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1.
重组SARS冠状病毒M蛋白的表达、纯化及鉴定   总被引:1,自引:0,他引:1  
SARS冠状病毒是人的严重急性呼吸综合征的病原体。根据对其他种类冠状病毒的研究结果 ,膜蛋白 (M蛋白 )是病毒主要的结构蛋白 ,重组M蛋白可被用来作为抗原检测对应冠状病毒的感染和制备疫苗。SARS病毒M蛋白基因克隆到原核表达载体pMAL cRI中 ,利用N端和C端分别融合麦芽糖结合蛋白 (maltosebindingprotein和MxeGyrAinteinCBD的策略 ,在大肠杆菌中初步表达了重组M蛋白 ,并通过Western印迹和质谱对蛋白质进行了鉴定。重组蛋白质经亲和层析得到了部分纯化 ,纯化后的蛋白质将用于功能研究与诊断试剂盒的研制。  相似文献   

2.
E蛋白是存在于SARS病毒表面的一个小分子蛋白,在病毒的出芽过程中有重要的作用。为建立一种检测SARS病毒抗原的新方法,将E蛋白全基因序列分段合成,用连接酶连接后插入pET—GST载体,转化大肠杆菌BL21进行融合表达,结果得以成功表达GST-E融合蛋白;为SARS病毒致病机理研究和疫苗及诊断试剂的研制打下了基础。  相似文献   

3.
刺突蛋白(S)和核心蛋白(N)是SARS冠状病毒的主要结构蛋白.在病毒细胞受体结合和病毒包装过程起重要作用.重组融合表达这2种蛋白具有较高的诊断学价值.对SARS病毒N蛋白和S蛋白氨基酸序列进行计算机分析,选择含有优势抗原表位的N蛋白1~227位氨基酸片段和S蛋白450~650位氨基酸片段,采用序列重叠延伸策略(sequenceoverlappingextension,SOE)构建编码N1227LinkerS450650新型融合蛋白的基因片段,导入原核表达载体,实现融合蛋白在大肠杆菌的高效表达.利用组氨酸标签亲和层析的方法纯化,获得高纯度的融合蛋白.对该融合蛋白的结构特征模拟分析的结果显示,其免疫化学性质均无显著改变.采用ELISA和Western印迹方法对其识别SARS冠状病毒特异性抗体的能力进行初步鉴定,显示该融合蛋白具有较好的抗原性和特异性,可有效特异性地检测恢复期SARS病人血清中抗SARS冠状病毒结构蛋白的抗体,可以作为SARS冠状病毒感染的辅助诊断手段.  相似文献   

4.
SARS病毒N蛋白、E蛋白在大肠杆菌中的表达与鉴定   总被引:2,自引:0,他引:2  
本研究通过RT-PCR反应获得了SARS冠状病毒核衣壳蛋白(N)和膜蛋白(E)基因,将n基因和e基因克隆到大肠杆菌表达载体pGEX KG上,并在大肠杆菌中以可溶形式获得高效表达,表达产物经亲和层析纯化.重组蛋白N与SARS病毒抗体呈现特异性的反应,为进一步研究SARS病毒感染免疫应答机制和早期诊断奠定基础  相似文献   

5.
重组SARS病毒N蛋白可与SARS患者血清发生特异反应   总被引:1,自引:0,他引:1  
N蛋白是SARS CoV病毒基因组编码病毒核衣壳蛋白 ,它不同于现已知的任何蛋白质 .对它的深入研究对揭示SARS -CoV的致病机理和疫苗及诊断试剂的研制有重要意义 .灭活的病毒经逆转录后 ,用根据已知的病毒的基因组序列所设计的引物PCR扩增N蛋白基因 .扩增出的基因经序列分析表明和已知的序列完全一致 ,共编码 4 2 2个氨基酸残基 .将N蛋白基因克隆入原核表达载体pET2 8a构建成表达质粒pET2 8a N .表达质粒转化大肠杆菌BL2 1 (DE3) ,并用IPTG诱导后 ,获得了高表达N蛋白的重组菌株 .目的蛋白经一步金属离子螯合层析纯化后获得了纯度超过 90 %的样品 .Western印迹及ELISA分析表明 ,SARS患者体内有特异性的针对N蛋白的抗体 ,并具有较高的特异性 .这为临床上诊断SARS患者提供了新方法 ,并为SARS疫苗的研制提供了研究思路  相似文献   

6.
本研究通过RT-PCR反应获得了SARS冠状病毒核衣壳蛋白(N)和膜蛋白(E)基因,将n基因和e基因克 隆到大肠杆菌表达载体pGEX-KG上,并在大肠杆菌中以可溶形式获得高效表达,表达产物经亲和层析纯化。重 组蛋白N与SARS病毒抗体呈现特异性的反应,为进一步研究SARS病毒感染免疫应答机制和早期诊断奠定基础  相似文献   

7.
目的:研究SARS冠状病毒核壳蛋白(N蛋白)对蛋白翻译的影响。方法:构建N蛋白表达载体FLAG-pcDNA3-N,分别与FLAG-pcDNA3和表达荧光素酶的质粒共转染293T人胚肾细胞,通过检测荧光素酶的活性来判断N蛋白对细胞内蛋白翻译的影响;在体外翻译体系中检测N蛋白对体外翻译的影响。结果:构建了载体FLAG-pcDNA3-N,在293T人胚肾细胞内表达后,荧光素酶活性被抑制;在体外翻译体系中加入N蛋白,体外翻译被抑制。结论:SARS冠状病毒N蛋白抑制蛋白翻译。  相似文献   

8.
通过计算机分析SARS病毒N蛋白和S蛋白的氨基酸序列 ,初步确定含强抗原表位的N蛋白片段和S蛋白片段 ,共 5 6 0个氨基酸。选择真核和原核生物均偏爱的密码子 ,化学合成全新的SARS病毒N蛋白片段和S蛋白片段的基因序列 ,利用基因工程技术将两个基因片段串联 ,克隆至质粒Pet2 8a(+)内的NcoⅠ/EcoRⅠ位点 ,表达S蛋白片段和N蛋白片段的融合蛋白。将重组质粒转化大肠杆菌BL21(DE3) ,筛选获得了高效表达SARS病毒S蛋白片段和N蛋白片段融合蛋白的工程菌 ,表达的SARS病毒的融合蛋白约占菌体蛋白总量的 30 %左右 ,部分以可溶性形式存在。经离子交换柱和反相高压液相纯化获得了表达的融合蛋白 ,经初步鉴定 ,显示该融合蛋白有较好的抗原性和特异性.  相似文献   

9.
SARS-CoV假病毒中和试验技术的建立及评价   总被引:1,自引:1,他引:0  
为避免传统的SARS病毒中和试验需要操作活毒而存在的生物安全隐患,建立了基于假病毒系统、操作较安全的SARS中和试验技术平台。本研究应用高效表达SARS-CoV S(密码子优化的全长S蛋白,简称S)的真核表达载体(pVRC8304),与HIV慢病毒包装质粒(p CMV△8.2)及转移质粒(pHR′CMV EGFP)3个质粒载体系统共同转染人胚肾细胞293T,包装了SARS假病毒;通过SARS假病毒感染的RD-A细胞中标记基因EGFP表达的分析,确定SARS假病毒能有效进入细胞,建立了可在BSL-2级实验室操作的SARS病毒中和试验技术平台。用该技术平台对不同免疫血清进行了中和抗体分析,并比较了基于假病毒和基于SARS活病毒的中和试验效果。结果显示:SARS假病毒和SARS活病毒两个中和试验系统获得中和抗体滴度变化趋势一致,表明本研究构建的SARS假病毒可替代SARS活病毒用于建立操作上安全的SARS病毒中和试验技术平台。  相似文献   

10.
构建SARS冠状病毒M蛋白膜内区(Mc蛋白)基因(Mc区)融合表达载体,表达并复性该蛋白。克隆Mc区,构建融合表达载体pET-32a(+)/Mc,融合表达Mc蛋白。纯化表达蛋白,采用逐步透析、降低蛋白浓度、加入氧化还原剂复性融合蛋白。用复性蛋白免疫兔产生抗血清,复性蛋白与SARS患者血清和健康人血清反应鉴定复性结果。结果显示,复性蛋白免疫家兔后产生抗血清,该复性蛋白与SARS患者血清特异结合,表明已成功复性该表达蛋白。为SARS疫苗和诊断试剂的研制奠定基础。  相似文献   

11.
The heat capacity plays a major role in the determination of the energetics of protein folding and molecular recognition. As such, a better understanding of this thermodynamic parameter and its structural origin will provide new insights for the development of better molecular design strategies. In this paper we have analyzed the absolute heat capacity of proteins in different conformations. The results of these studies indicate that three major terms account for the absolute heat capacity of a protein: (1) one term that depends only on the primary or covalent structure of a protein and contains contributions from vibrational frequencies arising from the stretching and bending modes of each valence bond and internal rotations; (2) a term that contains the contributions of noncovalent interactions arising from secondary and tertiary structure; and (3) a term that contains the contributions of hydration. For a typical globular protein in solution the bulk of the heat capacity at 25°C is given by the covalent structure term (close to 85% of the total). The hydration term contributes about 15 and 40% to the total heat capacity of the native and unfolded states, respectively. The contribution of non-covalent structure to the total heat capacity of the native state is positive but very small and does not amount to more than 3% at 25°C. The change in heat capacity upon unfolding is primarily given by the increase in the hydration term (about 95%) and to a much lesser extent by the loss of noncovalent interactions (up to ~5%). It is demonstrated that a single universal mathematical function can be used to represent the partial molar heat capacity of the native and unfolded states of proteins in solution. This function can be experimentally written in terms of the molecular weight, the polar and apolar solvent accessible surface areas, and the total area buried from the solvent. This unique function accurately predicts the different magnitude and temperature dependences of the heat capacity of both the native and unfolded states, and therefore of the heat capacity changes associated with folding/unfolding transitions. © 1995 Wiley-Liss, Inc.  相似文献   

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Paramyxovirus matrix protein is believed to play a crucial role in the assembly and maturation of the virus particle by bringing the major viral components together at the budding site in the host cell. The membrane association capability of many enveloped virus matrix proteins has been characterized to be their intrinsic property. In this work, we have characterized the membrane association of Rinderpest virus matrix (M) protein. The M protein of Rinderpest virus when expressed in the absence of other viral proteins is present both in the cytoplasm and plasma membrane. When expressed as GFP fusion protein, the M protein gets localized into plasma membrane protrusions. High salt and alkaline conditions resulted in partial dissociation of M protein from cell membrane. Thus, M protein behaves like an integral membrane protein although its primary structure suggests it to be a peripheral membrane protein.  相似文献   

14.
Improvement of protein stability in protein microarrays   总被引:1,自引:0,他引:1  
Protein stability in microarrays was improved using protein stabilizers. PEG 200 at 30% (w/v) was the most efficient stabilizer giving over 4-fold improvement in protein stability compared to without the stabilizer. PEG 200 above 10% (w/v) in the array solution prevented the evaporation of water in the sample and thereby improved protein stability in the microarray. When the streptavidin-biotin binding reaction was performed under optimized conditions, biotin-BSA-fluorescein isothiocyanate (FITC) was detected from 1 ng ml–1 to 5 g ml–1 by fluorescence analysis.  相似文献   

15.
A previously developed computer program for protein design, RosettaDesign, was used to predict low free energy sequences for nine naturally occurring protein backbones. RosettaDesign had no knowledge of the naturally occurring sequences and on average 65% of the residues in the designed sequences differ from wild-type. Synthetic genes for ten completely redesigned proteins were generated, and the proteins were expressed, purified, and then characterized using circular dichroism, chemical and temperature denaturation and NMR experiments. Although high-resolution structures have not yet been determined, eight of these proteins appear to be folded and their circular dichroism spectra are similar to those of their wild-type counterparts. Six of the proteins have stabilities equal to or up to 7kcal/mol greater than their wild-type counterparts, and four of the proteins have NMR spectra consistent with a well-packed, rigid structure. These encouraging results indicate that the computational protein design methods can, with significant reliability, identify amino acid sequences compatible with a target protein backbone.  相似文献   

16.
Barbany M  Morata J  Meyer T  Lois S  Orozco M  de la Cruz X 《Proteins》2012,80(9):2235-2249
Recent studies have shown how alternative splicing (AS), the process by which eukaryotic genes express more than one product, affects protein sequence and structure. However, little information is available on the impact of AS on protein dynamics, a property fundamental for protein function. In this work, we have addressed this issue using molecular dynamics simulations of the isoforms of two model proteins: glutathione S-transferase and ectodysplasin-A. We have found that AS does not have a noticeable impact on global or local structure fluctuations. We have also found that, quite interestingly, AS has a significant effect on the coupling between key structural elements such as surface cavities. Our results provide the first atom-level view of the impact of AS on protein dynamics, as far as we know. They can contribute to refine our present view of the relationship between AS and protein disorder and, more importantly, they reveal how AS may modify structural dynamic couplings in proteins.  相似文献   

17.
Proteins form arguably the most significant link between genotype and phenotype. Understanding the relationship between protein sequence and structure, and applying this knowledge to predict function, is difficult. One way to investigate these relationships is by considering the space of protein folds and how one might move from fold to fold through similarity, or potential evolutionary relationships. The many individual characterisations of fold space presented in the literature can tell us a lot about how well the current Protein Data Bank represents protein fold space, how convergence and divergence may affect protein evolution, how proteins affect the whole of which they are part, and how proteins themselves function. A synthesis of these different approaches and viewpoints seems the most likely way to further our knowledge of protein structure evolution and thus, facilitate improved protein structure design and prediction.  相似文献   

18.
Protein-fusion constructs have been used with great success for enhancing expression of soluble recombinant protein and as tags for affinity purification. Unfortunately the most popular tags, such as GST and MBP, are large, which hinders direct NMR studies of the fusion proteins. Cleavage of the fusion proteins often re-introduces problems with solubility and stability. Here we describe the use of N-terminally fused protein G (B1 domain) as a non-cleavable solubility-enhancement tag (SET) for structure determination of a dimeric protein complex. The SET enhances the solubility and stability of the fusion product dramatically while not interacting directly with the protein of interest. This approach can be used for structural characterization of poorly behaving protein systems, and would be especially useful for structural genomics studies.  相似文献   

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