports》2005,32(4):265-271
Ubiquitin and other ubiquitin-like proteins play important roles in post-translational modification. They are phylogenetically well-conserved in eukaryotes. Activated by other proteins, ubiquitin and ubiquitin-like proteins can covalently modify target proteins. The enzymes responsible for the activation of this modification have been known to include UBA1, SAE2, UBA3, SAE1 and ULA1. Here we report a new ubiquitin activating enzyme like cDNA, named ubiquitin activating enzyme E1-domain containing 1 (UBE1DC1), whose cDNA is 2654 base pairs in length and contains an open reading frame encoding 404 amino acids. The UBE1DC1 gene consists of 12 exons and is located at human chromosome 3q22. The result of RT-PCR showed that UBE1DC1 is expressed in most of human tissues. These two authors contributed equally to this paper. The nucleotide sequence reported in this paper has been submitted to GenBank under accession number AY253672.  相似文献   

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The MADS-box gene SOC1/TM3 (SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1/ Tomato MADS-box gene 3) is a main integrator in the Arabidopsis flowering pathway; its structure and function are highly conserved in many plant species. SOC1-like genes have been isolated in chrysanthemum, one of the most well-known ornamental plants, but it has not been well characterized thus far. We isolated and characterized ClSOC1-1 and ClSOC1-2, two putative orthologs of Arabidopsis SOC1, from the wild diploid chrysanthemum, Chrysanthemum lavandulifolium, to investigate the regulatory mechanisms of flowering time control in chrysanthemum. Expression analysis indicated that ClSOC1-1 and ClSOC1-2 were expressed in all examined organs/tissues (leaves, shoot apices, petioles, stems and roots) with different expression levels, and with high expression in the shoot apices and leaves during the early stage of floral transition. The expression levels of ClSOC1-1 and ClSOC1-2 in the shoot apices increased at different developmental stages with the highest expression levels after 7 days of short-day treatment. Overexpression of ClSOC1-1 and ClSOC1-2 in wild-type Arabidopsis resulted in early flowering, which was coupled with the upregulation of one of the flowering promoter genes LEAFY. Our results suggested that the ClSOC1-1 and ClSOC1-2 genes play an evolutionarily conserved role in promoting flowering in Chrysanthemum lavandulifolium and could serve as a vital target for the genetic manipulation of flowering time in the chrysanthemum.  相似文献   

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