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1.
本文对山西狭苞橐吾中倍半萜类化合物的生物学活性进行了筛选。用不同浓度的4种艾里莫芬烷型倍半萜干预携带有P53和SV40肿瘤病毒大T抗原基因的AH109菌液,采用酵母双杂交系统的β-半乳糖苷酶活力测定方法,分析了4种倍半萜对P53蛋白与SV40大T抗原之间相互作用力的影响。发现8β-methoxyeremophil-7(11)-ene-12,8α(4β,6α)-diolide(1)和8β-hydroxyl-6β-angloxyeremophil-7(11)-ene-12,8α-olide-15-oic acid(2)对P53蛋白及SV40-大T抗原相互作用没有显著影响,但是中、高浓度的furanoeremophilan-4β,6α-olide(3)和低、中、高浓度的8β-hydroxyeremophil-7(11)-ene-12,8α(4β,6α)-diolide(4)对P53蛋白与SV40大T抗原之间相互作用有抑制效应。说明从山西狭苞橐吾中提取出的化合物3和4对酵母双杂交系统中的P53和SV40-大T抗原的相互作用有生物学抑制活性。  相似文献   

2.
P53蛋白与SV40大T抗原之间相互作用的研究   总被引:1,自引:0,他引:1  
为确定一种定量研究酵母体内蛋白质-蛋白质之间相互作用的简便、快捷的方法,为抗癌小分子化合物药物筛选提供一条可行性途径。本文选择P53蛋白与SV40大T抗原为靶蛋白对,首先用酵母双杂交系统(LiAc法质粒共转化酵母细胞)方法定性证明了两者之间存在相互作用,然后通过α-半乳糖苷酶活力定量测定了相互作用力的大小,并确定了最佳酶活测定时间,并与β-半乳糖苷酶活力测定进行了比较,认为α-关乳糖苷酶活力定量测定是研究蛋白质-蛋白质间相互作用的一种更加简便快捷的方法。  相似文献   

3.
目的建立猴外周血单核细胞SV40DNA的PCR检测方法,对猕猴SV40T抗原基因进行检测。方法使用PCR方法对分别来自野外(云南宁蒗71只、景东60只)及笼养猕猴(64只)的SV40大T抗原基因进行检测,同时对扩增出的阳性结果进行测序。结果在195份样本中,有4只来自野生猴样本扩增出SV40大T抗原基因(3.1%,4/131),1只来自笼养猴样本扩增出SV40大T抗原基因(1.6%,1/64)。测序结果显示:猴血样本扩增片段序列与GenBank中的SV40大T抗原C-末端的基因序列片段有15个核苷酸不同(3.3%差异),与SV40.776标准株的序列基本一致,但SV40—776在nt3020处有一缺口。结论云南野生及笼养猕猴猴群均能检出SV40T抗原基因。因此建立SV40病毒的DNA检测技术,对用于科研及疫苗生产的实验猕猴的病毒学质量控制具有重要意义。  相似文献   

4.
SV40即猿猴病毒40 (simian virus 40),是DNA肿瘤病毒的原型代表,其基因结构为共价闭合环状双股DNA分子,标准参考株SV40-776含5243个核甘酸。不同分离株bp数略有差异。SV40病毒为强DNA肿瘤病毒,具有使啮齿类动物及人源多种组织培养细胞永生化和转化能力。SV40病毒早期基因编码两个早期非结构蛋白即小T抗原(ST-ag、)和大T抗原(LT-ag),与病毒诱导的肿瘤发生有关。近年来研究表明,从猴体组织新分离的SV40株与实验室参考株SV40-776及SV40-B株相比较,具有明显的遗传异质性,并且SV40遗传变  相似文献   

5.
DNA肿瘤病毒蛋白与p53蛋白的相互作用   总被引:2,自引:0,他引:2  
钟叔平  姚开泰 《生命科学》1998,10(3):141-145
大多数人类肿瘤发生p53基因突变,突变性p53蛋白功能失活、半衰期延长,并在肿瘤细胞中大量累积,一般认为,p53基因突变是肿瘤发生的主要因素之一。但是,近年也发现一些人类肿瘤细胞存在p53蛋白累积而无基因突变。这种现象与DNA肿瘤病毒密切相关,业已证明:SV-40T抗原、腺病毒E1B55-kD、E4orf6蛋白、HBVX蛋白、HPVE6蛋白、HCMVIE84蛋白、EBVBZLF1和EBNA5蛋白均与p53蛋白结合而使其功能失活。这表明:p53基因突变并非是p53蛋白功能失活的唯一原因。p53蛋白与病毒蛋白或细胞蛋白相互作用可能是其功能失活的另一主要原因?本文就近年国外有关病毒蛋白与p53蛋白相互作用的研究加以概述;试图引起人们的注意。  相似文献   

6.
P68蛋白是一种高度保守性的细胞核抗原,它对细胞生长和分裂具有重要的调节作用。在所有实验过的处于分裂期的哺乳和两栖类动物细胞中均能测出P68,而静止期细胞则无。该蛋白在核内呈独特的颗粒样分布,小鼠静止期成纤维细胞经血清刺激4h后能诱导P68表达。用抗SV40大T单克隆抗体PA6204鉴定表明:P68与DNA肿瘤病毒核癌基因SV40大T抗原具有免疫交叉反应性。实验从不同cDNA文库筛选P68蛋白的cDNA克隆,再亚克隆到M13上,然后用Sanger法测序,共测定了2088bp的DNA顺序,由此推测出P68蛋白的氨基酸顺序。与瑞士Prot数据库的其他蛋白质比较后发现:P68氨基酸顺序  相似文献   

7.
一株高度变异的中国SV40分离株的全基因组序列分析   总被引:2,自引:0,他引:2  
对SV40中国云南分离株YNQD38进行了全基因组核苷酸序列测定。覆盖了整个基因组的9个重叠的基因片段被扩增和测序,与其它SV40株进行了序列比对并基于全基因序列建立了遗传进化树。结果显示:基因组全长5125bp,基因组构成与其它SV40毒株相似,均有6个开放读码框架和1个调控区。YNQD38与已被证实高度保守的其它SV40比,全基因组核苷酸同源性仅为91.0%。在SV40的保守区VP1、VP2、VP3、小t抗原(t-ag)和部分大T抗原(不包括大T抗原C末端)区,YNQD38与其它SV40之间核苷酸同源性分别为90.7%~91.1%、91.7%~92.0%、90.2%~90.8%、92.8%~93.3%、88.5%~89.7%。在SV40的可变区大T抗原C末端(T-ag-C)编码区,YNQD38同源性更低,仅为65.7%~74.3%。YNQD38发生在保守区的核苷酸变异多为无义突变,而发生在变异区的核苷酸变异多为有义突变。YNQD38的调控区缺少一个完整的72bp增强子,这种特别的调控区的结构以前未见报道。基于整个基因组构建的进化树显示该株病毒形成了一个独特的组。以上结果表明YNQD38是目前报道的SV40中变异最大的一株,而且也是第一株被完整测序的SV40中国株。这个报道不仅为SV40中国株的基础研究提供了一个完整清楚的分子生物学资料,还对这样一株高度变异的SV40能否成为人类致病因子进行了初步探讨。  相似文献   

8.
利用DNA结合免疫分析证明,编码人U_1和U_2 snRNA基因的5′端区域含有与SV40 T抗原特异结合的序列。SV40 T抗原与U_2基因的亲和力大于U_1基因。DNasel足印(footprinting)分析取得与DNA结合免疫分析一致的结果。U_1和U_2基因的5′端区域含有能被T抗原所保护的,免于DNasel降解的序列。这两个基因的两条链上都含有约30bp长的DNA被T抗原所保护。U_1基因被保护的区域在-11bp—-42bp之间,而U_2基因被保护区域是在-58bp—-90bp之间。  相似文献   

9.
以含绿色荧光蛋白(GFP)基因的质粒pSK100-DS、含切割对虾杆状病毒基因的核酶Rz1的质粒pRGRz1、含核酶Rz2的质粒pRGRz2和转基因空质粒pcDNA3为基础,把绿色荧光蛋白GFP基因克隆于pcDNA3的SV40启动了下面,由SV40启动子控制含四个两种核酸基因的四联体克隆于pcDNA3的多克隆位点区,由T7启动子控制,构建成含两个Rz1、两个Rz2和GFP基因的转基因质粒pGTR,以用于转基因抗病毒对虾的研究.  相似文献   

10.
以含绿色荧光蛋白(GFP)基因的质粒pSK100-DS、含切割对虾杆状病毒基因的核酶Rz1的质粒pRGRzl、含核酶Rz2的质粒pRGRz2和转基因空质粒pcDNA3为基础,把绿色荧光蛋白GFP基因克隆于pcDNA3的SV40启动了下面,由SV40启动子控制,含四个两种核酸基因的四联体克隆于pcDNA3的多克隆位点区,由T7启动子控制,构建成含两个Rz1、两个Rz2和GFP基因的转基因质粒pGTR,以用于转基因抗病毒对虾的研究。  相似文献   

11.
It is known that large T antigen, the regulatory protein encoded by Simian virus 40 (SV40), forms tight complexes with the cellular p53 protein in SV40-transformed rodent cells. Using immunoaffinity procedures we have purified large T antigen and, in separate experiments, the cellular p53 protein. The two proteins formed complexes in vitro which bound well to double-stranded DNA fragments although in a sequence-unspecific manner. Free, uncomplexed T antigen readily converted double-stranded DNA into a single-stranded form whereas in-vitro-formed p53-T-antigen complexes were inactive in this reaction. We conclude that one function of p53 in SV40-transformed mouse cells could be the inhibition of the replication initiating activity of T antigen.  相似文献   

12.
Small DNA tumor viruses such as simian virus 40 (SV40) and polyomavirus (Py) take advantage of host cell proteins to transcribe and replicate their DNA. Interactions between the viral T antigens and host proteins result in cell transformation and tumor induction. Large T antigen of SV40 interacts with p53, pRb/p107/p130 family members, and the cyclic AMP-responsive element-binding protein (CREB)-binding protein (CBP)/p300. Py large T antigen is known to interact only with pRb and p300 among these proteins. Here we report that Py large T binds to CBP in vivo and in vitro. In co-transfection assays, Py large T inhibits the co-activation functions of CBP/p300 in CREB-mediated transactivation but not in NF-kappa B-mediated transactivation. p53 appears not to be involved in the functions of CREB-mediated transactivation and is not essential for large T:CBP interaction. Mutations introduced into a region of Py large T with homology to adenovirus E1A and SV40 large T prevent binding to the co-activators. These mutant large T antigens fail to inhibit CREB-mediated transactivation. The CBP/p300-binding Py mutants are able to transform established rat embryo fibroblasts but are restricted in their ability to induce tumors in the newborn mouse, indicating that interaction of large T with the co-activators may be essential for virus replication and spread in the intact host.  相似文献   

13.
We studied the ability of activated Ha-ras to cooperate with simian virus 40 (SV40) in the transformation of nonestablished rat embryo fibroblasts. Cotransfection with Ha-ras greatly accelerated the rate of focus induction by wild-type SV40. Moreover, a series of transformation-defective SV40 mutants could be partially complemented by Ha-ras. This was true not only for mutants retaining an intact N-terminal immortalization-competent domain, but also for a nonkaryophilic SV40 mutant. In the latter case, all detectable T antigen was cytoplasmic, indicating that efficient transformation can be achieved through the interaction of two nonnuclear proteins. By employing cell lines derived with various SV40 mutants, it was determined that the ability to complex with p53 depends on the integrity of a relatively large region in the C-terminal half of large T. Finally, we report that nonkaryophilic SV40 large T forms a complex with the major heat shock protein HSP70, and we discuss its possible implications.  相似文献   

14.
D I Linzer  A J Levine 《Cell》1979,17(1):43-52
SV40 infection or transformation of murine cells stimulated the production of a 54K dalton protein that was specifically immunoprecipitated, along with SV40 large T and small t antigens, with sera from mice or hamsters bearing SV40-induced tumors. The same SV40 anti-T sera immunoprecipitated a 54K dalton protein from two different, uninfected murine embryonal carcinoma cell lines. These 54K proteins from SV40-transformed mouse cells and the uninfected embryonal carcinomas cells had identical partial peptide maps which were completely different from the partial peptide map of SV40 large T antigen. An Ad2+ND4-transformed hamster cell line also expressed a 54K protein that was specifically immunoprecipitated by SV40 T sera. The partial peptide maps of the mouse and hamster 54K protein were different, showing the host cell species specificity of these proteins. The 54K hamster protein was also unrelated to the Ad2+ND4 SV40 T antigen. Analogous proteins immunoprecipitated by SV40 T sera, ranging in molecular weight from 44K to 60K, were detected in human and monkey SV40-infected or -transformed cells. A wide variety of sera from hamsters and mice bearing SV40-induced tumors immunoprecipitated the 54K protein of SV40-transformed cells and murine embryonal carcinoma cells. Antibody produced by somatic cell hybrids between a B cell and a myeloma cell (hybridoma) against SV40 large T antigen also immunoprecipitated the 54K protein in virus-infected and -transformed cells, but did not do so in the embryonal carcinoma cell lines. We conclude that SV40 infection or transformation of mouse cells stimulates the synthesis or enhances the stability of a 54K protein. This protein appears to be associated with SV40 T antigen in SV40-infected and -transformed cells, and is co-immunoprecipitated by hybridomas sera to SV40 large T antigen. The 54K protein either shares antigenic determinants with SV40 T antigen or is itself immunogenic when in association with SV40 large T antigen. The protein varies with host cell species, and analogous proteins were observed in hamster, monkey and human cells. The role of this protein in transformation is unclear at present.  相似文献   

15.
Simian virus (SV) 40 large T antigen can both induce tumors and inhibit cellular differentiation. It is not clear whether these cellular changes are synonymous, sequential, or distinct responses to the protein. T antigen is known to bind to p53, to the retinoblastoma (Rb) family of tumor suppressor proteins, and to other cellular proteins such as p300 family members. To test whether SV40 large T antigen inhibits cellular differentiation in vivo in the absence of cell cycle induction, we generated transgenic mice that express in the lens a mutant version of the early region of SV40. This mutant, which we term E107KDelta, has a deletion that eliminates synthesis of small t antigen and a point mutation (E107K) that results in loss of the ability to bind to Rb family members. At embryonic day 15.5 (E15.5), the transgenic lenses show dramatic defects in lens fiber cell differentiation. The fiber cells become post-mitotic, but do not elongate properly. The cells show a dramatic reduction in expression of their beta- and gamma-crystallins. Because CBP and p300 are co-activators for crystallin gene expression, we assayed for interactions between E107KDelta and CBP/p300. Our studies demonstrate that cellular differentiation can be inhibited by SV40 large T antigen in the absence of pRb inactivation, and that interaction of large T antigen with CBP/p300 may be enhanced by a mutation that eliminates the binding to pRb.  相似文献   

16.
The transforming proteins of DNA tumor viruses SV40, adenovirus and human papillomaviruses (HPV) bind the retinoblastoma and p53 cell cycle regulatory proteins. While the binding of SV40 large T antigen and the adenovirus E1B 55 kDa protein results in the stabilization of the p53 protein, the binding of HPV16 and 18 E6 results in enhanced degradation in vitro. To explore the effect of viral proteins on p53 stability in vivo, we have examined cell lines immortalized in tissue culture by HPV18 E6 and E7 or SV40 large T antigen, as well as cell lines derived from cervical neoplasias. The half-life of the p53 protein in non-transformed human foreskin keratinocytes in culture was found to be approximately 3 h while in cell lines immortalized by E6 and E7, p53 protein half-lives ranged from 2.8 h to less than 1 h. Since equivalent levels of E6 were found in these cells, the range in p53 levels observed was not a result of variability in amounts of E6. In keratinocyte lines immortalized by E7 alone, the p53 half-life was found to be similar to that in non-transformed cells; however, it decreased to approximately 1 h following supertransfection of an E6 gene. These observations are consistent with an interaction of E6 and p53 in vivo resulting in reductions in the stability of p53 ranging between 2- and 4-fold. We also observed that the expression of various TATA containing promoters was repressed in transient assays by co-transfection with plasmids expressing the wild-type p53 gene.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

17.
Initiation of cell-free simian virus 40 (SV40) DNA replication requires the interaction of DNA polymerase alpha/primase with a preinitiation complex containing the viral T antigen and cellular proteins, replication protein A, and topoisomerase I or II. To further understand the molecular mechanisms of the transition from preinitiation to initiation, the intermolecular interaction between human DNA polymerase alpha and T antigen was investigated. We have demonstrated that the human DNA polymerase alpha catalytic polypeptide is able to associate with SV40 large T antigen directly under physiological conditions. A physical association between these two proteins was detected by coimmunoprecipitation with monoclonal antibodies from insect cells coinfected with recombinant baculoviruses. A domain of human polymerase alpha physically interacting with T antigen was identified within the amino-terminal region from residues 195 to 313. This domain of human polymerase alpha was able to form a nonproductive complex with T antigen, causing inhibition of the SV40 DNA replication in vitro. Kinetics of the inhibition indicated that this polymerase domain can inhibit viral replication only during the preinitiation stage. Extra molecules of T antigen could partially overcome the inhibition only prior to initiation complex formation. The data support the conclusion that initiation of SV40 DNA replication requires the physical interaction of T antigen in the preinitiation complex with the amino-terminal domain of human polymerase alpha from amino acid residues 195 to 313.  相似文献   

18.
An expression vector utilizing the enhancer and promoter region of the simian virus 40 (SV40) DNA regulating a murine p53 cDNA clone was constructed. The vector produced murine p53 protein in monkey cells identified by five different monoclonal antibodies, three of which were specific for the murine form of p53. The murine p53 produced in monkey cells formed an oligomeric protein complex with the SV40 large tumor antigen. A large number of deletion mutations, in-frame linker insertion mutations, and linker insertion mutations resulting in a frameshift mutation were constructed in the cDNA coding portion of the p53 protein expression vector. The wild-type and mutant p53 cDNA vectors were expressed in monkey cells producing the SV40 large T antigen. The conformation and levels of p53 protein and its ability to form protein complexes with the SV40 T antigen were determined by using five different monoclonal antibodies with quite distinct epitope recognition sites. Insertion mutations between amino acid residues 123 and 215 (of a total of 390 amino acids) eliminated the ability of murine p53 to bind to the SV40 large T antigen. Deletion (at amino acids 11 through 33) and insertion mutations (amino acids 222 through 344) located on either side of this T-antigen-binding protein domain produced a murine p53 protein that bound to the SV40 large T antigen. The same five insertion mutations that failed to bind with the SV40 large T antigen also failed to react with a specific monoclonal antibody, PAb246. In contrast, six additional deletion and insertion mutations that produced p53 protein that did bind with T antigen were each recognized by PAb246. The proposed epitope for PAb246 has been mapped adjacent (amino acids 88 through 109) to the T-antigen-binding domain (amino acids 123 through 215) localized by the mutations mapped in this study. Finally, some insertion mutations that produced a protein that failed to bind to the SV40 T antigen appeared to have an enhanced ability to complex with a 68-kilodalton cellular protein in monkey cells.  相似文献   

19.
Interactions between SV40 T antigen and DNA polymerase alpha   总被引:16,自引:0,他引:16  
Simian virus 40 large T antigen is the only viral protein required for SV40 DNA synthesis in vivo and in vitro. This complex protein recruits the cellular DNA replication apparatus to the SV40 origin and provides a good model for the initiation of cellular DNA replication. The interaction between SV40 large T antigen (TAg) and DNA polymerase alpha has been shown previously to be inhibited by murine p53, the nuclear protein product of a cellular anti-oncogene. The murine p53 protein will inhibit SV40 replication both in vivo and in vitro. Using monoclonal antibodies to TAg, p53, and polymerase alpha, we developed immunoassays to measure the complexes formed between TAg and polymerase alpha and between TAg and p53. The assays allowed us to detect the TAg-polymerase alpha and TAg-p53 complexes in lytically infected and transformed cells. The amount of TAg complexed to p53 was far lower in infected cells than in transformed cells. We used a large range of monoclonal antibodies to different sites on T antigen and found that antibodies that inhibited the formation of the TAg-polymerase alpha complex also inhibited the formation of the TAg-p53 complex. Finally, we found that the tsA58 and 5080 point mutations in TAg, previously shown to inhibit the binding of TAg to p53, also inhibit its binding to polymerase alpha. Together these results emphasize the specificity and functional importance of the TAg-polymerase alpha complex. The disruption of this interaction by the cellular anti-oncogene p53 provides an interesting model for the normal action of p53 and the effects of its removal on the regulation of cellular DNA synthesis.  相似文献   

20.
We have investigated the functional roles of two structural subsets of simian virus 40 (SV40) large T antigen, namely homo-oligomers and complexes with the host cellular p53 protein, for the transformed phenotype. We examined T antigen produced in cells transformed by temperature-sensitive SV40 large T mutants: heat-sensitive or unrestricted SV40 tsA58-transformed rat cells and unrestricted tsA1499 transformants. In both unrestricted cell lines, T antigen was temperature-sensitive only for the formation of fast sedimenting homo-oligomers. Corresponding to our recent observations obtained with tsA1499-infected monkey cells, in tsA1499 transformants large T was competent to form stable T-p53 complexes independently of the temperature. However, T antigen coded for by tsA58, which is heat-sensitive for binding to p53, occurred in stable complexes with this protein in unrestricted tsA58 transformants under all conditions. Furthermore, in both unrestricted transformants T-p53 complexes arise in the absence of homo-oligomers of T antigen. In conclusion, T antigen homo-oligomers are not involved in cell transformation, whereas T-p53 complexes may be involved in the maintenance of this phenotype.  相似文献   

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