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1.
汉滩病毒核蛋白的分段表达及抗原表位分析   总被引:3,自引:0,他引:3  
在大肠杆菌中对汉滩病毒S基因4种不同长度片段的重组表达质粒进行诱导表达.结果表明表达的4种GST-NP融合蛋白均以不溶性包含体形式存在于菌体细胞内,表达量分别占菌体蛋白总量的29-36%,分子量分别约为72 kD、66 kD、54 kD和44 kD.Western blot显示54 kD和72 kD融合蛋白用酶标抗汉滩病毒NP McAb 1A8和抗GST McAb 3C11染色呈阳性反应.66 kD和44 kD融合蛋白仅与酶标3C11呈阳性反应.用凝血酶切去GST,获得4种汉滩病毒重组核蛋白(rNP),分子量分别约为44 kD、40 kD、26 kD和16 kD.用19株McAb对表达产物做抗原位点分析,结果完整的rNP可与19株McAb中的13株反应,McAb反应谱与天然NP相同;S1.1 kb表达产物(N-端1-37和C端402-429位aa缺失)和S 0.5 kb表达产物(N-端1-274位aa缺失)与19株McAb均不发生反应;S0.7 kb表达产物(C-端275-429位aa缺失)可与5株组特异性McAb反应.表明汉坦病毒核蛋白上的抗原位点主要存在于N-端1-37位aa区段内.  相似文献   

2.
为进一步探讨大肠杆菌脑微血管内皮细胞侵袭基因ibeB的生物学特性 ,将ibeB基因克隆到pET2 8a(+)载体 ,以E .coliBL2 1 (DE3)为宿主菌 ,经IPTG诱导后 ,通过Ni2 + NTA树脂提纯IbeB蛋白 .SDS PAGE确定纯化蛋白的分子量 ;应用无蛋白酶的体外转录和翻译系统进一步鉴定ibeB基因表达蛋白的分子量 ;通过 [3 5S]Met标记的体内T7表达体系并结合膜蛋白分离技术定位IbeB蛋白在细菌中的亚细胞分布 ;利用细菌侵袭实验分析IbeB蛋白抗体对E .coliK1侵袭人脑微血管内皮细胞的封闭作用 .结果发现 ,ibeB基因的重组蛋白表达纯化产物呈现出 5 0kD和 34kD两种分子量大小 ,5 0kD存在于表达细菌的可溶性部分 ,而 34kD则存在于包涵体中 ;体外翻译实验也显示出较弱的 5 0kD和较浓的 34kD两个蛋白带 ;体内T7表达体系实验显示 34kD的IbeB成熟蛋白定位于E .coli的外膜 ;抗 34kDIbeB蛋白抗体能封闭E .coli对人脑微血管内皮细胞的侵袭 .这些结果提示 ,大肠杆菌脑微血管内皮细胞侵袭基因ibeB的编码产物为 5 0kD的外膜蛋白前体 ,该前体可通过分子内剪接形成成熟的 34kDIbeB蛋白  相似文献   

3.
肾综合征出血热纯化疫苗的SDS-PAGE分析   总被引:1,自引:0,他引:1  
为了证明蛑综合征出血热纯化疫苗的主要成分坦病毒蛋白,采用出血热纯化疫苗经浓缩后进行SDS-PAGE和Western-blotting分析。结果 经SDS-PAGE显示,肾综合征出血热纯化疫苗有三条蛋白带,分子量分别约为70kD、55kD和50kD,与汉坦病毒三种结构蛋白(糖蛋白G1、G2和核蛋白NP)的分子量相符;经Western-blotting显示,分子量50kD的蛋白带反应阳性,分子量70kD和55kD的蛋白带无反应,认定出血热纯化疫苗的主要成分为汉坦病毒蛋白,主要由G1、G2和NP三种结构蛋白构成。  相似文献   

4.
运用“数据库消减杂交”(digital differential display)方法来筛选人类睾丸特异表达新基因,获得了有差异显示的代表新基因的克隆重叠群。挑选其中一个克隆重叠群HS.326528进行多组织RT—PCR,初步获得该重叠群在人睾丸中有高表达。从该重叠群的IMAGE出发,采用生物信息学的方法快速克隆了一个人类新基因的全长cDNA序列,其全长1044bp,开放阅读框为214~529bp,定位于15q26.2,编码由105个氨基酸组成、分子量为11.7kD、等电点为10.09的一个碱性蛋白,该蛋白与已知蛋白无明显的同源性,克隆实验证明该基因的阅读框完全正确,RT—PCR和Northern blot显示该基因在人类睾丸中特异表达,实时PCR结果表明:该基因在成人睾丸中高表达,在精子中有中度表达,在胚胎睾丸中低表达,推测该基因与精子的生成有关,命名为SRG8(homo sapiens spermatogenesis—related gene 8)(GenBank登录号:AY489187),该基因编码的蛋白定位于细胞核。流式结果分析表明,SRG8基因能够促使HeLa细胞由S期向G2期的转变,从而加速细胞的分裂。这些结果表明SRG8基因可能在睾丸的发育及精子的形成过程中起重要的作用。  相似文献   

5.
通过对贵州万山汞污染地区及北京地区猪肝脏和肾脏组织上清液进行凝胶过滤色谱分离(SephadexG 10 0 ) ,随后用原子荧光法测定它们蛋白质组分中汞和硒的含量 ,研究在汞暴露水平不同状态下微量元素汞和硒在动物体蛋白质分子水平上的分布 .发现这两个地区猪肝脏和肾脏组织上清液蛋白质组分中汞和硒的分布模式有明显差异 .贵州万山汞污染地区猪肝脏上清液中汞浓度比北京地区高 ,硒浓度也相应高 ,且前者与高分子量和低分子量蛋白结合的硒均明显高于后者 ;而北京地区猪肝脏上清液中的硒主要以与高分子量蛋白结合的形式存在 .贵州汞污染地区猪肝脏上清液中汞主要与高分子量蛋白结合 ,而北京地区猪肝脏上清液中汞则分布较为均匀 .贵州万山地区猪肾脏上清液中 ,含硒峰在高分子量蛋白区和低分子量区都有分布 ;而北京地区猪肾脏上清液中 ,硒则主要集中分布于高分子量蛋白范围 .这两个地区猪肾脏上清液中都有分子量约为 11kD的金属硫蛋白 (MT)存在 ,北京地区猪肾脏上清液中汞主要以与金属硫蛋白结合的形式出现 ,而贵州万山地区猪肾脏上清液中的汞除与金属硫蛋白结合外 ,尚有相当大部分是以与高分子量蛋白结合的形式存在 .研究结果表明 ,由于这两个地区汞暴露水平的差异 ,不仅使这两地区猪肝、肾上清液中的汞与硒含量  相似文献   

6.
小麦种子萌发过程中类PvLEA—18的表达   总被引:3,自引:2,他引:1  
利用PvLEA-18蛋白抗体,分析小麦种子在萌发过程中类PvLEA-18表达情况。Western blot表明在小麦干种胚中未检测到类PvLEA-18蛋白,而在种子萌发不同时期(12h,24h,36h)的胚和盾片组织中检测到类PvLEA-18蛋白的表达。其分子量分别约为81kD和70kD。种子萌发24h后,81kD蛋白消失,70kD的类PvLEA-18表达量也降低。  相似文献   

7.
真核多肽∶N-寡糖酶(peptide∶N-glycanase或PNGase)可切除错误折叠糖蛋白上的N-寡糖链,并可与内质网关联降解(endoplasmic reticulum-associated degradation,ERAD)途径中的多种关键成分相结合.然而,对于PNGase的生理功能及其与疾病的关系尚无明确报道.本研究利用重组技术表达和纯化了包含人PNGase N末端片段的融合蛋白,并经融合蛋白免疫与亲和层析纯化家兔抗血清,制备了PNGase的特异性抗体.利用该抗体和Western印迹技术研究了PNGase在小鼠组织中的表达.结果显示PNGase在7种小鼠组织(脑、心、肺、肝、脾、肾、睾丸)中均有不同程度的表达,其中表达量最高者为睾丸;PNGase表达水平在不同品系小鼠(C57BL/6N、BALB/cAnN和昆明小鼠)间有显著差异.在小鼠单侧隐睾模型中首次观察到,与对照侧阴囊内的正常睾丸相比,隐睾内PNGase含量明显下降,提示PNGase在睾丸生精过程中可能有重要作用.  相似文献   

8.
利用热稳定蛋白特异条带鉴别籼粳稻的方法研究   总被引:2,自引:0,他引:2  
以85份栽培稻为材料,利用SDS-聚丙烯酰胺凝胶电泳和蛋白免疫印迹技术分析籼稻和粳稻热稳定蛋白的表达差异.探讨利用特异蛋白来建立籼粳稻的鉴别方法.结果表明,在籼粳稻品种之间存在热稳定蛋白的差异表达,尤其在分子量约42~47kD范围.其中45.2kD条带(Band I)和46.5 kD(Band Ⅱ)条带为典型粳稻特异蛋白(Os03g0168100)的标志带,42.0kD条带(Band Ⅲ)为典型籼稻特异蛋白(OsI_10172)的标志带.以这3条带作为鏊别方法,并与程氏指数法进行比较,典型籼稻和粳稻的一致度分别为80.0%和86.4%,表明热稳定蛋白标志带法在一定程度上可用于鉴别典型的籼稻和粳稻.  相似文献   

9.
人肾液泡型H-ATPase 58kD亚基基因的表达   总被引:1,自引:1,他引:0  
在大肠杆菌中表达了人肾液泡型H-ATPase 58kD亚基的基因,利用聚合酶链式反应(PCR)得到了58kD亚基的编码片段.直接将PCR产物连接到PET载体上表达.SDS聚丙烯酰胺凝胶电泳和蛋白质印迹分析表明58kD亚基的基因得到高效表达.表达产物可达细菌细胞质蛋白的50%.  相似文献   

10.
从在小鼠隐睾和正常睾丸对照中表达量有明显差异的EST片段 (BE6 4 4 5 37)出发 ,利用GeneScan软件分析该片段所在染色体基因组序列 ,获得一个包含该EST的新基因序列。设计该基因特异性引物从小鼠睾丸cDNA文库中进行PCR扩增 ,分离出小鼠睾丸生精细胞凋亡相关基因mTSARG3(GenBank登录号为AF4 192 92 )。该基因定位于小鼠 7号染色体 7E1 E2区带 ,全长为 11kb ,cDNA全长为 132 8bp ,包含 8个外显子 ,编码由 316个氨基酸组成的、分子量为 36kD的蛋白质。该蛋白质含有DnaJ区和DnaJ- c区 ,与热激蛋白 4 0家族多种蛋白质有较高相似性 ,其中与小鼠DJB4 - MOUSE在 336aa的范围内有 4 6 %的相似性 ,属热激蛋白 4 0家族新成员。多组织RT PCR和Northern印迹结果显示 ,该基因在小鼠睾丸组织高表达 ,转录本大小约为 1.35kb ;Southern杂交结果显示 ,该基因在小鼠正常睾丸和隐睾组织无缺失和重排。实验结果证明成功克隆到了一个小鼠睾丸生精细胞凋亡相关基因mT SARG3。  相似文献   

11.
Sef is a transmembrane protein inhibiting FGF signaling.To determine the correlation of Sef with human diseases,Sef expression patterns were observed in cell lines and human cancer tissues.Western blot using anti-hSef antibodies showed that hSef,when expressed in Cos7 cells gave a molecular mass of 100 KD as compared with 80 KD in an in vitro translation assay suggesting occurrence of glycosylation at the potential N-linked glycosylation sites in the extracellular domain.Northern blot showed that hSef was mainly expressed in human kidney and testis.RT-PCR analysis showed a widely spread expression pattern in several cell lines.Immunohistochemical analysis revealed ahigh expression level of hSef in kidney,testis,and the corresponding carcinoma tissues.Results demonstrated that Sef might be up-regulated in the cancer tissues suggesting a possible role of Sef in pathophysiology of human diseases.  相似文献   

12.
Sef is a transmembrane protein inhibiting FGF signaling. To determine the correlation of Sef with human diseases, Sef expression patterns were observed in cell lines and human cancer tissues. Western blot using anti-hSef antibodies showed that hSef, when expressed in Cos7 cells gave a molecular mass of 100 KD as compared with 80 KD in an in vitro translation assay suggesting occurrence of glycosylation at the potential N-linked glycosylation sites in the extracellular domain. Northern blot showed that hSef was mainly expressed in human kidney and testis. RT-PCR analysis showed a widely spread expression pattern in several cell lines. Immunohistochemical analysis revealed a high expression level of hSef in kidney, testis, and the corresponding carcinoma tissues. Results demonstrated that Sef might be up-regulated in the cancer tissues suggesting a possible role of Sef in pathophysiology of human diseases. __________ Translated from Chinese Journal of Biochemistry and Molecular Biology, 2005, 21 (2) [译自: 中国生物化学与分子生物学报, 2005,21(2)]  相似文献   

13.
利用电子差异展示方法克隆人类睾丸高表达新基因SPATA11   总被引:1,自引:0,他引:1  
利用NCBI中的电子差异展示(digital differential display,DDD)软件,比较来自睾丸(包括睾丸癌)与来自其它组织的EST文库,从筛查人类睾丸中高表达而在其他组织中不表达或低表达的差异ESTs入手,成功克隆了一个在人类睾丸中高表达的新基因SPATA11.RT-PCR实验证实其在成人睾丸高表达.序列分析表明该基因含4个外显子,基因组跨越2.6kb,定位于19pl3.3.cDNA编码一个含221个氨基酸,相对分子质量为24.5kD的新蛋白.Northern杂交结果显示:该基因含有1.1kb大小的唯一转录本,主要在睾丸中强表达.肝脏、肺、卵巢和肾脏中有微弱表达.而其他组织中该基因无表达.  相似文献   

14.
15.
Rad17是细胞周期检控点信号转导过程中的一个关键检控蛋白,在DNA损伤检控和DNA复制检控中具有重要功能。但Rad17在细胞减数分裂中的检控作用还不是很清楚。因细胞减数分裂在睾丸组织中非常活跃,应用Western印迹检测Rad17在不同发育时期的小鼠睾丸组织中的表达及其磷酸化水平,并应用免疫组化的方法检测小鼠睾丸组织不同时期生殖细胞内Rad17的表达变化。结果显示Rad17在小鼠睾丸组织内高表达,而在肝、肾等组织中表达水平较低;Rad17在不同周龄的小鼠睾丸组织中均高水平表达,但在4周龄以后的小鼠睾丸组织中其磷酸化水平明显升高;免疫组化结果显示Rad17在精原细胞、精母细胞的细胞核中高表达,但在成熟精子细胞中消失。这些结果提示Rad17在小鼠睾丸生殖细胞减数分裂过程中也起重要检控作用。  相似文献   

16.
Pituitary tumor transforming gene 1 (PTTG1), recently cloned from human testis, is a potent oncogene that is expressed in most tumors. However, assessment of its potential value as a prognostic marker is dependent on the development of a suitable antibody. We have developed a rabbit polyclonal antibody, SK601, that is highly specific for the PTTG1 gene product using recombinant PTTG1 protein (24 kD) containing an N-terminal His(6) tag as the immunogen. The antiserum is capable of detecting recombinant PTTG1 protein in ELISA assays at a titer of 1:100,000. Use of the antibody as the probe in Western blotting analyses revealed a single band with the anticipated relative molecular weights of 52 kD from E. coli expressing the GST-PTTG1 recombinant protein, and 56 kD from COS-7 cells transfected with the PTTG1-GFP chimeric construct. A single band with a relative molecular weight of 28 kD was observed in extract of COS-7 cells transfected with PTTG1 cDNA. The antiserum immunoprecipitated a protein of relative molecular weight of 56 kD from the extracts of COS-7 cells transfected with the PTTG1-GFP chimeric construct. Immunohistochemical analysis of COS-7 cells transfected with this construct confirmed that the antibody detected and was specific for expressing the PTTG1-GFP recombinant protein. Screening of various normal human tissues (testis, ovary, and breast) by immunohistochemistry indicated that these tissues did not exhibit staining with the exception of testis, a tissue that had previously been shown to express PTTG1 mRNA. In contrast all of the tumor tissues (testicular tumor, ovarian tumor, and breast tumor) that were assessed exhibited intense staining. The results suggest that antiserum SK601 is highly specific for the PTTG1 protein and therefore should prove useful in further analysis of the expression and interactions of this protein, including its potential application as an immunohistochemical marker of human tumors.  相似文献   

17.
Long DJ  Jaiswal AK 《Gene》2000,252(1-2):107-117
The mouse NQO2 cDNA and gene with flanking regions were cloned and sequenced. Analysis of the primary structure of the mouse NQO2 protein revealed the presence of glycosylation, myristylation, protein kinase C and caseine kinase II phosphorylation sites. These sites are conserved in the human NQO2 protein. The mouse NQO2 gene promoter contains several important cis-elements, including the antioxidant response element (ARE), the xenobiotic response element (XRE), and an Sp1 binding site. Northern analysis of eight mouse tissues indicated wide variations in the expression of the NQO2 and NQO1 genes. NQO2 gene expression was higher in liver and testis compared with the NQO1 gene, which was highest in the heart. NQO1 gene expression was undetectable in the testis. Mouse kidney showed significantly higher expression levels of NQO1 compared with NQO2. Brain, spleen, lung, and skeletal muscle showed undetectable levels of NQO2 and NQO1 gene expression. NQO2 activity followed a more or less similar pattern of tissue-specific expression as NQO2 RNA. Interestingly, the NQO2 activity remained unchanged in the NQO1-/-mice tissues compared with NQO1+/+ mice, with the exception of the liver. The livers from NQO1-/-mice showed a 45% increase in NQO2 activity compared with the NQO1+/+ mice. The mouse NQO2 cDNA was subcloned into the pMT2 eukaryotic expression vector which, upon transfection in monkey kidney COS1 cells, produced a significant increase in NQO2 activity. Deletion of 54 amino acids from the N-terminus of the mouse NQO2 protein resulted in the loss of NQO2 expression and activity in transfected COS1 cells. This indicates that deletion of exon(s) encoding the N-terminus of NQO2 from the endogenous gene in mouse embryonic (ES) stem cells should result in NQO2-null mice.  相似文献   

18.
目的克隆版纳微型猪近交系(BMI)不育和可育公猪TDRP1基因,分析其序列及mRNA表达水平上的差异,预测其蛋白质功能,并检测该基因在可育公猪中的组织表达分布情况。方法以猪NM_001198925序列为模板,设计特异引物,采用RT-PCR方法结合测序获得TDRP1的c DNA序列并进行生物信息学分析;采用半定量PCR方法检测TDRP1在不育和可育公猪睾丸中的表达规律,分析该基因在可育公猪17种组织中的表达特征。结果获得了BMI TDRP1基因的编码区序列(Gen Bank登录号:KJ186786),生物信息学分析表明其编码186个氨基酸,蛋白质相对分子质量(Mw)为20.49×10^3,等电点(p I)为5.86,无信号肽,有94.1%的概率位于细胞核,含有1个亮氨酸富集的核输出信号。不同物种的氨基酸序列比对表明猪TDRP1与人、恒河猴、小鼠和大鼠等哺乳动物的TDRP1相似性在73%-83.2%之间,其中与人、恒河猴的相似性较高。mRNA表达分析表明,TDRP1在BMI不育和可育公猪睾丸间表达水平差异无显著,在精囊腺和前列腺中高表达,在睾丸和小脑中中度表达,在大脑和肾脏中低表达,在其余组织中不表达。结论成功克隆了BMI TDRP1基因的全长编码区序列并发现了BMI特有的2个SNP位点;TDRP1基因在BMI不育和可育公猪间序列完全一致,睾丸mRNA表达水平差异无显著性,多组织转录谱分析表明该基因存在明显的组织差异表达现象,在精囊腺和前列腺中有较高表达量,为深入研究TDRP1基因在精子发生方面的作用奠定了基础。  相似文献   

19.
The high expression of CD98 was reported in some normal tissues, including blood brain barrier, activated lymphocytes, the basal layer of skin, proximal tubles of kidney, placenta, testis and a wide variety of tumors. The CD98 complex consists of an 80-85kD heavy chain (4F2hc/FRP-1) and a 40-45kD light chain. CD98hc, 4F2hc, and FRP-1 are the same glycosylated protein each other and define antigenicity of CD98. LAT1, the sodium-independent L-type amino acid transporter 1, has been identified as a light chain of the CD98 heterodimer from C6 glioma cells. LAT1 also corresponds to TA1, an oncofetal antigen that is expressed primarily in fetal tissues and cancer cells such as glioma cells. Increased LAT1 expression was found in various malignancies including human gliomas. Several studies implicated the important role of LAT1 and 4F2hc in malignant transformation and carcinogenesis. The LAT1-CD98 pathway may represent a unique therapeutic target for cancer intervention.  相似文献   

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