Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ADENOVIRUS INFECTIONS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 217 records · Page 12Linked to original sources

Adenovirus infection within stromal cells in a pediatric small bowel allograft.

Adenovirus infection is not uncommon in pediatric small bowel transplant recipients. Histopathologic findings include characteristic epithelial changes of intranuclear inclusions and smudging of nuclei. We present a case of adenovirus within stromal cells of the lamina propria in a biopsy from a small bowel allograft. Immunohistochemistry and double-labeled immunofluorescence were performed using antibodies against adenovirus, CD31, vimentin, cytokeratin, and CD163 on the allograft intestinal biopsy. Electron microscopy was done to confirm the presence of viral particles and to attempt to confirm the origin of the infected cells. The index biopsy showed scant cells within the lamina propria double-labeled with vimentin and adenovirus. Several cells showed predominantly cytoplasmic staining for adenoviral antigen. Intranuclear adenoviral particles were found in several cells of the lamina propria by electron microscopy. A subsequent biopsy showed typical adenoviral intranuclear inclusions within surface enterocytes. Adenovirus may infect stromal cells within the lamina propria. Although the typical location of adenoviral inclusions in small bowel is the surface epithelial cell nuclei, some cases may show inclusions within stromal cells. This observation may be important in the pathobiology of adenoviral infection, especially in the setting of pediatric transplantation. This finding should alert pathologists examining small bowel transplant biopsies, particularly those biopsies with extensive ulceration, to include careful surveillance of the lamina propria.

Adenovirus Infections, Human↗

Characterization of the SS-B (La) antigen in adenovirus-infected and uninfected HeLa cells.

The molecular composition and subcellular localization of the antigens recognized by anti-SS-B (La or Ha) antibodies was investigated. Ten anti-SS-B sera were selected by indirect immunofluorescence and by their immunological identity in counter-immunoelectrophoresis (CIE) with an anti-SS-B reference serum. All sera precipitated virus-associated (VA) RNA from cellular extracts of adenovirus-infected HeLa cells. Earlier results had shown that in adenovirus-infected HeLa cells a cellular 50 000 mol. wt. protein was tightly associated with VA RNA in situ. Our present results indicate that this 50 000 protein is the only SS-B antigen present in adenovirus-infected as well as in uninfected cells. A major part (greater than 80%) of the SS-B antigen is present in a readily extractable, soluble form. The rest is found in an insoluble form tightly associated with an internal nuclear structure that is mostly referred to as the nuclear matrix. Both forms are very susceptible to proteolytic degradation resulting in at least two distinct breakdown products of mol. wts. 40 000 and 25 000. The cellular 50 000 polypeptide is present in extracts of various types of cells and tissues, indicating that this antigen is very well conserved during evolution. The association of the 50 000 mol. wt. antigen with host- as well as viral-coded RNA polymerase III products also suggests an important function for this protein in the metabolism of these small RNAs.

Adenoviruses, Human↗

Forced degradation of Fas inhibits apoptosis in adenovirus-infected cells.

DNA viruses have evolved elaborate mechanisms to overcome host antiviral defences. In adenovirus-infected cells, programmed cell death (apoptosis) induced by the cytokine tumour necrosis factor (TNF) is inhibited by several adenovirus-encoded proteins. Occupation of the cell-surface receptor Fas, a member of the TNF-receptor superfamily that is expressed on most cell types, triggers apoptosis of that cell. Here we show that the adenovirus RID (for receptor internalization and degradation) protein complex, which is an inhibitor of TNF-induced apoptosis, mediates internalization of cell-surface Fas and its destruction inside lysosomes within the cell. Fas has not previously been shown to be internalized and then degraded. RID also mediates internalization of the receptor for epidermal growth factor, but it does not affect the transferrin receptor or class I antigens of the major histocompatibility complex. Removal of Fas from the surface of adenovirus-infected cells expressing RID may allow infected cells to resist Fas-mediated cell death and thus promote their survival.

Adenoviridae↗

DNA octamer element can confer E1A trans-activation, and adenovirus infection results in a stimulation of the DNA-binding activity of OTF-1/NFIII factor.

Adenovirus E1A-dependent trans-activation of viral transcription involves the utilization and alteration of multiple sequence-specific transcription factors. Cellular genes are also activated by E1A, one example being the immunoglobulin heavy-chain locus when assayed by transfection into fibroblast cells. We have explored the basis for the E1A-dependent activation of this cellular transcription unit. We demonstrate that the ATTTGCAT ("octamer") element found in the heavy-chain enhancer and promoter is a target for E1A trans-activation since this sequence can confer inducibility to the normally unresponsive simian virus 40 early promoter. In addition, adenovirus infection stimulates the DNA-binding activity of the ubiquitous octamer-specific factor, OTF-1, and we presume that this is the basis for the stimulation of transcription. Although there are no octamer elements in the adenovirus genome that are known to be important for transcription, there are octamer elements in the viral terminal repeat sequences. These elements bind the NFIII factor and are important for the initiation of DNA replication. Since the NFIII factor has been shown to be identical to OTF-1, we suggest that the stimulation of OTF-1/NFIII activity during an adenovirus infection may be important for efficient initiation of adenovirus DNA synthesis.

Adenovirus Early Proteins↗

DNA hybridization for diagnosis of enteric adenovirus infection from directly spotted human fecal specimens.

By using a genomic probe, DNA hybridization for adenovirus type 41 (Ad41) showed equivalent sensitivity with a direct spot method from clinical specimens compared with a more laborious DNA phenol extraction procedure. By using this direct spot preparation method, fecal specimens of 67 patients were examined under code for blind testing for the presence of adenovirus by DNA hybridization by using two Ad41 probes (genomic and cloned BglII-D) and an adenovirus type 2 genomic probe. Identical results were obtained with both of the Ad41 probes. Of the fecal specimens from 42 children with adenovirus gastroenteritis studied prospectively (16 of whom had enteric adenoviruses), 13 specimens (81%) were detected by DNA hybridization with a cloned Ad41 BglII-D probe. There were 14 fecal specimens that were positive by electron microscopy (EM) and culture for nonenteric adenovirus, and 2 specimens were positive by DNA hybridization (87% specificity); these 2 specimens may have been from a mixed enteric adenovirus and nonenteric adenovirus infection. None of 26 specimens from age-matched healthy control patients was positive for adenovirus by EM or DNA hybridization. Our data indicated that DNA hybridization gives highly reproducible results. The direct spot technique is the method of choice for specimen preparation in the diagnostic laboratory, since it requires only the simplest manipulations in specimen preparation. By using DNA hybridization with the BglII D fragment of a cloned enteric Ad41, both adenovirus type 40 and Ad41 were detected directly from fecal specimens, but it was less sensitive than EM following direct ultracentrifugation of specimens. The Bg1II-D Ad41 DNA probe was highly specific for enteric adenoviruses, and DNA hybridization with this probe could be a useful diagnostic test for these fastidious adenoviruses.

Adenoviridae Infections↗

Naturally acquired enteric adenovirus infection in Syrian hamsters (Mesocricetus auratus).

Intranuclear inclusions indicative of adenovirus infection were detected microscopically in formalin-fixed intestinal tissues from preweanling Syrian hamsters. The amphophilic intranuclear inclusion bodies were observed in ileal enterocytes from 16-to 24-day-old hamsters. Electron microscopy revealed large numbers of 72 +/- 3-nm viral particles typical of adenoviridae in enterocytic nuclei. Serum antibodies reacted with mouse adenovirus strains K87 and, to a lesser extent, FL, by indirect fluorescent antibody testing. Clinical disease was not associated with the adenoviral infections. Hamsters from 10 production colonies, including all major commercial Syrian hamster suppliers in the United States, were surveyed and all had serologic or histopathologic evidence of adenovirus infection.

Adenoviridae Infections↗

Mutations within the ADP (E3-11.6K) protein alter processing and localization of ADP and the kinetics of cell lysis of adenovirus-infected cells.

ADP (also known as E3-11.6K protein) is synthesized abundantly in late adenovirus infection and is required for efficient lysis of infected cells and release of viral progeny at the end of the viral replication cycle. ADP is a type III bitopic N(endo)C(exo) nuclear membrane and Golgi glycoprotein that is produced at high levels in late adenovirus infection (>24 h postinfection). We show pulse-chase and other studies indicating that ADP undergoes a complex process of N- and O-linked glycosylation and proteolytic cleavage. In order to further characterize ADP, a series of 23 deletion and point mutations has been constructed in the adenovirus serotype 2 adp gene and then built into a wild-type adenovirus background. These mutants were analyzed for processing and intracellular localization of ADP. Mutation of the single predicted N glycosylation site eliminated N glycosylation. Deletion of a region in ADP rich in serine and threonine residues reduced O glycosylation. In general, mutations within the lumenal domain of ADP resulted in lower protein stability; immunofluorescence assays indicated that these ADPs were primarily present in the Golgi apparatus. Viruses with mutations within the cytoplasmic-nucleoplasmic domain of ADP showed normal glycosylation patterns and protein abundance for ADP, but the protein was often found throughout cellular membranes rather than being localized specifically to the nuclear membrane and Golgi apparatus. The ADP virus mutants were analyzed by cell viability assays to determine the kinetics of cell lysis following infection of human A549 cells. In general, viruses with mutations within the lumenal domain of ADP display greatly reduced efficiencies of cell lysis. Viruses with large deletions in the cytoplasmic-nucleoplasmic domain of ADP retain much of their ability to lyse infected cells.

Adenovirus E3 Proteins↗

The impact of adenovirus infection on the immunocompromised host.

Adenovirus (Ad) infections in immunocompromised hosts have increased in frequency as the number of patients with transplants of bone marrow, liver, kidney, heart and other organs increase in number and survive longer. The numbers of such patients have also increased because of the emergence of the HIV epidemic. Ad infections with the 51 different serotypes recognised to date have few pathognomonic signs and symptoms, and thus require a variety of laboratory-based procedures to confirm infection. These viruses have the ability to target various organs with relative serotype specificity and can cause diverse manifestations including serious life-threatening diseases characteristic of the organs involved. Ads have cytolytic and immunoregulatory properties. The clinical dilemma remains the prompt recognition of Ad-related disease, the differentiation of Ad infection from Ad disease and the differentiation from other causative agents. Since the armamentarium of effective antiviral agents available to treat Ads is unproven by controlled trials and the virus is often not acquired de novo, it is difficult to prevent reactivation in immunodeficient hosts or new acquisition from donor organs. Timely discontinuation of immunosuppressive agents is necessary to prevent morbid outcomes. The clinical diseases, diagnostic tests, antiviral agents and biological aspects of the Ads as pathogens in immunocompromised patients are discussed in the context of this review. Some of the newer diagnostic tests are based on the well-studied molecular biology of Ads, which also have been attenuated by selective viral DNA deletions for use as vectors in numerous gene therapy trials in humans.

Acquired Immunodeficiency Syndrome↗

Altered cell cycle progression and aberrant mitosis in adenovirus-infected rodent cells.

Actively growing mouse or rat embryo cells suffered structural chromosome damage, mitotic anomalies, and polyploidy after infection by human adenovirus type 5. Chromosome damage required expression of one or more early viral genes and showed regular periodicity in its frequency. The growth cycle time of some of the infected cells was reduced by about 5 hours due to a decrease in G1, and the interval between successive waves of chromosome damage corresponded to this reduced cycle time. After infection there was a decrease in cells with G1 DNA content and an increase in cells with G2 diploid, aneuploid, and polyploid DNA contents. We suggest these effects are due to the expression in semipermissive cells fo early viral gene(s), whose function in productive infection in vivo is to alter cell cycle controls in order to maximize the number of cells able to replicate viral DNA and the time such cells spend in DNA replication.

Adenoviridae Infections↗

Activation of the E2F transcription factor in adenovirus-infected cells involves E1A-dependent stimulation of DNA-binding activity and induction of cooperative binding mediated by an E4 gene product.

Previous experiments have demonstrated that the DNA-binding activity of the E2F transcription factor is increased upon adenovirus infection and that both the E1A and E4 genes are required for activation. In this study, we demonstrated that this enhanced binding of E2F to the E2 promoter is the result of two events. (i) There is stimulation of the DNA-binding activity of the E2F factor; this stimulation is E1A dependent but independent of E4. (ii) There is also induction of a stabilized interaction between E2F molecules bound to adjacent promoter sites; induction of stable E2F binding requires E4 gene function. This two-step activation process was also demonstrated in vitro. A heat-stable fraction from extracts of adenovirus-infected cells, which contains the 19-kilodalton E4 protein, was capable of stimulating stable E2F binding in an ATP-independent manner and appeared to involve direct interaction of the E4 protein with E2F. An extract from virus-infected cells devoid of the E4 19-kilodalton protein stimulated E2F DNA binding without forming the stable complex. This reaction required ATP. We conclude that activation of E2F during adenovirus infection is a two-step process involving a change in both the DNA-binding activity of the factor and the capacity to stabilize the interaction through protein-protein contacts.

Adenovirus Early Proteins↗

The Seattle Virus Watch. VII. Observations of adenovirus infections.

The following findings were made from observations of adenovirus (AV) infections in Seattle VW families, 1965-1969, which extended the 1961-1965 New York VW studies: That infections are predominantly enteric, may be abortive or invasive and followed by persistent intermittent excretion was confirmed. That such excretion is most characteristic of types 1, 2, 3 and 5 viruses may explain why these types were usually endemic. However, since observed duration of excretion was not increased despite a longer average observation period, persistent excretion appears not to continue indefinitely and generation-to-generation transmission now seems improbable. Unilike New York, alternate cycling of types 1 and 2 viruses was not seen. Among homotypic susceptibles, infection rates for the endemic types were highest in infants (greater than 90% for types 1 and 2), decreased with age in older children but increased in parents, perhaps because of closer contact with infants. Development of serum neutralizing antibody was most frequent (about 90%) after types 1 and 2 infection; in all cases, titers decayed over time. While delayed virus spread related to persistent intermittent excretion did occur, spread closely following new or renewed (after larger than or equal to 3 months) excretion was more important. Sibling introducers were more effective spreaders than infants, and duration of excretion was more important than mode. These data indicate that homotypic immunity is 85% protective against infection. A protective effect of heterotypic immunity could not be shown. Illness (chiefly respiratory and often febrile) was associated with 49% of infections in susceptibles and with 65% when respiratory shedding occurred. The contribution of AV to all infectious illness, based on virus-positive infections only, was 5% in infants and 3% in the 2-4-year age group; for febrile illness, the corresponding contributions were about 10% and 5%. Inclusion of infections discovered only be serology (49% of all infections) would greatly increase the contribution of AV to illness.

Adenoviridae↗

Adenovirus infection in cystic fibrosis patients: implications for the use of adenoviral vectors for gene transfer.

Clinical trials using replication-deficient adenovirus as vectors for gene transfer into the airways of cystic fibrosis (CF) patients are in progress. However, little is known about the prevalence of wild-type adenovirus infections in patients with cystic fibrosis and their effect on lung function. To answer these questions, serum IgG and IgM antibody titers against adenovirus type 5 were prospectively measured by an indirect immunofluorescence assay in 199 CF outpatients and in a control group of 45 healthy children and young adults. In addition, we performed pulmonary function tests when the patients were in stable clinical condition. IgM antibodies against adenovirus were present in 104 of the 199 cystic fibrosis patients (52.3%). IgG antibodies against adenovirus were detected in 192 of the 199 cystic fibrosis patients (96.5%), and were significantly higher in cystic fibrosis patients older than 7 years than in younger patients and in age matched controls. IgG antibody titers measured a second time 11.8 months later in 143 of the 199 patients had increased in 48 (33.6%) patients. In 27 of these 48 patients, who had at least a 2-fold increase in antibody titer, FVC and FEV1 decreased by 9.8% (p < 0.05) and 8.3% (p = 0.05), respectively, over 45 months. In a comparison group matched for age, sex, and chronic Pseudomonas aeruginosa infection but no increase in antibody titers, FVC and FEV1 were unchanged. The results indicate that wild-type adenovirus infections are prevalent in cystic fibrosis patients and that wild-type adenovirus infections in cystic fibrosis patients seem to be associated with deterioration in lung function. These observations may have important implications for efficacy and safety considerations when using adenoviral vectors for gene therapy.

Adenoviridae Infections↗

[Enzymatic activity of the lymphocytes in gnotobionts in adenovirus infection].

The cytochemical activity of succinate dehydrogenases, alpha-glycerophosphate (mitochondrial and hyaloplasmic), lactate, glycose-6-phosphate, glutamate, beta-oxibutyrate, NADP-H2- and NAD-H2 diaphorases and acid phosphatase was studied in lymphocytes of gnotobiotic guinea-pigs infected with human adenovirus type 1. The analysis of transgression of distribution of the values in the experimental and control groups revealed a high informative diagnostic value of acid phosphatase and lactate dehydrogenase of lymphocytes.

Adenoviridae Infections↗

Regulation of integrated adenovirus sequences during adenovirus infection of transformed cells.

A human cell line (293) transformed by adenovirus type 5 encodes mRNA's and proteins from the early region 1 (E1) of the viral genome. These products correspond to those synthesized early after adenovirus infection of normal cells. This pattern of expression is different from that observed at later times in the lytic cycle. We have determined whether integrated sequences can undergo the early-late transition during infection of transformed cells. Cultures of 293 cells were infected with mutants of adenovirus type 5 that have deletions in EI genes. In such infections, the integrated sequence complements the deletion mutants so that viral DNA replication, late mRNA and protein synthesis, and viral assembly occur. Because the infecting genomes lack EI sequences, the products synthesized from the integrated DNA could be analyzed. In contrast to the early-late transition that occurs with EI DNA in free viral genomes, the pattern of mRNAs and proteins made from the integrated sequences was restricted to the early pattern. Assuming that the viral sequences in 293 cells have not become altered during the history of the cells, our results suggest that regulation of integrated adenovirus genes may not be determined exclusively by nucleotide sequence recognition. Apparently, during infection certain factors prevent the integrated viral genes from responding to the regulatory signals which control late expression from free EI DNA. The distinction between integrated and free viral sequences might reflect the different fates of viral and host transcripts during the lytic cycle of adenovirus.

Adenoviruses, Human↗

[A case of non-herpetic acute limbic encephalitis associated with a type-2 adenovirus infection].

This is a report of a 31-year-old woman with non-herpetic acute limbic encephalitis following a type-2 adenovirus infection. The patient was admitted to a hospital with high fever, severe liver dysfunction, and thrombocytopenia. Six days after admission, she became afebrile, and her liver dysfunction was normalized by conservative therapy. However, the patient started to experience generalized seizures that developed into status epileptics. The patient was then transferred to a referred hospital. Brain MR images revealed faint high-signal intensity in the bilateral limbic systems on FLAIR images. A CSF examination indicated mild pleocytosis. These findings suggested acute limbic encephalitis, which may have been mediated by an autoimmune reaction following some viral infection. Thus, steroid pulse therapy was started on the day of admission. The patient's condition, including the seizures and disturbances involving consciousness, improved gradually. The patient was discharged from the hospital in one month while still experiencing mild memory disturbances. Three months after onset of the illness, a T1-weighted MR image showed a linear high-signal intensity in the hippocampi, which indicated focal necrosis. Six months after onset, the patient's memory disturbance had been improved (her MMSE score was 28/30 points). We investigated the titers of many viruses that are known to cause liver dysfunction and found that a titer of the type-2 adenovirus was significantly elevated within three weeks. Although the anti-voltage-gated potassium channel (VGKC) antibody was not detected in the patient's serum, it seems that the autoimmune reaction after the type-2 adenovirus infection may have caused the acute limbic encephalitis.

Acute Disease↗

Adenovirus infection and cytotoxicity of primary mantle cell lymphoma cells.

Mantle cell lymphoma (MCL) is a distinct form of non-Hodgkin's lymphoma (NHL) derived from CD5+ B cells. MCL cells overexpress cyclin D1 as a consequence of translocation of the gene into the immunoglobulin heavy-chain gene locus. MCL is an aggressive form of NHL with frequent relapses after standard-dose chemotherapy. In this context, a variety of novel therapies for patients with MCL have been investigated. In this study, we use an expanded panel of attenuated adenoviruses to study adenovirus-mediated cytotoxicity of MCL cells. Our results demonstrate: 1) adenovirus infection of MCL cells despite the absence of receptor/coreceptor molecules known to be important for adenovirus infection of other cells types; 2) cytotoxicity of MCL cells after infection with specific adenovirus mutants; 3) a high degree of cytotoxicity after infection of some patient samples with viruses lacking the E1B 19k "antiapoptotic" gene; and 4) cytotoxicity after infection with viruses containing mutations in E1A pRb or p300 binding. The extent of cytotoxicity with the panel of viruses demonstrated interpatient variability, but 100% cytotoxicity, as determined by molecular analysis, was detected in some samples. These studies provide the foundation for: 1) the development of adenoviruses as cytotoxic agents for MCL and 2) analyses of key regulatory pathways operative in MCL cells.

Adenoviridae↗

Adenovirus infection of myocardial cells induces an enhanced sensitivity to beta-adrenergic agonists by increasing the concentration of the stimulatory G-protein.

Neonatal rat cardiocytes were infected with a recombinant adenovirus type 5 containing the SV40 early promoter-Gsa fusion gene in order to evaluate the presumed role of the stimulatory G-protein (Gs) in hypertrophy of myocardial cells. In vitro infection of myocardial cells with the recombinant adenovirus induced a 79-fold increase in Gs alpha mRNA and a 5-fold increase in Gs alpha protein, which was accompanied by a pronounced cell hypertrophy but not cell proliferation. Interestingly, adenovirus-infected cells displayed features of cell hypertrophy, an increase in sodium fluoride-stimulatible membrane-bound activity of adenylyl cyclase, and an enhanced beta-adrenergic sensitivity irrespective of the presence or absence of the SV40 early promoter-Gs alpha fusion gene in the virus. While the recombinant adenovirus induced a 5-fold versus 3-fold increase for plain adenovirus in cellular Gs alpha, membrane-bound Gs alpha was increased about 2-fold in both instances, which can explain similar increase in the G-protein-modulated adenylyl cyclase activity determined in membranes derived from myocardial cells infected with both types of the virus. It is concluded that adenovirus infection per se can lead to overexpression of Gs alpha and myocardial hypertrophy and thus may be of importance in the pathogenesis of virus-induced cardiomyopathy.

Adenoviruses, Human↗