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1.
利用空斑技术,从既能形成多角体又含TK酶基因的苜蓿丫纹夜蛾重组核型多角体病毒AcMNPV-TK中,纯化了一株形成大立方形多角体的病毒突变株AcMNPV-TKmt513。用EcoRI、PstⅠ、BglⅡ及KpnⅠ等限制性内切酶对它做了酶切分析,并克隆了多角体蛋白全基因及其侧翼部分的片段。对所克隆的部分全序列测定结果,发现在多角体蛋白基因读码框内只出现了一个碱基的突变,导致了第25位的氨基酸密码子由GGT变为GAT,该位氨基酸由甘氨酸(Gly)变为天冬氨酸(Aspq)还利用PCR技术扩增出突变了的多角体蛋白基因部分片段,并将它克隆入转移载体质粒pEV55,与不形成多角体的重组病毒TnNPV-HBsD4DNA共转染Sf9细胞,结果产生同样的大立方形多角体病毒。  相似文献   

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中国疫苗株鸡痘病毒插入载体的构建与MDV糖蛋白B的表达   总被引:15,自引:1,他引:15  
王志亮  崔虹 《病毒学报》1996,12(1):48-54
在对中国鸡痘病毒疫苗株282E4基因组DNA进行克隆与亚克隆的基础上,进一步插入P11-LacZ标记基因,根据蓝斑选择原理筛选出3个病毒在细胞培养物上生长所不必需的片段,为了便于外源基因的插入,特将P7.5-P11-LacZ基因框转移至BLUESCRIPTSKM13-的Apal将MCS-P7.5-P11-LacZ框切下,置入一个亚克隆的非必需片段中,构建成中国鸡痘病毒插入载体pFG1175-1,以  相似文献   

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为表达、获取日本血吸早谷胱甘肽转移酶(SjGST)基因工程重组蛋白,以日本血吸虫(中国大陆株)cDNA为模板,设计、合成特定寡核苷酸引物,RT-PCR法扩增GST编码基因序列,将扩增产物连接pGEM-T克隆载体,再亚克隆到真、原核表达质粒pBK-CMV中,转染大肠杆菌XL1-blue,经IPTG诱导后用SDS-PAGE分析表达效果。结果 RT-PCR法特异性扩增出日本血吸虫GST编码区基因片段,其  相似文献   

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刘敬  龚炜 《生物学杂志》1999,16(1):9-10,35
用PCR方法扩增人丙型肝炎病毒(HCV)C抗原部分基因片段,将其克隆到一种新的表达载体PQE中构成重组质粒PQE-Core短,转化大肠杆菌M15株。含PQE-Core重组质粒的工程菌株以2YT中37℃下培养加入IPTG诱导7小时,经15%SDS-PAGE凝胶电泳分离蛋白质,证明工程菌合成了大量改造的HCV Corenhj r  相似文献   

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采用异硫氰酸胍(GuSCN)和硅藻从B95-8细胞中快速抽摸板DNA。根据EB病毒(EBV)B95-8株DNA全序列及编码EBV胸苷激酶(TK)的开放读框BXLF1的结构,设计合成一对引物,并在引物的5′一端分别引入EcoRI和PstI切点,用PCR技术扩增出一含完整的EBVTK基因的1.843KbDNA片段,NcoI酶切分析鉴定,EcoRI/PstI双酶切PCR产物和载体,使目的基因定向克隆至选  相似文献   

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从端粒酶活性呈性阳的水生细胞株人肺SCP-A-1中分离了总RNA,以此为模板,结合RT-PCR技术和长模板PCR技术,用hTERT基因特异性引物扩增到一长约2.2kb的cDNA片段。将该片纯化后克隆到通用测序本T-easy vector上得到重组质粒。用测引物SP6和T7对该片段进行部分双向测序。经序列分析和同源比较推测该片段包含了hTERT基因的第3内含子。该结果提示了RT-PCR技术和长模板P  相似文献   

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传染性法氏囊病病毒CJ-801bkf毒株VP2 cDNA基因结构的分析   总被引:2,自引:0,他引:2  
以传染性法氏囊病病毒(IBDN)中国毒株CJ-801bkf的基因组A片段dsRMA为模板,经反向转录和PCR扩增,克隆了保护性抗原VP2cDNA基因。经Sanger法测序,确定了VP2cDNA基因有1484个核苷酸,推测了VP2氨基酸的顺序,与已报导的6株IBDV毒株CuI、PBG98、52/70、002-73、STC和VariantE的VP2区做了比较,证明:克隆的CJ-801bkfVP2cDNA基因是全长的,含有正确的起始密码子ATG;CJ-801bkf与毒株Cul和pBG98同源性最高;CJ-801bkfVP2高可变区内两个亲水区的氨基酸顺序与CuI、PBG98、52/70、002-73和STC完全相同;7肽区内第三个丝氨酸残基则变异为精氨酸。这些结果提示,中国CJ-801bkf毒株应属标准血清I型IBDV弱毒株。  相似文献   

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用PCR扩增和克隆马立克氏病病毒糖蛋白D基因   总被引:2,自引:0,他引:2  
用PCR技术,从GA株马立克氏病病毒(MDV)感染的成纤维细胞(GEF)基因组DNA中扩增出MDV糖蛋白D(gD)抗原基因片段的约1300bp编码序列,将该pcR扩增的产物于EcoRI和Kpnl位点克隆到pUC18质粒载体中,在以digoxigenin(dig)标记的gDPCR产物作为探针,进行原位杂交初步筛选到阳性重组质粒克隆,再根据酶切分析筛选到含MDVgD基因的重组质粒p18MgD。将p18MgD质粒DNA用dig标记后,在Southernblot中,该探针能识别MDV基因组DNA的BamHI-A克隆中的A片段DNA。酶切位点分析表明,该gD克隆也和已发表的MDV的RBIB株gD一样,不含有EcoRⅠ、HindⅢ、PstⅠ、SmaⅠ、pvuⅡ等酶切位点。证明该重组质粒是MDVgD克隆。  相似文献   

9.
在大肠杆菌中分别表达汉滩病毒囊膜糖蛋白G1和G2   总被引:3,自引:0,他引:3  
利用PCR方法扩增了汉滩病毒76-118株囊膜糖蛋白G1和G2的编码区基因,并将PCR产物克隆了T-载体中,用限制性内切酶将G1和G2的编码区基因切下,并克隆到表达载体PBV220中构建G1和G2的表达质粒,诱导表达后在SDS_PAGE凝胶中未见表达产物带,表达的G1和G2能与部分抗G1和G2的单克隆抗体发生反应,但用Western-blot方法不能检测到表达产物。用表达的G1和G2免疫小白鼠能刺  相似文献   

10.
汉坦病毒陈株S基因编码区的克隆,序列分析及表达   总被引:1,自引:0,他引:1  
从汉坦病毒陈株感染的VeroE6细胞裂解液中提取病毒RNA,经逆转录PCR获得病毒S基因编码区约1.3kbcDNA片段,克隆该片段后进行核苷酸序列测定,并与汉坦病毒76118株进行同源性比较,结果二者核苷酸序列同源性为86%,推导的氨基酸序列同源性为97%。将该基因片段插入原核表达载体pGEX4T1,在大肠杆菌中获得高效表达。表达产物为GSTNP融合蛋白。SDSPAGE检测表达蛋白分子约72kD左右。Westernbloting和ELISA试验结果表明,表达产物可与多株抗汉坦病毒核蛋白的McAb发生反应,其抗原表位及McAb反应谱与76118株相比存在某些差异。  相似文献   

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In experiments on Black Sea skates (Raja clavata), the potential of the receptor epithelium of the ampullae of Lorenzini and spike activity of single nerve fibers connected to them were investigated during electrical and temperature stimulation. Usually the potential within the canal was between 0 and –2 mV, and the input resistance of the ampulla 250–400 k. Heating of the region of the receptor epithelium was accompanied by a negative wave of potential, an increase in input resistance, and inhibition of spike activity. With worsening of the animal's condition the transepithelial potential became positive (up to +10 mV) but the input resistance of the ampulla during stimulation with a positive current was nonlinear in some cases: a regenerative spike of positive polarity appeared in the channel. During heating, the spike response was sometimes reversed in sign. It is suggested that fluctuations of the transepithelial potential and spike responses to temperature stimulation reflect changes in the potential difference on the basal membrane of the receptor cells, which is described by a relationship of the Nernst's or Goldman's equation type.I. P. Pavlov Institute of Physiology, Academy of Sciences of the USSR, Leningrad. I. M. Sechenov, Institute of Evolutionary Physiology and Biochemistry, Academy of Sciences of the USSR, Leningrad. Pacific Institute of Oceanology, Far Eastern Scientific Center, Academy of Sciences of the USSR, Vladivostok. Translated from Neirofiziologiya, Vol. 12, No. 1, pp. 67–74, January–February, 1980.  相似文献   

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Evolution of living organisms is closely connected with evolution of structure of the system of regulations and its mechanisms. The functional ground of regulations is chemical signalization. As early as in unicellular organisms there is a set of signal mechanisms providing their life activity and orientation in space and time. Subsequent evolution of ways of chemical signalization followed the way of development of delivery pathways of chemical signal and development of mechanisms of its regulation. The mechanism of chemical regulation of the signal interaction is discussed by the example of the specialized system of transduction of signal from neuron to neuron, of effect of hormone on the epithelial cell and modulation of this effect. These mechanisms are considered as the most important ways of the fine and precise adaptation of chemical signalization underlying functioning of physiological systems and organs of the living organism  相似文献   

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