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1.
蛇毒纤溶酶原激活剂TSV—PA在昆虫细胞中的表达   总被引:5,自引:0,他引:5  
将蛇毒TSV-PA基因插入昆虫杆状病毒供体质粒pFastBacHTa中,在粉纹夜蛾Tn-5B1-4细胞中进行表达。SDS-PAGE分析结果表明,表达产物为分子量33KD的TSV-PA蛋白。Western印迹分析证实了此结果,酶活力测定结果表明,昆明细胞表达的TSV-PA蛋白具有较高活性。  相似文献   

2.
构建含中华蜜蜂溶血肽基因的重组转移载体pBacHT-GFPTAccM,转化受体菌DH10Bac,得重组穿梭载体Bacmid-GFPTAccM, Lipofectin介导其基因组DNA转染粉纹夜蛾细胞系Tn-5B1-4。SDS-PAGE分析表明,感染重组杆状病毒Bacmid-GFPTAccM的细胞表达产物在约为34 kD处出现特异性条带,其表达量约占细胞总蛋白的3%。Western blotting和细胞表达时相动态分析证明中华蜜蜂溶血肽基因已在粉纹夜蛾细胞系Tn-5B1-4中进行了成功的表达。  相似文献   

3.
为了探讨杆状病毒诱导细胞凋亡的机制,用含AcNPV-ie-1基因的重组质粒pGAM-ie-1转染斜纹夜蛾细胞SL-1和粉纹夜蛾细胞Tn-5B1。转染后24h通过光镜观察、DAPI荧光染料染色、DNA琼脂糖凝胶电泳等发现,SL-1发生了典型的凋亡,而同样的现象并没有在Tn-5B1细胞中出现。利用放线菌酮(cycloheximide,CHX)、莫能菌素(Monensin)及蚜栖菌素(aphidicolin)处理AcNPV感染的SL-1细胞,发现细胞凋亡被莫能菌素及蚜栖菌素抑制,被放线菌酮推迟。此结果为进一步研究杆状病毒诱导昆虫细胞凋亡的机制等奠定了基础。  相似文献   

4.
将蛇毒TSV PA基因插入昆虫杆状病毒供体质粒pFastBacHTa中 ,在粉纹夜蛾Tn 5B1 4细胞中进行表达。SDS PAGE分析结果表明 ,表达产物为分子量 33kD的TSV PA蛋白 ,Western印迹分析也证实了此结果。酶活力测定结果表明 ,昆虫细胞表达的TSV PA蛋白具有较高活性  相似文献   

5.
干扰素 - γ诱生单核因子 (monokine induced by interferon- γ, MIG , CXCL9) 是一种具有趋化 T 淋巴细胞 NK 细胞的 CXC 趋化因子家族成员之一 . 通过 RT-PCR 技术从小鼠脑组织中克隆了小鼠 MIG cDNA ,利用 Bac-to-Bac 杆状病毒表达系统构建了 MIG 重组杆状病毒,并在 Tn-5B1-4 昆虫细胞内将其进行了表达,最后对表达产物进行了纯化和活性鉴定 . 结果显示:小鼠 MIG 蛋白在 Bac-to-Bac 杆状病毒表达系统中可得到高效分泌性表达;分泌到培养上清中的重组 MIG 蛋白经 S-Sepharose 纯化后得到的 MIG 蛋白纯度约为 90% ,产量为 10 mg/L;在 SDS- 聚丙烯酰胺凝胶电泳和蛋白质印迹分析中该蛋白质分子质量显示为 14.4 ku 左右;该纯化蛋白在体外具有诱导 CTLL-2 淋巴细胞钙离子内流和抑制血管内皮细胞迁移和增值的活性,在鸡胚尿囊膜实验中小鼠重组 MIG 具有抑制新血管生成的功能 . 实验表明,在杆状病毒系统中高效表达的小鼠重组 MIG 蛋白具有抑制内皮细胞迁移、增殖和血管生成活性,为今后进一步研究其血管生成抑制活性的机理和将其应用于肿瘤血管抑制实验建立了基础 .  相似文献   

6.
摘要 目的:基于肝癌细胞线粒体功能受损和天冬氨酸蛋白水解酶3(caspase-3)信号通路探讨罗哌卡因促进肝癌细胞凋亡的作用机制。方法:选用细胞株人肝癌细胞BEL-7402进行实验研究。用不同浓度罗哌卡因处理BEL-7402细胞后,采用溴化噻唑蓝四氮唑(MTT)法检测肝癌细胞的增殖情况,光镜及4,6-二苯胺-2-苯吲哚二盐酸盐(DAPI)溶液染色观察细胞形态,台盼蓝染色法测定细胞活力,流式细胞术分析BEL-7402细胞的凋亡情况,电子显微镜下观察细胞线粒体,激光共聚焦显微镜观察caspase-3在BEL-7402细胞中的细胞核迁移情况,蛋白免疫印迹试验评价罗哌卡因对细胞质凋亡相关蛋白、线粒体凋亡相关蛋白、BEL-7402细胞和线粒体凋亡相关蛋白表达的影响。结果:罗哌卡因能够抑制肝癌细胞的生长,并呈剂量依赖性和时间依赖性。罗哌卡因可诱导BEL-7402细胞发生凋亡,显著增加BEL-7402细胞的凋亡率。罗哌卡因能够损伤肝癌细胞线粒体功能。激光共聚焦显微镜观察显示caspase-3分子迁移到细胞核。罗哌卡因与caspase-3相互作用,促进caspase-3向细胞核内迁移,刺激caspase-3和聚腺苷二磷酸核糖聚合酶(PARP-1)、天冬氨酸蛋白水解酶9(caspase-9)蛋白的表达,抑制B细胞淋巴瘤-2基因(Bcl-2)的表达,促进凋亡酶激活因子(Apaf-1)的表达,促进线粒体释放细胞色素C(Cytochrome C),激活caspase-3活性。结论:罗哌卡因具有促进肝癌细胞凋亡的作用,其作用机制可能与破坏肝癌细胞线粒体功能和激活caspase-3信号通路有关。  相似文献   

7.
利用Bac to Bac系统将意大利蜜蜂蜂毒磷脂酶A2(AmPLA2)基因cDNA克隆至转移载体pFastBacHTa中,得到pBacHT-AmPLA2,再将其转化入含穿梭载体Bacmid的受体大肠杆菌DH10Bac中,通过转座作用,得到含AmPLA2基因的重组病毒rBacmid-AmPLA2的DNA。提取其基因组DNA,用脂质体介导转染粉纹夜蛾细胞Tn-5B1-4,得到重组病毒rACV-Bac-AmPLA2。用此重组病毒感染Tn-5B1-4细胞, 在细胞中表达AmPLA2。SDS-PAGE电泳结果显示,与6×His Tag融合表达的产物蛋白分子量约为18 kD左右,表达量约占细胞总蛋白的5.35%。Western blot印迹显示,融合表达产物能与意大利蜜蜂蜂毒AmPLA2抗血清发生免疫反应。生物活性测定显示,含表达产物的细胞蛋白粗提物对底物蛋黄的酶活力约为6.13 μmol·min-1·mg-1。  相似文献   

8.
H5N1禽流感病毒HA基因在昆虫细胞中的表达及生物活性鉴定   总被引:3,自引:0,他引:3  
经RT-PCR扩增了H5N1亚型禽流感病毒血凝素基因(HA)片断,限制性内切酶酶切后将其克隆到pFastBacHTA杆状病毒转座载体,经酶切鉴定及测序,筛选出阳性重组转座载体pFastBac-H5。将pFastBacH5转化含有杆状病毒穿梭载体(bacmid)的DH10Bac感受态细胞,通过蓝白斑筛选和PCR鉴定获得重组杆状病毒穿梭载体rBacmid-H5。rBacmid-H5在脂质体介导下转染sf9昆虫细胞,SDS-PAGE蛋白电泳、Western blot、血凝试验和血凝抑制试验分析表明:分子量约63Kd重组血凝素蛋白(rH5)在sf9昆虫细胞中实现了高效表达。rH5具有血凝活性,而且其血凝活性能够被H5N1禽流感病毒高免血清所抑制;rH5免疫鸡诱导产生针对H5N1禽流感病毒亚型特异的血凝抑制抗体,说明表达的重组蛋白具有与天然蛋白相似的生物活性。  相似文献   

9.
TnGV增强蛋白在AcMNPV中的表达和活性分析   总被引:3,自引:0,他引:3  
李志广  尹隽  钟江 《中国病毒学》2002,17(4):326-330
为了研究杆状病毒增强蛋白的活性基团,本文构建了分别表达三种N端部分缺失的粉纹夜蛾颗粒体病毒增强蛋白的重组杆状病毒,这三种蛋白在N端分别缺失了150,186和250个氨基酸.用重组病毒感染Tn-5B1-4细胞,成功地表达了这三种蛋白,并得到了纯化的蛋白质.通过体外降解围食膜的方法检测这些部分缺失的增强蛋白的活性,结果证实这三种蛋白均失去了增强蛋白的降解围食膜粘蛋白的活性.这一结果表明,增强蛋白的N端对其降解围食膜粘蛋白的功能是必需的.  相似文献   

10.
羊栖菜多糖通过激活Caspase途径诱导Lovo细胞凋亡   总被引:1,自引:0,他引:1  
研究了羊栖菜多糖(Sargassum Fusiforme Polysaccharides,SFPS)诱导人大肠癌lovo细胞凋亡及凋亡过程中caspase-3、caspase-8、caspase-9的活性变化。MTT法检测SFPS对lovo细胞增殖的抑制率;通过电镜、琼脂糖凝胶电泳、流式细胞术鉴定细胞凋亡;应用Western印迹法测定caspase-3酶原和caspase-9的变化;RToPCR检测caspase-3 mRNA表达;caspase-3,caspase-8、caspase-9活性检测试剂盒观察caspase-3、caspase-8、caspase-9的活性改变。结果显示,SFPS对lovo细胞增殖有显著抑制作用,经形态变化、DNA条带和流式细胞分析,可见明显的细胞凋亡特征。SFPS处理lovo细胞后,发现caspase-3酶原蛋白表达降低,caspase-3 mRNA高表达,并具有剂量和时间的依赖性。而在检测蛋白中,也发现caspase-9被激活进而形成具有活性的片段。另外,caspase的活性检测也进一步发现caspase-3、caspase-9的活性逐步增高。实验结果提示SFPS在体外诱导lovo胞凋亡,这可能是SFPS抑制肿瘤增殖的机制之一,并且是通过激活启动caspase-9,进而激活下游效应caspase-3的级联反应来实现的。  相似文献   

11.
Beta-Secretase (betaSEC) was expressed in Trichoplusia ni BTI Tn5B1-4 (Tn5B1-4) cells transformed with cDNAs encoding beta1,4-galactosyltransferase (GalT) and Gal beta1,4-GlcNAc alpha 2,6-sialyltransferase (ST). The apparent molecular weight of recombinant beta-secretase was increased from 57 to 59 k Da. A lectin blot analysis indicated that recombinant beta-secretase from Tn5B1-4 betaSEC/GalT-ST cells (Tn5B1-4 cells co-transformed with cDNAs encoding beta-secretase, glycosyltransferases, GalT, and ST) contained the glycan residues of beta1,4-linked galactose and alpha2,6-linked sialic acid. Two-dimensional electrophoresis revealed that recombinant beta-secretase from Tn5B1-4 beta SEC/GalT-ST cells had a lower isoelectric point than beta-secretase from control Tn5B1-4 betaSEC cells (Tn5B1-4 cells transformed only with beta-secretase cDNA). The enzyme activity of recombinant beta-secretase from Tn5B1-4 betaSEC/GalT-ST cells was enhanced up to 77% compared to control Tn5B1-4 betaSEC cells. The concentrations at half-maximum inhibition (IC(50)) values estimated from inhibition analyses using purified beta-secretases from Tn5B1-4/betaSEC and Tn5B1-4/betaSEC/GalT-ST cells were 32 and 290 nM, respectively.  相似文献   

12.
An inhibitor of the apoptosis protein (IAP) family gene from Trichoplusia ni, Tn-IAP1v, a variant of lepidopteran Tn-IAP1, was cloned by RT-PCR. There are six single nucleotide polymorphisms between the two Tn-IAP1 variants, resulting in three predicted single amino acid polymorphisms. With the GST fusion expression system, soluble recombinant Tn-IAP1v was highly expressed in Escherichia coli and then purified by affinity chromatography. Caspase inhibition assays indicated that recombinant Tn-IAP1v could specifically inhibit human caspase-9 in vitro instead of caspase-3, -7, and -8, which was further confirmed by the observation that recombinant Tn-IAP1v can directly bind caspase-9 in the protein pull-down assay. These results suggested that Tn-IAP1v might serve as an initiator caspase inhibitor in vivo in the conserved mitochondria apoptotic pathway.  相似文献   

13.
We describe the expression and in vitro activity of recombinant tumstatin from stably transformed Trichoplusia ni BTI Tn 5B1-4 cells. Recombinant tumstatin was secreted into a culture medium with a molecular weight of 29 kDa. Recombinant tumstatin was also purified to homogeneity using a simple one-step Ni2+ affinity fractionation. Purified recombinant tumstatin inhibited endothelial cell proliferation in a dose-dependent manner. The concentration at half-maximum inhibition (ED50) for recombinant tumstatin expressed in stably transformed Tn 5B1-4 cells was approximately 0.76 microg/ml. A maximum production level of 4.0 mg/l recombinant tumstatin was obtained in a T-flask culture of Tn 5B1-4 cells, 6 days after cultivation. We also investigated the individual effects of both dimethyl sulfoxide (DMSO) and sodium butyrate on recombinant tumstatin production in stably transformed Tn 5B1-4 cells. Supplementing cultures with DMSO and sodium butyrate separately increased recombinant tumstatin production in stably transformed Tn 5B1-4 cells by 117 and 32%, respectively.  相似文献   

14.
It is well known that Tn5B1-4 (commercially known as the High Five) cell line is highly susceptible to baculovirus and provides superior production of recombinant proteins when compared to other insect cell lines. But the characteristics of the cell line do not always remain stable and may change upon continuous passage. Recently an alphanodavirus, named Tn5 Cell Line Virus (or TNCL Virus), was identified in High Five cells in particular. Therefore, we established a new cell line, QB-Tn9-4s, from Trichoplusia ni, which was determined to be free of TNCL virus by RT-PCR analysis. In this paper, we describe the development of a novel cell clone, QB-CL-B, from a low passage QB-Tn9-4s cell line and report its susceptibility to AcMNPV, and the level of recombinant protein production. This cell clone was similar to its parental cells QB-Tn9-4s and Tn5B1-4 cells in morphology and growth rate; although it also showed approximately the same responses to AcMNPV infection and production of occlusion bodies, there were higher levels of recombinant protein production in comparison to QB-Tn9-4s (parental cells) and High5 cells.  相似文献   

15.
Summary The baculovirus P35 protein is a caspase inhibitor that prevents the induction of apoptosis during infection of Sf21 cells byAutographa californica multicapsid nucleopolyhedrovirus (AcMNPV). P35 inhibits the induction of apoptosis in a broad range of cells and circumstances. In this study, we examined the effects of constitutive cellular P35 expression on the response of cells to stressful culture conditions and on protein production in AcMNPV infected cells. Sf9 cell lines expressing AcMNPV P35 or an epitope-tagged P35 protein were generated using a double selection technique, involving selection in the antibiotic G418, followed by a second round of selection by exposure to actinomycin D, a potent inducer of apoptosis in Sf9 cells. Clonal cell lines were generated and examined for (1) resistance to actinomycin D induced apoptosis, (2) resistance to nutrient deprivation, and (3) baculovirus expression of intracellular and secreted proteins. When compared with Sf9 cells, two P35-expressing cell lines (Sf9P35AcV5-1 and Sf9P35AcV5-3) showed increased resistance to actinomycin D-induced apoptosis and a profound resistance to nutrient deprivation. When these cell lines were infected with a recombinant baculovirus expressing a secreted glycoprotein (secreted alkaline phosphatase), expression of the glycoprotein from these cells exceeded that from the parental Sf9 cells and was comparable to expression levels obtained from Tn5B1-4 cells, the best available cell line for high-level expression. Increased levels of protein secretion in Sf9P35AcV5-1 and Sf9P35AcV5-3 cells appear to result from a prolonged infection cycle and accumulation of the secreted glycoprotein.  相似文献   

16.
Abstract  The characteristics of a cultured cell line do not always remain stable and may change upon continuous passage. Most continuous cell lines, even after cloning, possess several genotypes that are constantly changing. There are numerous selective and adaptive culture processes, in addition to genetic instability, that may improve phenotypic change in cell growth, virus susceptibility, gene expression, and production of virus. Similar detrimental effects of long term passaging of insect cells have also been reported for continuous cell lines, for example, Tn5B1–4 cells, which are the most widely used for the baculovirus expression vector system (BEVS), provide superior production of recombinant proteins, however, this high productivity may be more evident in low passage cells. In this paper, we describe the isolation of a cell clone, Tn5B-40, from low passage Tn5B1–4 cells. The growth characteristics, productions of virus, and high level of recombinant protein productions were determined. The results showed the susceptibility of both clone and Tn5B1–4 cells to wild-type AcNPV was approximately the same rate with over 95% of infection; when the cloned cells were infected with recombinant baculoviruses expressing ß -galactosidase and secreted alkaline phosphatase (SEAP), expression of the recombinant proteins from the cloned cells exceeded that from the parental Tn5B1–4 cells.  相似文献   

17.
The recombinant plasmids harboring a heterologous gene coding mouse endostatin were transfected and expressed stably in Trichoplusia ni BTI Tn 5B1-4 (Tn 5B1-4) cells. Recombinant endostatin expressed in the stably transformed Tn 5B1-4 cells was secreted into the medium. Recombinant endostatin was also purified to homogeneity using a simple one-step Ni2+ affinity fractionation method. Purified recombinant endostatin inhibited endothelial cell proliferation in a dose-dependent manner. The concentration at half-maximum inhibition (ED50) for recombinant endostatin was approximately 0.35 g ml–1. In a T-flask, the stably transformed Tn 5B1-4 cells produced 14.3 mg recombinant endostatin l–1 at 6 days of cultivation.  相似文献   

18.
将含有鸡传染性支气管炎病毒 S1 基因c D N A 的重组转移质粒p S X I V V I+ X3 S1 . Holte 和p S X I V V I+ X3/4 S1 . Holte 分别与粉纹夜蛾核型多角体病毒 Tn N P V S V I- G D N A( O C C- ,gal+ ) 共转染草地夜蛾( Sf9) 细胞,经空斑纯化得到重组病毒 Tn N P V( X3) S1 . Holte O C C+ 和 Tn N P V( X3/4) S1 . Holte O C C+ 。将重组毒株分别感染 Tn5 B1 细胞,并进行 S D S P A G E 与 Westernblot 检测。结果表明, Tn N P V( X3/4) S1 . Holte O C C+ 在感染的细胞中高效表达了 S1 蛋白, S D S P A G E 凝胶薄层色谱分析结果显示,感染病毒后72 h S1 蛋白的表达量占细胞内总蛋白量的35 .8 % ,而 Tn N P V( X3) S1 . Holte O C C+ 感染的细胞内检测不出 S1 蛋白。经分析认为这一差异主要来自 S1 基因翻译起始位点及其附近的周围环境。  相似文献   

19.
Genetic studies of the nematode Caenorhabditis elegans (C. elegans) have identified several important components of the cell death pathway, most notably CED-3, CED-4, and CED-9. CED-4 directly interacts with the Bcl-2 homologue CED-9 (or the mammalian Bcl-2 family member Bcl-xL) and the caspase CED-3 (or the mammalian caspases ICE and FLICE). This trimolecular complex of CED-4, CED-3, and CED-9 is functional in that CED-9 inhibits CED-4 from activating CED-3 and thereby inhibits apoptosis in heterologous systems. The E1B 19,000-molecular weight protein (E1B 19K) is a potent apoptosis inhibitor and the adenovirus homologue of Bcl-2-related apoptosis inhibitors. Since E1B 19K and Bcl-xL have functional similarity, we determined if E1B 19K interacts with CED-4 and regulates CED-4-dependent caspase activation. Binding analysis indicated that E1B 19K interacts with CED-4 in a Saccharomyces cerevisiae two-hybrid assay, in vitro, and in mammalian cell lysates. The subcellular localization pattern of CED-4 was dramatically changed by E1B 19K, supporting the theory of a functional interaction between CED-4 and E1B 19K. Whereas expression of CED-4 alone could not induce cell death, coexpression of CED-4 and FLICE augmented cell death induction by FLICE, which was blocked by expression of E1B 19K. Even though E1B 19K did not prevent FLICE-induced apoptosis, it did inhibit CED-4-dependent, FLICE-mediated apoptosis, which suggested that CED-4 was required for E1B 19K to block FLICE activation. Thus, E1B 19K functions through interacting with CED-4, and presumably a mammalian homologue of CED-4, to inhibit caspase activation and apoptosis.  相似文献   

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