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1.
本试验旨在构建猪生长激素促分泌素受体(pGHS-R)真核表达系统,并瞬时转染人源胚胎肾细胞(HEK293T)观察其表达情况。以猪基因组为模板,通过剪接重叠延伸聚合酶链式反应(SOE-PCR)克隆出pGHS-R的编码区序列,插入真核表达载体pcDNA3.1(+)中,构建重组真核表达质粒pcDNA3.1(+)/pGHS-R,酶切鉴定并测序,加myc标签,瞬时转染HEK293T细胞,用Western blotting鉴定该重组质粒是否能在真核细胞中表达相应的目的蛋白。结果显示,本试验成功扩增出pGHS-R编码序列,酶切和测序结果表明pcDNA3.1(+)-myc/pGHS-R构建正确,Western blotting方法证实转染的该质粒能在HEK293T细胞中正确表达目的蛋白。结果表明,本试验成功构建了pGHS-R真核表达载体,并正确表达蛋白,为进一步研究GHS-R的功能奠定了基础。  相似文献   

2.
试验旨在构建猪β_2肾上腺素能受体(β_2adrenergic receptor,β_2AR)基因及其突变体真核表达载体,并鉴定其在HEK293T细胞中的表达。通过猪基因组DNA克隆猪β_2AR基因,利用同源重组技术将其连接至真核表达载体pcDNA3.1(+),构建真核表达载体pcDNA3.1(+)-β_2AR,加入c-myc标签后命名为myc-pcDNA3.1(+)-β_2AR。以真核表达载体为模板构建突变体myc-pcDNA3.1(+)-β_2AR-D130N、myc-pcDNA3.1(+)-β_2AR-C285S和mycpcDNA3.1(+)-β_2AR-D130N/C285S,并将构建的真核表达载体和突变体转染HEK293T细胞,利用Western blotting技术验证其表达。结果显示,猪β_2AR基因已正确重组入pcDNA3.1(+)载体中;经测序鉴定,猪β_2AR的第130位天冬氨酸成功突变为天冬酰胺,第285位半胱氨酸成功突变为丝氨酸。Western blotting检测结果证明所构建的表达载体均可在HEK293T细胞中表达。本研究成功构建了猪β_2AR野生型的真核表达载体及2个单点突变和1个双点突变的突变体,并验证其在HEK293T细胞中正常表达,为进一步研究猪β_2AR蛋白表达及其药理学活性奠定基础。  相似文献   

3.
为了正确表达禽呼肠孤病毒(ARV)σA蛋白,试验拟构建σA基因的真核表达质粒,并将其在人胚肾细胞(HEK293T)中准确表达,参照GenBank中ARV S2基因序列(登录号为KF741763. 1)设计特异性引物,以pMD18-T-σA重组载体为模板,应用PCR的方法扩增σA基因的特异性序列,并将其克隆到p MD18-T载体中,构建重组pMD18-T-σA表达质粒,再用限制性内切酶KpnⅠ和NotⅠ同时双酶切pMD18-T-σA和真核表达质粒pEF1α-HA,将胶回收的σA基因和pEF1α-HA进行连接,构建真核表达质粒pEF1α-HA-σA。真核表达质粒经菌落PCR、双酶切和测序验证正确后,将其转染HEK293T细胞,于24 h后收取蛋白质,通过Western-blot验证目的蛋白。结果表明:本试验成功克隆了ARVσA基因,构建了其真核表达质粒pEF1α-HA-σA,并在HEK293T细胞中表达。说明该蛋白可以在HEK293T细胞中准确表达。  相似文献   

4.
为研制新型猪囊尾蚴疫苗,将猪带绦虫六钩蚴阶段编码 TSOL18 的基因定向克隆于真核表达质粒 pVAX1, 经筛选、鉴定及 DNA序列分析正确后,将重组质粒 pVAX1/TSOL18 转染 BHK-21 细胞,通过 SDS-PAGE、Western blotting、免疫荧光试验等方法检测细胞中表达的 TSOL18 抗原。结果表明,重组真核质粒 pVAX1/TSOL18 可在 BHK-21 细胞中表达TSOL18 目的蛋白,表达蛋白能被猪囊尾蚴病阳性血清所识别。动物免疫试验表明,真核表达载体能有效地诱导机体产生细胞免疫和体液免疫应答,这为猪囊尾蚴病基因疫苗的研究奠定了良好基础。  相似文献   

5.
为获得293T细胞表达的ALV-J gp85蛋白,研究通过PCR扩增ALV-J gp85基因,利用基因克隆技术克隆pMD-18T-gp85并测序,进而构建表达质粒p EGFP-N1-gp85。利用293T细胞对重组表达质粒进行表达,通过荧光显微镜和Western blot检测重组表达质粒(pEGFP-N1-gp85)的表达情况。结果显示,pEGFP-N1-gp85重组表达质粒在293T细胞中均匀分布,说明pEGFP-N1-gp85重组表达质粒在293T细胞中表达;pEGFP-N1-gp85重组表达质粒在293T细胞中表达的蛋白质分子质量约为60 ku。结果表明,成功构建了真核表达质粒pEGFP-N1-gp85,并在293T细胞中获得了表达,为研制ALV-J-gp85 DNA核酸疫苗提供了科学支撑。  相似文献   

6.
试验旨在构建胆汁酸膜受体TGR5真核表达载体,转染293T细胞并在其中表达。用RT-PCR技术从胎盘组织中得到TGR5基因,克隆至真核表达载体pCMV-EGFP中。双酶切和测序鉴定正确后,将pCMV-EGFP-TGR5瞬时转染293T细胞,并采用实时荧光定量PCR和Western blotting技术检测TGR5的表达。结果显示,本试验构建了TGR5真核表达载体pCMV-EGFP-TGR5;转染293T细胞后,荧光显微镜观察到绿色荧光表达;实时荧光定量PCR检测TGR5表达量显著增加;Western blotting结果显示有目的蛋白表达。结果表明,真核表达载体pCMV-EGFP-TGR5构建成功,转染293T细胞后在基因、蛋白水平上均表达TGR5受体。  相似文献   

7.
采用RT-PCR方法扩增了JL/07/SW毒株GP5蛋白和猪IL-18基因。将该基因克隆入真核表达载体pEG-FP-N1,获得重组质粒pEGFP-GP5和pEGFP-IL18-GP5。将重组质粒转染Marc-145细胞,通过Western blotting和green fluorescent检测产物的表达情况。结果显示,所构建的2个重组质粒在Marc-145细胞中能进行有效的转录。结果表明,所构建的重组质粒pEGFP-GP5和pEGFP-IL18-GP5在Marc-145细胞中得到表达,为进一步研究PRRSV基因工程疫苗奠定了基础。  相似文献   

8.
为构建鸡高迁移率族蛋白B1(Chicken high mobility group B1 protein,chHMGB1)真核表达载体,并在真核细胞中进行暂态表达和鉴定。研究酶切回收含有鸡高迁移率族蛋白全长基因的PGEM-chHMGB1质粒,将chHMGB1全长与pcDNA3.1(+)载体连接构建pcDNA-chHMGB1全长重组表达质粒。将其质粒采用脂质体转染293T细胞,进行暂态表达,利用Western blotting和间接免疫荧光法对表达的蛋白进行鉴定。结果显示,pcDNA-chHMGB1重组表达质粒克隆片段大小正确,瞬时转染293T细胞,Western blotting在细胞浆和培养上清中同时检测到相对分子量约为30 ku的目的条带;利用chHMGB1特异性抗体进行IFA试验可以检测到目的蛋白的表达。本研究成功构建了鸡高迁移率族蛋白B1的真核表达载体pcDNA-chHMGB1,并且在真核细胞中得以有效表达,从而为进一步研究chHMGB1蛋白的生物学功能提供生物材料。  相似文献   

9.
参考GenBank发表猪IL-15mRNA序列设计引物,用RT-PCR方法扩增猪IL-15cDNA,并克隆到pMD18-T载体中,通过PCR、酶切和测序验证克隆正确,再亚克隆到真核表达载体pcDNA-3.1(+)上,得到重组质粒pcD-NA-pIL-15。在脂质体介导下,重组质粒pcDNA-pIL-15转染AD-293细胞。以鼠抗猪IL-15为一抗,用间接免疫荧光分析表明猪IL-15基因均在AD-293细胞中成功进行了瞬时表达。小鼠免疫试验表明,pcDNA-pIL-15作为免疫佐剂,能够有效提高小鼠的脾T细胞增殖,加强pcDNA-ORF2(PCV2)质粒免疫过程中的特异性中和抗体的产生,为进一步研制猪IL-15基因佐剂疫苗及进行临床实验奠定基础。  相似文献   

10.
试验旨在构建猪β2肾上腺素能受体(β2 adrenergic receptor,β2AR)基因及其突变体真核表达载体,并鉴定其在HEK293T细胞中的表达。通过猪基因组DNA克隆猪β2AR基因,利用同源重组技术将其连接至真核表达载体pcDNA3.1(+),构建真核表达载体pcDNA3.1(+)-β2AR,加入c-myc标签后命名为myc-pcDNA3.1(+)-β2AR。以真核表达载体为模板构建突变体myc-pcDNA3.1(+)-β2AR-D130N、myc-pcDNA3.1(+)-β2AR-C285S和myc-pcDNA3.1(+)-β2AR-D130N/C285S,并将构建的真核表达载体和突变体转染HEK293T细胞,利用Western blotting技术验证其表达。结果显示,猪β2AR基因已正确重组入pcDNA3.1(+)载体中;经测序鉴定,猪β2AR的第130位天冬氨酸成功突变为天冬酰胺,第285位半胱氨酸成功突变为丝氨酸。Western blotting检测结果证明所构建的表达载体均可在HEK293T细胞中表达。本研究成功构建了猪β2AR野生型的真核表达载体及2个单点突变和1个双点突变的突变体,并验证其在HEK293T细胞中正常表达,为进一步研究猪β2AR蛋白表达及其药理学活性奠定基础。  相似文献   

11.
To obtain recombinant eukaryotic expression plasmid of porcine interleukin-18(IL-18), the whole gene of porcine IL-18 gene was amplified from porcine spleen, lung and lymph nodes by RT-PCR and cloned into eukaryotic expression vector pZJ-1. The recombinant expression plasmid pZJ-IL-18 were identified by enzyme digestion and sequencing analysis, and was transfected into 293T cells.The expression of IL-18 was detected by Real-time PCR and Western blotting in both gene and protein levels. The results showed that the eukaryotic expression plasmid of porcine IL-18 was constructed and could express transiently in 293T cells. Western blotting result confirmed that porcine IL-18 polyclonal antibody could react specifically with approximately 17 ku expression products,and indicated that IL-18 could express correctly and be responsive.This study constructed the eukaryotic expression plasmid of porcine IL-18 gene which could express transiently in 293T cells, and laid the foundation for studying function of IL-18.  相似文献   

12.
将水牛髓样分化因子88(myeloid differentiation factor 88,MyD88)cDNA全长定向克隆至pEGFP-C1真核表达载体,通过酶切和测序鉴定正确后,经脂质体介导将重组质粒转染至HEK293细胞,应用荧光显微镜、流氏细胞术和Western blotting检测MyD88蛋白的表达。结果表明,酶切及测序结果证实重组质粒含有MyD88全长CDS序列,融合蛋白读码正确;荧光显微镜、流式细胞术和Western blotting检测证实,水牛EGFP-MyD88融合蛋白真核表达载体能够在HEK293细胞表达。本研究成功构建了pEGFP-C1-MyD88真核表达载体,并使其在HEK293细胞中获得表达,为进一步研究该基因的生物学功能奠定基础。  相似文献   

13.
试验旨在构建猪BPI真核表达载体,获得猪源BPI重组蛋白.根据GenScript's CloneEZ® PCR Cloning Kit试剂盒,将BPI编码序列克隆至pUC57载体上,酶切与测序鉴定无误后,将重组质粒pUC57-BPI转染293-6E细胞,并利用SDS-PAGE和Western blotting方法检测其表达水平.结果显示,本试验成功构建了猪源BPI蛋白真核表达载体pUC57-BPI,并在293-6E细胞培养上清中检测到猪源BPI重组蛋白的表达.该猪源BPI重组蛋白体外表达系统的建立为今后深入研究猪BPI的生物学功能以及猪抗菌蛋白的制备提供了试验基础.  相似文献   

14.
试验旨在通过真核表达系统表达猪圆环病毒2型(porcine circovirus type 2,PCV2) CAP蛋白。以PCV2 TZ0601株为模板,将PCV2 CAP全基因及CAP去除信号肽的基因编码序列克隆至pOET3载体上,酶切与测序鉴定正确后,将重组质粒pOET3-CAP及pOET3-CAP-X转染sf9昆虫细胞。采用flashBAC杆状病毒表达系统表达PCV2 CAP及去除信号肽的CAP蛋白,通过间接免疫荧光法、SDS-PAGE 和Western blotting鉴定目的蛋白的表达。结果表明,真核表达质粒pOET3-CAP及pOET3-CAP-X构建成功,目的基因在sf9昆虫细胞中高效表达,得到的蛋白经SDS-PAGE和Western blotting鉴定,在25~35 ku处有蛋白条带,表达的蛋白质可被PCV2阳性血清识别。试验结果为进一步制备PCV2亚单位疫苗及诊断抗原试剂盒的研发奠定了基础。  相似文献   

15.
The study was aimed to express CAP protein of porcine circovirus type 2 (PCV2) by eukaryotic expression system.The PCV2 TZ0601 strain was the template,the CAP protein with or without the signal peptide of PCV2 coding sequence were cloned into pOET3 vector.The constructed plasmid were confirmed by restriction enzyme digestion and DNA sequencing,then sf9 insect cells were transfected with recombinant plasmid pOET3-CAP and pOET3-CAP-X.The test was designed to express the CAP protein with or without the signal peptide of PCV2 by flashBAC baculovirus expression system.Expression of PCV2 gene were confirmed by indirect immunofluorescent assay (IFA),SDS-PAGE and Western blotting.The results showed that the eukaryotic expression plasmids of pOET3-CAP and pOET3-CAP-X were constructed successfully and the gene was highly expressed in sf9 insect cells.After expression,we could see our target band about 25 to 35 ku with SDS-PAGE and Western blotting.The immuno-reactivity of the protein was confirmed by antisera against PCV2.This would lay a foundation for a further study of PCV2 subunit vaccine and diagnostic antigen kit.  相似文献   

16.
To clone adiponectin (ADPN) gene from Shaziling porcine adipocyte and construct its eukaryotic expression vector, total RNA was extracted from subcutaneous fatty tissue. One pair of specific primers was designed by Primer 5.0 software according to the sequence of ADPN gene of porcine available in GenBank. The ADPN gene was amplified by PCR from cDNA and cloned into pMD18‐T vector to construct recombinant clonal vector pMD‐ADPN, sequenced and analysed. A recombinant expression plasmid pPICZaA‐ADPN was constructed by subcloning the cloned ADPN gene into the linearized pPICZaA vector. Then, the plasmid pPICZaA‐ADPN was expressed in Pichia pastoris (GS115) by electrotransformation. Western blot and Bradford analysis were used to determine the target protein induced by methanol. Results showed that the genome size of ADPN was 732 bp and encoded 244 amino acid, the nucleotide sequence of ADPN shared 100% identity with that of porcine available in GenBank. Western blot and Bradford analysis showed that the recombinant ADPN was expressed in GS115 correctly and has certain immune activity. The expression level of ADPN was 28.5 μg/ml. In conclusion, the recombinant ADPN could express in eukaryotic expression vector pPICZaA‐ADPN constructed in this study effectively.  相似文献   

17.
为表达马驽巴贝斯虫新疆伊犁株Bc48基因,制备多克隆抗体,试验根据GenBank中马驽巴贝斯虫Bc48基因序列,设计合成1对特异性引物,以提取的新疆株Bc48基因组DNA为模板进行PCR扩增,将扩增产物克隆至原核表达载体pET-28a(+)中,阳性质粒转化至大肠杆菌BL21(DE3)感受态细胞中,经IPTG诱导后表达产物进行SDS-PAGE分析,切胶纯化蛋白后免疫6周龄雌性BALB/c小鼠,制备多克隆抗体;同时把该基因克隆至真核表达载体pCMV-N-flag中,将阳性质粒转化至大肠杆菌DH5α感受态细胞中,提取pCMV-N-flag-Bc48质粒转染到293T细胞中进行真核表达。结果显示,获得了大小约为15 ku的融合蛋白,与预期目的蛋白大小相一致;免疫BALB/c小鼠制备的多克隆抗体经ELISA和Western blotting检测、验证,能特异地识别相应抗原,其抗体效价可达1:128 000,说明该多克隆抗体有较高的抗体效价和特异性;真核表达质粒在293T细胞中表达Bc48蛋白。本试验可为进一步研究马驽巴贝斯虫功能基因及建立快速的检测方法奠定基础,在虫株的分类学研究及候选疫苗的研制中有重要意义。  相似文献   

18.
为构建柔嫩艾美耳球虫钙依赖蛋白激酶3(Eimeda tenella calcium-dependent protein kinases3,EtCDPK3)基因的重组质粒pCAGGS-EtCDPK3,并转染293T细胞进行表达,以柔嫩艾美耳球虫孢子化卵囊cDNA为模板,经PCR扩增其含完整开放阅读框的序列,将其克隆至pGEM.Teasy载体,构建pGEM—Teasy-EtCDPK3重组质粒,双酶切回收目的片段后与相应酶切的真核表达载体pCAGGS连接,构建真核重组表达质粒pCAGGS-EtCDPK3。该重组质粒经酶切和测序鉴定正确后转染293T细胞进行表达,分别用免疫印迹和间接免疫荧光鉴定EtCDPK3基因的表达情况。结果显示所构建的真核重组表达质粒pCAGGS—EtCDPK3经过双酶切鉴定,可见1条大小约为1302by的目的条带,测序结果与实验室已获得的EtCDPK3序列完全一致;Western blot结果可见大小约为49kDa的目的蛋白条带,间接免疫荧光实验可以检测到红色荧光。这些研究结果表明已成功构建了EtCDPK3的真核重组表达质粒pCAGGS-EtCDPK3,并在真核细胞中获得表达,为深入研究EtCDPK3的功能和制备DNA疫苗奠定了基础。  相似文献   

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