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We have constructed an adenovirus type 5 (Ad5) E1A mutant, dl1119/520, that produces essentially only exon 2 of the major E1A proteins. In infected primary baby rat kidney cells, this mutant induced expression of the E1B 55-kDa protein, and in infected human KB cells, it induced expression of this protein, the E2A 72-kDa protein, and hexon. In KB cells, this mutant grew substantially better than Ad5 dl312, which lacks E1A, and as well as Ad5 dl520, an E1A mutant producing only the 243-residue protein. These results suggest that exon 2 of E1A proteins on its own was able to activate gene expression. We also constructed mutants of dl1119/520, containing small deletions in regions of exon 2 that others found to be associated with effects on the properties of E1A transformants. None of these deletions destroyed gene activation completely, indicating that there may be some redundancy among sequences in exon 2 for inducing gene expression. The two deletions that decreased induction the most, residues 224 to 238 and 255 to 270, were in regions reported to be associated with the expression of a metalloprotease and with enhanced transformation, suggesting that exon 2 may regulate expression of genes governing cell growth. It is remarkable that all sections of E1A proteins, exon 1, the unique region, and exon 2, have now been found to affect gene expression.  相似文献   

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Multiple functional domains in the adenovirus E1A gene   总被引:105,自引:0,他引:105  
E Moran  M B Mathews 《Cell》1987,48(2):177-178
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To distinguish the individual roles of the 13S, 12S, and 9S adenovirus E1A gene products, we isolated the corresponding cDNA clones and recombined them into both plasmids and viruses. Only the expected E1A mRNA products were made from the corresponding 12S and 13S viruses. The 9S mRNA was detected when the 9S virus was coinfected with the 13S virus but not when either virus was infected alone. The 13S virus formed plaques equally well in 293 cells, HeLa cells, and A549 cells, a human lung oat cell carcinoma line. Plaque titers of the 12S virus were much reduced in HeLa and A549 cells compared with 293 cells, although the 12S virus is multiplicity-dependent leaky in both HeLa and A549 cells. A549 cells were significantly more permissive than HeLa cells for growth of the 12S virus. In A549 cells even at low multiplicities of infection the final yield of 12S virus eventually approached the maximum yield from 293 cells. Expression from the adenovirus early region 2 and early region 3 promoters in HeLa cells was activated in the presence of a 13S cDNA E1A region but not in the presence of a 12S E1A cDNA region. Although defective for lytic growth in HeLa cells, the 12S virus immortalized BRK cells at very high efficiency, whereas infection of these cells with 13S virus, as with wild-type E1A virus, resulted mainly in cell death. The 13S product does have an immortalization function, however, revealed in the absence of adenovirus lytic functions when a plasmid containing the E1A 13S cDNA region was transfected into BRK cells. The 9S virus failed to immortalize infected BRK cells or to interfere with focus formation when coinfected with the 12S virus.  相似文献   

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R T Vaessen  A Houweling  A J van der Eb 《Gene》1987,54(2-3):247-254
We have transformed primary baby rat kidney cells with a plasmid containing the adenovirus(Ad)12E1 region in which the E1A promoter was replaced by the dexamethasone inducible mouse mammary tumor virus promoter. In the uninduced state the level of E1A expression is less than 10% of that in the induced state. We have investigated the effects of decreasing the levels of E1A on a number of E1A-mediated processes. First, expression of the E1B region is reduced several-fold upon reducing E1A expression. Second, a radical change in cell morphology is observed. Third, despite the decrease in E1A expression, down-regulation of the class-I major histocompatibility complex genes by Ad12E1A is not affected. These results are discussed in terms of different threshold levels of E1A expression required for various E1A-mediated processes.  相似文献   

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Regulation of early adenovirus gene expression.   总被引:17,自引:0,他引:17  
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J P Leite  C Cousin  A Heysen  J C D'Halluin 《Gene》1989,82(2):351-356
A sequence element within plasmid pBR322 has a cis-acting negative effect on the expression of a cloned Ad gene in transient expression assays. The negative element is located between the PvuII and Tth111I restriction sites on pBR322 (nt 2068-2223). This element was also shown to be responsible for the decrease in focus number, when plasmids carrying Ad2 E1 genes were used to transform baby rat kidney cells. In a similar manner, this element diminished the number of G418-resistant cell foci, when plasmids containing the neo marker gene under the control of E1a promoter were used. Plasmid stability in transfected cells was not modified by deletion of this cis-acting negative element.  相似文献   

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While the products of the type 5 adenovirus E1A and E1B genes can initiate pathways leading to a transformed rodent cell, little is known about how the rate of viral early gene expression influences the efficiency of this process. An adenovirus mutant [E1a(r) virus] that expresses its viral E1A and E1B genes at as much as a 100-fold-reduced rate relative to wild-type virus in infected CREF or HeLa cells transforms CREF cells at an 8-fold-higher efficiency than wild-type virus. Additional studies show that the reduction in viral E1A gene expression is solely responsible for this transformation phenotype, and at this low rate of viral E1A gene expression both E1A gene products must be expressed. Unlike previously characterized viruses which transform CREF cells at frequencies greater than wild-type virus, the foci obtained following E1a(r) virus infection were indistinguishable from those arising from wild-type virus by several criteria (morphological characteristics and anchorage-independent growth). Surprisingly, an analysis of viral early gene expression from a panel of wild-type- and E1a(r) virus-transformed CREF cell lines showed similar average rates of both viral E1A and E1B gene expression. By using an adenovirus-transformed cell line that is cold-sensitive for maintenance of the transformed cell phenotype, we show that both wild-type and the E1a(r) viruses can transform these cells at equally high efficiencies at the nonpermissive temperature of 32 degrees C. Our findings suggest that the process leading to a fully transformed cell involves multiple stages, with an early stage being facilitated by a reduced rate of viral E1A gene expression.  相似文献   

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Functional interactions between YY1 and adenovirus E1A.   总被引:11,自引:0,他引:11       下载免费PDF全文
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