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1.
将SARS患者的咽拭子感染VeroE6细胞 ,用电子显微技术等对SARS病毒进行了研究。结果表明 ,新分离到的病毒粒子没带囊膜时直径大多约 5 0nm ,带有囊膜的直径约 10 0nm。通过RT PCR等证明 ,该病毒是新的冠状病毒。这些病毒可与SARS康复患者的血清呈强烈的阳性反应 ,表明此新的冠状病毒是引起SARS的主要病原。文中还对病毒的发生机制和细胞中的分布进行了探讨。  相似文献   

2.
新型冠状病毒肺炎(COVID-19)在全球范围内持续肆虐,感染人数与日俱增.COVID-19的病毒SARS-CoV-2与2003年发生的严重急性呼吸系统综合症冠状病毒(SARS coronavirus,SARS-CoV)同属冠状病毒.本研究就COVID-19与SARS冠状病毒的差异以及两种冠状病毒的中间宿主进行分析和探讨,并对SARS冠状病毒中间宿主果子狸的关系进行分析,以期为从野生动物角度防控病毒疾病提供参考,也为了解冠状病毒的的传播途径提供借鉴.  相似文献   

3.
SARS冠状病毒基因组编码2种病毒蛋白酶,即木瓜样蛋白酶(PLpro)和3C样蛋白酶(3CLpro).其中,PLpro蛋白酶结构与功能研究是近年来冠状病毒分子生物学研究的热点之一. PLpro蛋白酶参与SARS冠状病毒1a(1ab)复制酶多聚蛋白N端部分的切割加工,是SARS冠状病毒复制酶复合体(RC)形成的重要调节蛋白分子;最新研究表明,SARS冠状病毒PLpro蛋白酶是一种病毒编码的去泛素化酶(DUB),对细胞蛋白具有明显去泛素化作用;而且对泛素(Ub)和泛素样分子ISG15均具有活性. PLpro蛋白酶对宿主抗病毒天然免疫反应具有负调节作用,是SARS冠状病毒的一种重要干扰素拮抗分子.PLpro蛋白酶是一种多功能病毒蛋白酶.本文结合作者课题组研究工作,对SARS冠状病毒PLpro蛋白酶结构和功能研究最新进展进行综述.  相似文献   

4.
阐明宿主细胞密度和病毒感染复数(MOI)对SARS冠状病毒增殖的影响,为SARS灭活疫苗的研究奠定基础。采用析因设计方法,考虑MOI(0.01、0.05和0.1)与细胞密度(2×104、4×104和8×104/cm2)2个3水平实验因素,在各水平组合条件下培养SARS病毒,以组织培养半数感染量(TCID50)作为观测指标,分析SARS冠状病毒滴度在不同增殖条件下的差异。结果表明,MOI、宿主细胞密度和二者之间的交互作用对SARS病毒滴度的影响分别具有非常显著性差异(F=12.70,P<0.01)、显著性差异(F=6.94,P<0.05)和非常显著性差异(F=8.22,P<0.01)。在0.01MOI和8×104/cm2条件下,病毒滴度达5.57×105TCID50/mL。说明SARS冠状病毒在培养细胞中的增殖能力显著依赖于宿主细胞密度、病毒感染复数和二者的交互作用。  相似文献   

5.
SARS病毒:非典型肺炎相关病毒   总被引:5,自引:0,他引:5  
SARS是目前在世界范围内流行的严重呼吸系统疾病。SARS病毒是有包膜的正链RNA病毒,属冠状病毒科,为新近分离鉴定的该疾病相关病原体。初步预测该病毒的复制周期与其他冠状病毒类似,但其细胞膜受体结合蛋白S的S1区、M跨膜糖蛋白等部分则存在较大的变异,可能是该病毒发生宿主改变的原因之一。此外,对SARS病毒的检测、临床诊断等方面也取得了一定的进展。  相似文献   

6.
本文利用生物信息学方法比较SARS病毒和其他冠状病毒基因组.通过数据库搜索,找出与SARS病毒基因组相似的核酸或蛋白质序列,并对相似序列进行比对,分析它们的共性和差异.结果表明,SARS病毒在基因组的组织上及结构蛋白质方面与现有冠状病毒有比较大的相似性,SARS病毒基因组与冠状病毒基因组相关.但是,SARS病毒基因组还存在一些特异性序列,ORF1a和S蛋白(特别是S1)的变化以及SARS-CoV特异性的非结构蛋白可能是SARS发病机理与传染特性区别于其他冠状病毒的分子基础.在全基因组水平上进行核酸单词出现频率分析,结果表明,SARS病毒远离已知的其他冠状病毒,单独成为一类.  相似文献   

7.
严重急性呼吸综合征(SARS)冠状病毒核蛋白的鉴定与分析   总被引:6,自引:1,他引:5  
利用蛋白质组学技术,对纯化的严重急性呼吸综合征(SARS)冠状病毒颗粒所含核蛋白进行初步分离与鉴定。质谱分析结果最终表明,SARS冠状病毒核蛋白的分子量位于47kD与52kD之间,所获得的SARS冠状病毒核蛋白的质谱分析数据覆盖了所预测病毒核蛋白氨基酸序列的87%,且符合率为100%。从而首次从蛋白质水平对SARS冠状病毒核蛋白的氨基酸序列进行了证实。  相似文献   

8.
siRNA对SARS冠状病毒复制的抑制作用   总被引:7,自引:0,他引:7  
为探讨siRNA在哺乳动物细胞中对SARS冠状病毒复制的抑制作用,针对BJ0 1株SARS冠状病毒复制酶基因(Pol)和刺突蛋白基因(S) ,设计4个siRNA ,并构建相应的siRNA表达载体及克隆细胞系.利用间接免疫荧光法及实时定量反转录PCR法,检测所设计的siRNA对SARS冠状病毒复制的抑制作用.结果表明,针对Pol基因的siRNA(psOe)在Vero细胞中可阻断BJ0 1株SARS病毒RNA的复制及其蛋白的表达.该结果为深入阐明SARS冠状病毒的致病机理及探讨SARS病毒防治新途径奠定了基础.  相似文献   

9.
对牛痘病毒弱毒株表达的SARS冠状病毒纤突蛋白(Spike protein,S)的免疫原性进行分析与比较.以减毒痘病毒(WR株)为载体重组了SARS冠状病毒全长S基因(rWR-SARS-S).SDS-PAGE和Western blot试验表明,迁移率约为190kD的重组SARS S蛋白可在HeLa细胞中表达,而且可以被鸡抗SARS全病毒高免血清识别,具有特异免疫反应原性.进一步研究表明,rWR-SARS-S感染的细胞在IFA试验中可与鸡抗SARS的高免血清发生特异反应,具有良好的敏感性和特异性.以104PFU的rWR-SARS-S免疫BALB/c小鼠产生的抗体在间接ELISA试验中可以被S蛋白识别,产生特异抗原抗体反应.利用痘病毒表达的SARS冠状病毒S蛋白具有良好的抗原性和生物学活性,可替代SARS冠状病毒全病毒,为研究安全、敏感和特异的重组诊断抗原奠定了重要基础.  相似文献   

10.
4株SARS冠状病毒中国分离株3′非编码区的序列测定及分析   总被引:3,自引:0,他引:3  
分别对 4株SARS冠状病毒中国株基因组 3′非编码区序列进行测定和分析 ,然后应用Blast、DNAstarGeneQuest等软件对中国株的这段序列与其它SARS和非SARS冠状病毒的序列进行比较 .结果显示 ,所测 4株SARS冠状病毒中国分离株的 3′非编码区长度均为 339nt,与其它已测序SARS冠状病毒的相应序列完全一致 .SARS冠状病毒的非编码区含有冠状病毒保守的“伪结”结构 .在距末端 138nt处还存在 1个长约 32nt的Ⅱ型茎 环结构的序列 ,该序列在其它已知人冠状病毒中并不存在 ,而与禽传染性支气管炎病毒和星状病毒中的对应序列高度同源 .  相似文献   

11.
目的综合对比SARS-CoV感染的恒河猴、布氏田鼠及Lewis大鼠的病理学、免疫学以及病毒的复制与外排情况的变化,来探讨此三种动物在建立SARS模型上的特点。方法SARS病毒感染8只恒河猴、9只Lewis大鼠和20只布氏田鼠,在感染后不同时间安乐死动物,应用光镜对动物的各脏器进行病理观察研究;用病毒分离和RT-PCR方法检测病毒外排与复制的情况;用ELISA法检测动物产生特异性抗体情况。结果在SARS-CoV感染恒河猴、Lewis大鼠和布氏田鼠后,肺组织均出现一定的与人类SARS疾病相似的病理改变,在动物体内均可检测到活病毒或病毒核酸,并可检测到特异性IgG抗体的存在。在病死率上布氏田鼠最高;在病毒的复制与外排方面恒河猴的检出率最高,持续时间最长;在抗体产生情况上恒河猴与Lewis大鼠基本相似;在病理变化上恒河猴病变最重且最为复杂,与人类SARS疾病的病理变化最为接近。结论布氏田鼠,Lewis大鼠,特别是恒河猴动物模型可以用于SARS发病机制、疫苗和药物的研发,恒河猴动物模型是目前研究SARS疾病最理想的动物模型。  相似文献   

12.
In terms of its highly pathogenic nature, there remains a significant need to further define the immune pathology of SARS-coronavirus (SARS-CoV) infection, as well as identify correlates of immunity to help develop vaccines for severe coronaviral infections. Here we use a SARS-CoV infection-reinfection ferret model and a functional genomics approach to gain insight into SARS immunopathogenesis and to identify correlates of immune protection during SARS-CoV-challenge in ferrets previously infected with SARS-CoV or immunized with a SARS virus vaccine. We identified gene expression signatures in the lungs of ferrets associated with primary immune responses to SARS-CoV infection and in ferrets that received an identical second inoculum. Acute SARS-CoV infection prompted coordinated innate immune responses that were dominated by antiviral IFN response gene (IRG) expression. Reinfected ferrets, however, lacked the integrated expression of IRGs that was prevalent during acute infection. The expression of specific IRGs was also absent upon challenge in ferrets immunized with an inactivated, Al(OH)3-adjuvanted whole virus SARS vaccine candidate that protected them against SARS-CoV infection in the lungs. Lack of IFN-mediated immune enhancement in infected ferrets that were previously inoculated with, or vaccinated against, SARS-CoV revealed 9 IRG correlates of protective immunity. This data provides insight into the molecular pathogenesis of SARS-CoV and SARS-like-CoV infections and is an important resource for the development of CoV antiviral therapeutics and vaccines.  相似文献   

13.
Coronaviruses (CoVs) are important human and animal pathogens that induce fatal respiratory, gastrointestinal and neurological disease. The outbreak of the severe acute respiratory syndrome (SARS) in 2002/2003 has demonstrated human vulnerability to (Coronavirus) CoV epidemics. Neither vaccines nor therapeutics are available against human and animal CoVs. Knowledge of host cell proteins that take part in pivotal virus-host interactions could define broad-spectrum antiviral targets. In this study, we used a systems biology approach employing a genome-wide yeast-two hybrid interaction screen to identify immunopilins (PPIA, PPIB, PPIH, PPIG, FKBP1A, FKBP1B) as interaction partners of the CoV non-structural protein 1 (Nsp1). These molecules modulate the Calcineurin/NFAT pathway that plays an important role in immune cell activation. Overexpression of NSP1 and infection with live SARS-CoV strongly increased signalling through the Calcineurin/NFAT pathway and enhanced the induction of interleukin 2, compatible with late-stage immunopathogenicity and long-term cytokine dysregulation as observed in severe SARS cases. Conversely, inhibition of cyclophilins by cyclosporine A (CspA) blocked the replication of CoVs of all genera, including SARS-CoV, human CoV-229E and -NL-63, feline CoV, as well as avian infectious bronchitis virus. Non-immunosuppressive derivatives of CspA might serve as broad-range CoV inhibitors applicable against emerging CoVs as well as ubiquitous pathogens of humans and livestock.  相似文献   

14.
SARS冠状病毒(SARS-CoV) 非结构蛋白NSP3编码的木瓜蛋白酶样蛋白酶(PLpro)对泛素样分子(Ubl) 具有去泛素化酶(DUB)活性,但目前有关NSP3 DUB活性研究的报道甚少. 本研究构建包含Nsp3基因 N末端不同结构域的突变体,并检测NSP3及其一系列突变体对类泛素分子ISG15和SUMO所修饰蛋白质分子的作用特性. 实验结果表明,NSP3及其突变体NSP3AD,NSP3AE,NSP3AF具有一定的去ISG15活性,而其突变体NSP3AC则没有去ISG15 (DeISGylation) 活性. 研究结果提示,SARS NSP3具有一定的体内去ISG15活性,并且这种活性主要依赖于Nsp3基因编码的PLpro. 但SARS NSP3及其突变体NSP3AC,NSP3AD,NSP3AE和NSP3AF并不具有去SUMO (DeSUMOylation) 活性. SARS冠状病毒NSP3对类泛素样分子作用特性的研究为后续NSP3的生物学特性及其对干扰素通路的调控研究奠定了基础.  相似文献   

15.
In 2002, severe acute respiratory syndrome-associated coronavirus (SARS-CoV) emerged in humans, causing a global epidemic. By phylogenetic analysis, SARS-CoV is distinct from known CoVs and most closely related to group 2 CoVs. However, no antigenic cross-reactivity between SARS-CoV and known CoVs was conclusively and consistently demonstrated except for group 1 animal CoVs. We analyzed this cross-reactivity by an enzyme-linked immunosorbent assay (ELISA) and Western blot analysis using specific antisera to animal CoVs and SARS-CoV and SARS patient convalescent-phase or negative sera. Moderate two-way cross-reactivity between SARS-CoV and porcine CoVs (transmissible gastroenteritis CoV [TGEV] and porcine respiratory CoV [PRCV]) was mediated through the N but not the spike protein, whereas weaker cross-reactivity occurred with feline (feline infectious peritonitis virus) and canine CoVs. Using Escherichia coli-expressed recombinant SARS-CoV N protein and fragments, the cross-reactive region was localized between amino acids (aa) 120 to 208. The N-protein fragments comprising aa 360 to 412 and aa 1 to 213 reacted specifically with SARS convalescent-phase sera but not with negative human sera in ELISA; the fragment comprising aa 1 to 213 cross-reacted with antisera to animal CoVs, whereas the fragment comprising aa 360 to 412 did not cross-react and could be a potential candidate for SARS diagnosis. Particularly noteworthy, a single substitution at aa 120 of PRCV N protein diminished the cross-reactivity. We also demonstrated that the cross-reactivity is not universal for all group 1 CoVs, because HCoV-NL63 did not cross-react with SARS-CoV. One-way cross-reactivity of HCoV-NL63 with group 1 CoVs was localized to aa 1 to 39 and at least one other antigenic site in the N-protein C terminus, differing from the cross-reactive region identified in SARS-CoV N protein. The observed cross-reactivity is not a consequence of a higher level of amino acid identity between SARS-CoV and porcine CoV nucleoproteins, because sequence comparisons indicated that SARS-CoV N protein has amino acid identity similar to that of infectious bronchitis virus N protein and shares a higher level of identity with bovine CoV N protein within the cross-reactive region. The TGEV and SARS-CoV N proteins are RNA chaperons with long disordered regions. We speculate that during natural infection, antibodies target similar short antigenic sites within the N proteins of SARS-CoV and porcine group 1 CoVs that are exposed to an immune response. Identification of the cross-reactive and non-cross-reactive N-protein regions allows development of SARS-CoV-specific antibody assays for screening animal and human sera.  相似文献   

16.
Zhang H  Wang G  Li J  Nie Y  Shi X  Lian G  Wang W  Yin X  Zhao Y  Qu X  Ding M  Deng H 《Journal of virology》2004,78(13):6938-6945
Severe acute respiratory syndrome (SARS) is a life-threatening disease caused by a newly identified coronavirus (CoV), SARS-CoV. The spike (S) glycoprotein of CoV is the major structural protein responsible for induction of host immune response and virus neutralization by antibodies. Hence, knowledge of neutralization determinants on the S protein is helpful for designing protective vaccines. To analyze the antigenic structure of the SARS-CoV S2 domain, the carboxyl-terminal half of the S protein, we first used sera from convalescent SARS patients to test the antigenicity of 12 overlapping fragments spanning the entire S2 and identified two antigenic determinants (Leu 803 to Ala 828 and Pro 1061 to Ser 1093). To determine whether neutralizing antibodies can be elicited by these two determinants, we immunized animals and found that both of them could induce the S2-specific antisera. In some animals, however, only one determinant (Leu 803 to Ala 828) was able to induce the antisera with the binding ability to the native S protein and the neutralizing activity to the SARS-CoV pseudovirus. This determinant is highly conserved across different SARS-CoV isolates. Identification of a conserved antigenic determinant on the S2 domain of the SARS-CoV S protein, which has the potential for inducing neutralizing antibodies, has implications in the development of effective vaccines against SARS-CoV.  相似文献   

17.
重症急性呼吸综合征(SARS)是由SARS冠状病毒(SARS-CoV)引起的一种急性传染病,在其序列被测出后几个月内人们就找到了SARS-CoV的受体血管紧张素转换酶2(ACE2)。因病毒受体与病毒入侵细胞密切相关,因而有必要深入研究ACE2与SARS-CoV之间的关系。本文总结了ACE2在各组织器官的分布及功能,分析了ACE2基因的变异与病毒进入及SARS疾病严重程度之间的关系、ACE2基因的表达水平与病毒进入及SARS疾病严重程度之间的关系。这些研究将为理解SARS-CoV与ACE2之间的相互作用及设计针对ACE2的抗SARS药物提供重要的理论依据。  相似文献   

18.
In 2002, severe acute respiratory syndrome (SARS)-coronavirus (CoV) appeared as a novel human virus with high similarity to bat coronaviruses. However, while SARS-CoV uses the human angiotensin-converting enzyme 2 (ACE2) receptor for cellular entry, no coronavirus isolated from bats appears to use ACE2. Here we show that signatures of recurrent positive selection in the bat ACE2 gene map almost perfectly to known SARS-CoV interaction surfaces. Our data indicate that ACE2 utilization preceded the emergence of SARS-CoV-like viruses from bats.  相似文献   

19.
[目的]阐明SARS病毒感染后能否再次感染,疫苗产生的抗体中长期保护效果,被动免疫是否真正安全有效等,为防治SARS提供实验依据。[方法]实验分4组,分别为一组(SARS恒河猴恢复组):用感染SARS-CoV发病12月后的4只恒河猴,均有中和抗体产生。二组(SARS食蟹猴恢复组):用感染SARS-CoV发病12月后的3只食蟹猴,均有中和抗体产生。三组(SARS血清输入恒河猴组):3只恒河猴,病毒接种时中和抗体阴性。病毒接种两天后输入抗体阳性血清(恒河猴血清,感染获得,效价为:1:128),用量10ml/只,分别经肌肉和静脉输入,各5ml。四组(恒河猴SARS-CoV感染组):2只恒河猴,病毒接种时中和抗体阴性。SARSCo-V经鼻腔接种,在感染的第1天开始到7天安乐死时,不同时间取咽拭子、血液和脏器,进行病毒分离,RT-PCR检测和中和抗体测定。[结果]一组(SARS恒河猴恢复组):接种SARS-CoV后未见发热等异常临床表现。血清生化无ALT、LDH、CK、总蛋白和血清白蛋白异常。3只猴在接种病毒后的咽拭子中,RT-PCR分别未检出、第1天检出、第1-3天中检出病毒。第2、5、7天咽拭子中、7天安乐死时血、肺、肝、脾和淋巴结等组织中病毒分离均为阴性。2只猴肺组织病理学检查见轻度肺炎。二组(SARS食蟹猴恢复组):接种3只未见任何不良临床表现,血清生化5项正常。3只猴在接种病毒后的咽拭子标本中,RT-PCR分别未检出SARS病毒、在第1-2天检出、在第1-3天中检出病毒。第2、5、7天咽拭子中、7天安乐死时血、肺、肝、脾和淋巴结等组织中病毒分离均为阴性。3只猴肺组织病理学检查见轻度肺炎等。三组(SARS血清输入恒河猴组):3只恒河猴在病毒接种的第2-5天时有一过性的体温升高,3940℃。血清生化5项正常。3只猴在接种病毒后的咽拭子标本中,RT-PCR分别在第1-3、第1-4天和第1-2天检出SARS病毒。2只猴第7天咽拭子中病毒分离阳性。另外1只在第2、5、7天咽拭子中、7天安乐死时血、肺、肝、脾和淋巴结等组织中病毒分离均为阴性。3只猴肺组织病理学检查见轻度肺炎等。四组(SARS恒河猴SARS-CoV感染组):2只猴病毒接种后,第2-4天时有一过性的体温升高,3940℃。2只进行接种病毒后1-7天安乐死时,RT-PCR在恒河猴的咽拭子标本中连续检出SARS病毒。在第2、5天咽拭子中、7天安乐死时肺组织中病毒分离阳性。2只猴肺等组织病理学检查发现肺组织表面局部有轻度发灰实变现象,可见到间质性肺炎病变,内皮细胞受损,出血和水肿。大多数肺泡没有完整的内衬细胞残留,肺泡间隔变宽并被以吞噬细胞为主的单核炎症细胞浸润,同SARS肺炎改变。实验表明,前期感染产生中和抗体的恒河猴、食蟹猴再次感染病毒,和模型对照猴比较,动物肺组织等只出现轻微或无病理变化,RT-PCR检出时间大大缩短,病毒培养未能分离出病毒,所有这些指标,均证实中和抗体有明显的保护作用,是有效的。被动免疫从结果来看,有一定的作用,但保护作用弱。  相似文献   

20.
Coronaviruses (CoV) mature by a budding process at intracellular membranes. Here we showed that the major surface protein S of a porcine CoV (transmissible gastroenteritis virus) is not transported to the cell surface but is retained intracellularly. Site-directed mutagenesis indicated that a tyrosine-dependent signal (YXXI) in the cytoplasmic tail is essential for intracellular localization of the S protein. Surface expression of mutant proteins was evident by immunofluorescence analysis and surface biotinylation. Intracellularly retained S proteins only contained endoglycosidase H-sensitive N-glycans, whereas mutant proteins that migrated to the plasma membrane acquired N-linked oligosaccharides of the complex type. Corresponding tyrosine residues are present in the cytoplasmic tails of the S proteins of other animal CoV but not in the tail portion of the S protein of severe acute respiratory syndrome (SARS)-CoV. Changing the SEPV tetrapeptide in the cytoplasmic tail to YEPI resulted in intracellular retention of the S protein of SARS-CoV. As the S proteins of CoV have receptor binding and fusion activities and are the main target of neutralizing antibodies, the differences in the transport behavior of the S proteins suggest different strategies in the virus host interactions between SARS-CoV and other coronaviruses.  相似文献   

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