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HCMV-DNA is detected more frequently than infectious virus in blood leucocytes of immunocompromised patients: a direct comparison of culture-immunofluorescence and PCR for detection of HCMV in clinical specimens.

In two studies comparing detection of human cytomegalovirus (HCMV) in 118 patients (93 of whom were immunocompromised) by the polymerase chain reaction (PCR) and virus isolation using either early antigen detection by culture-immunofluorescence or conventional cytopathic effect, DNA-PCR was found to be the most sensitive, followed by culture-immunofluorescence, then by cytopathic effect. Urine was inhibitory to the action of Taq polymerase; this was overcome by concentration of HCMV with PEG 6000 prior to gene amplification. Without PEG treatment, HCMV-DNA in 6 of the 11 specimens positive by culture-immunofluorescence was not detectable by PCR. In healthy seropositive individuals, HCMV-DNA was not detected in leucocytes. However, in immunocompromised patients with AIDS or transplants, and therefore at high risk of HCMV infection or reactivation, blood leucocytes were usually positive for HCMV-DNA (19/20), some for as long as 20 weeks after initial detection and persisting for long after culture-immunofluorescence became negative. Neither HCMV-RNA nor infectious HCMV were detected in the follow-up blood leucocyte specimens from immunocompromised patients who had detectable HCMV-DNA in these cells. These data suggest that persistence of HCMV-DNA in blood leucocytes of immunocompromised patients after reactivation or primary infection may be due to persistence of non-viable virus, residual HCMV genomic DNA, or latent HCMV-DNA.

Base Sequence

Human cytomegalovirus (HCMV)-specific immunoglobulin E as a serologic marker for HCMV infection in immunocompromised patients.

An antibody capture assay using an enzyme-linked human cytomegalovirus (HCMV) antigen for the detection of specific immunoglobulin E (IgE) was established. IgG, M, and E responses to HCMV were studied in 497 sera obtained from 44 renal transplant recipients and 51 acquired immunodeficiency syndrome (AIDS) patients. The results were compared with those obtained from 58 HCMV-seropositive healthy individuals. HCMV-specific IgE was detected in 11 (91.7%) renal transplant recipients with primary HCMV infection. In contrast, antibodies of the IgG and IgM classes were detected in only 6 (50.0%) of these patients. Specific IgE was detected in 10 (90.9%) out of 11 renal allograft recipients suffering from secondary HCMV infection. Significant IgG titer rises and IgM were detected in 2 (18.2%) and 6 (54.6%) of these patients, respectively. IgG titer rises and IgM and IgE antibodies were seen in 5 (12.2%), 1 (2.4%) and 18 (43.9%) AIDS patients respectively. All healthy immunocompetent HCMV-seropositive individuals were tested IgE negative. The results obtained in our study indicate that IgE against HCMV is a more reliable serologic marker for primary and secondary HCMV infection than IgM in immunocompromised individuals, especially in organ transplant recipients, since it is not affected by the prophylactic application of HCMV hyperimmune globulin preparations.

Acquired Immunodeficiency Syndrome

Physical mapping of the human cytomegalovirus (HCMV) (Towne) DNA polymerase gene: DNA-mediated transfer of a genetic marker for an HCMV gene.

DNA-mediated transfer of a drug resistance marker (phosphonoacetate resistance) for the HCMV (Towne) DNA polymerase (pol) gene has been used to genetically confirm the physical localization of the HCMV (Towne) DNA pol gene. The HCMV (Towne) genomic region homologous to the pol genes of other herpesviruses was first identified by moderate stringency Southern hybridization. Restriction fragments from this region were molecularly cloned from previously characterized phosphonoacetic acid resistant (PAAr) HCMV genomes (R. T. D'Aquilla and W. C. Summers, J. Virol., 61, 1291-1295, 1987). A high frequency of recombinant PAAr virus was found among the progeny of cotransfections of infectious, wild-type HCMV (Towne) DNA only with pol-homologous restriction fragments cloned from PAAr HCMV. The co-transfection technique described here may facilitate further gene mapping in HCMV. The results presented here provide functional proof that the HCMV pol gene is encoded by the sequences previously identified as homologous to other herpesvirus pool genes.

Cytomegalovirus

Morphology and distribution of gp52 on extracellular human cytomegalovirus (HCMV) supports biochemical evidence that it represents the HCMV glycoprotein B.

Glycoprotein gp52 exists within the mature human cytomegalovirus (HCMV) envelope in heterodimeric, disulphide-linked complexes with glycoproteins gp95 and gp130. Biochemical studies involving immunoprecipitations and Western blots have demonstrated that gp52 is the glycoprotein B (gB) homologue of HCMV but that gp95 and gp130 are probably separate gene products. The distribution of this putative gB on extracellular HCMV particles was revealed by high resolution electron microscopy of preparations labelled with a monoclonal antibody, F5, directly coupled to colloidal gold. F5-gold probes, specific for HCMV gp52, bind to the distal end of 12 nm long, slender spikes projecting from virion and dense body envelopes. Labelled spikes were most often present in closely packed, homogeneous clusters and were frequently present on envelope protrusions. The degree of labelling on individual HCMV particles was highly variable. Both the morphology and distribution of HCMV gp52 show strong similarity with that previously reported for the gB of herpes simplex virus. Other morphologically distinct spikes occur in the HCMV envelope but these were not recognized by F5-gold probes.

Antibodies, Monoclonal

Glycoprotein H of human cytomegalovirus (HCMV) forms a stable complex with the HCMV UL115 gene product.

The human cytomegalovirus (HCMV) UL75 gene product is the homologue of herpes simplex virus type 1 (HSV-1) glycoprotein H (gH), a virion glycoprotein that is essential for infectivity and which is conserved among members of the alpha-, beta- and gamma-herpesviruses. It has previously been shown that HSV-1 gH forms a stable complex with HSV-1 gL, the product of the UL1 gene, and the formation of this complex facilitates the cell surface expression of gH. None of the open reading frames within the HCMV genome encode a product with discernible sequence homology with HSV-1 gL, but an examination of the arrangement of conserved genes in HCMV suggested that the UL115 gene is a 'positional homologue' of HSV-1 UL1 which, like UL1, encodes a small secreted glycoprotein. Co-expression of HCMV gH (the UL75 gene product) and the UL115 gene product revealed that these proteins form a disulphide-linked complex and that the formation of this complex results in cell surface expression of gH. This complex is analogous to the gH:gL complex of HSV-1 and the HCMV UL115 gene product is therefore the functional homologue of HSV-1 gL.

Cells, Cultured

Cell surface expression of human cytomegalovirus (HCMV) gp55-116 (gB): use of HCMV-recombinant vaccinia virus-infected cells in analysis of the human neutralizing antibody response.

Cell surface expression of the human cytomegalovirus (HCMV) major envelope glycoprotein complex, gp55-116 (gB), was studied by using monoclonal antibodies and an HCMV gp55-116 (gB) recombinant vaccinia virus. HCMV-infected human fibroblasts and recombinant vaccinia virus-infected HeLa cells expresses three electrophoretically distinct proteins of Mr 170,000, 116,000, and 55,000 on their surface. These species have been previously identified within infected cells and purified virions. Two unique neutralizing epitopes were shown to be present on the cell surface gp55-116 (gB). Utilizing HeLa cells infected with the gp55-116 recombinant vaccinia virus as a specific immunosorbent, we have shown that approximately 40 to 70% of the total serum virus-neutralizing activity of a group of individuals with past HCMV infections was directed against this single envelope glycoprotein. The implications of this finding for vaccine development are discussed.

Antibodies, Viral

HCMV specific expression in HEL cells transformed by Xba I endonuclease fragmented HCMV-DNA.

The transfection of subconfluent monolayers of HEL cells with Xba I endonuclease fragmented HCMV-DNA resulted in a large number of morphologically transformed foci. The frequency of focus formation of Xba I fragmented DNA increased after TPA treatment of the cells. The morphologically altered cells showed specific reactivity with anti-HCMV serum pool in the nuclear and perinuclear region and in the cytoplasm. The HCMV-32P-labelled probe DNA has been specifically hybridized to the cells of morphologically altered foci. The autoradiographic grains were localized in both nucleic and cytoplasm of the cells showing a specific hybridization between the probe DNA and nuclear as well as polyribosomal RNA.

Cell Line

High expression of human cytomegalovirus (HCMV)-gB protein in cells infected with a vaccinia-gB recombinant: the importance of the gB protein in HCMV immunity.

The human cytomegalovirus (HCMV), Towne strain, glycoprotein B (gB) gene was cloned into a vaccinia vector (Copenhagen strain) under the control of the H6 early and late vaccinia promoters (Vac-gB recombinant). The gB protein was expressed in a high percentage of the Vac-gB-infected cells throughout the virus replication cycle. Cytosine-arabinoside (ara-C) did not influence the expression of the gB protein early after infection (5 h), but did inhibit it later in viral replication (7-29 h). The Vac-gB recombinant induced HCMV neutralizing antibodies in guinea-pigs. Cells infected with the Vac-gB recombinant absorbed 50-88% of neutralizing activity of human sera obtained from volunteers previously inoculated with the Towne or Toledo strains and from naturally seropositive individuals.

Animals

Human cytomegalovirus (HCMV) enhances bovine papilloma virus (BPV) transformation in vitro.

Infection of NIH 3T3 cells with a combination of HCMV and BPV resulted in more foci than infection with BPV alone. Foci were microscopically apparent at 4 days in the mixed infection and did not appear until 2 days later in the cultures infected with BPV alone. The enhancement was abolished by heat inactivation of the HCMV and also when the HCMV was replaced by a "mock inoculum." Southern blot analysis of cellular DNA from transformed cells showed a similar amount of extrachromosomal BPV DNA in cells infected by BPV alone and in cells co-infected with HCMV. No HCMV antigens could be found in these cells by immunofluorescence. The mechanisms of the enhancement are not known. Stimulation of host DNA synthesis by HCMV could possibly increase the transforming efficiency of BPV. Alternatively, the increase in BPV transforming efficiency could be due to a transient increase in BPV-1 transcription by an HCMV transcriptional transactivation factor. Since both HCMV and human papillomaviruses are commonly found in the uterine cervix, HCMV may play a role in human cervical cancer by enhancing the carcinogenic potential of human papillomavirus.

Animals

Structural analysis of a 64-kDa major structural protein of human cytomegalovirus (Towne): identification of a phosphorylation site and comparison to pp65 of HCMV (AD169).

The major 64-kDa structural protein of human cytomegalovirus (pp64) was isolated from a guanidinium chloride extract of the virions and dense bodies of HCMV (Towne) by reverse-phase HPLC. Purified pp64 was reduced and alkylated followed by digestion with trypsin. The molecular mass of each of the tryptic peptides was determined by fast atom bombardment/mass spectrometry and compared with the predicted molecular mass of the fragments deduced from the corresponding DNA-derived peptide sequence of pp65 from HCMV (AD169). Microsequence analysis was employed to confirm selected peptides. Results of protein sequence analysis of pp64 from HCMV (Towne) are in complete agreement with the DNA-derived protein sequence of pp65 predicted for HCMV (AD169) with the following exceptions and modifications. The protein isolated from HCMV (Towne) was found to contain an Ala at position 448 instead of Ser448 reported for the protein from HCMV (AD169). We also identified Ser472 as a site of phosphorylation in pp64 from HCMV (Towne). Finally, on the basis of the sequence of HCMV (AD169) DNA fragment encoding the matrix protein and on S1 nuclease protection analysis, it has been predicted that one version of the matrix protein (possibly the lower matrix protein, Mr 65K) is encoded by an mRNA that is formed through splicing of a short intron. However, we have obtained peptides that contain sequences spanning through the splice-junction region, suggesting that in HCMV (Towne), the matrix protein is encoded by an unspliced message.

Amino Acid Sequence

On the association of human beta 2 microglobulin with cell culture-grown human cytomegalovirus (HCMV).

We studied the production of human beta 2 microglobulin (beta 2m) in mock-infected or human cytomegalovirus (HCMV) infected human embryonic lung fibroblasts (HEL) and the association of human beta 2m with HCMV virions. Titration of beta 2m by two-step sandwich enzyme immunoassay revealed that HEL released considerable amounts of human beta 2m into the culture medium and that the production of beta 2m was significantly enhanced by HCMV infection. The concentration of human beta 2m in the culture medium of HCMV-infected HEL reached 500 to 600 ng/ml, which corresponded to 7- to 12-fold of levels found in healthy adult urine. Immunoprecipitation assays showed that HEL-grown HCMV bound a significant amount of endogenous beta 2m, but the viruses were efficiently neutralized by either human hyperimmune anti-HCMV globulin or anti-HCMV monoclonal antibody even when treated with a large amount of human beta 2m or with dialysed urine. Thus it seems unlikely that the binding of beta 2m by HCMV is involved in masking the viral antigenic site necessary for neutralization.

Cells, Cultured

Rapid (24h) neutralization assay for the detection of antibodies to human cytomegalovirus using a monoclonal antibody to an HCMV early nuclear protein.

Neutralizing antibodies to human cytomegalovirus (HCMV) may play an important role during the course of an HCMV infection but yet detection with conventional methods remains difficult and time consuming. A new neutralization test has been developed basically corresponding to the known microtitre technique. A monoclonal antibody to an HCMV early nuclear protein is utilized to detect HCMV (AD169) infected fibroblasts by biotin/streptavidin-enhanced immunoperoxidase staining. The test procedure was thereby confined to only 24 h. Evaluation of the new neutralization test (24h-NT) was done in comparison to the conventional method (NT). Preselected serum samples (n = 217), of which n = 169 were HCMV-seropositive in ELISA (reciprocal titre greater than or equal to 40), were tested for neutralizing antibodies (NAbs) to HCMV. ELISA titres were measured by a commercially available kit (Behring, F.R.G.). NAbs could be detected in 107 sera by 24h-NT (reciprocal titre greater than or equal to 5) and in 110 sera determined by NT (reciprocal titre greater than or equal to 5). Those sera were exclusively positive in ELISA. ELISA negative sera (n = 48; reciprocal titre less than 40) yielded no detectable neutralizing titres. This specific and rapid test should facilitate HCMV-NAbs detection for a wide variety of applications including routine virology diagnostics, evaluation of HCMV hyperimmunoglobulins and medical research.

Antibodies, Monoclonal

Detection of cytomegalovirus in bronchial lavage and urine using a monoclonal antibody to an HCMV early nuclear protein.

Laboratory diagnosis of 24 cases of human cytomegalovirus (HCMV) infection in patients with the acquired immunodeficiency syndrome, renal transplant recipients and premature infants was achieved. These results were obtained by a rapid, sensitive and versatile HCMV-antigen detection method, which combined cell culture and immunoperoxidase staining with a monoclonal antibody to an HCMV "early" nuclear protein. The results were compared with HCMV isolation by the conventional cell culture method. While some of these immunocompromised patients lacked a significant antibody response, infective HCMV could be detected in the patients' urine and bronchial lavage fluid. The diagnostic procedure took no longer than 24 h. The usefulness of this antigen test for an effective diagnosis in immunocompromised individuals was demonstrated. We recommend routine analysis of various specimens, since recent developments in chemotherapy of HCMV infection and the risks of long-term damage demand immediate management of the patients concerned.

Adult

Characterization of multiple molecular interactions between human cytomegalovirus (HCMV) and human immunodeficiency virus type 1 (HIV-1).

In transient gene expression assays we observed an increase in expression of the bacterial chloramphenicol acetyl-transferase (CAT) gene, under the transcriptional control of the HIV-1 LTR (pLTR-CAT), when this plasmid was cotransfected into Vero or MRC-5 cells with a plasmid containing either the HCMV immediate early 1 and 2 (E1, IE2) genes (pRL43a) or just the IE2 gene (pMP18). When the HCMV IE1 gene (pMP12) was cotransfected with pLTR-CAT into Vero cells the level of measurable CAT gene activity was below the level observed when pLTR-CAT was cotransfected with a nonspecific carrier plasmid (pGEM3). The negative influence of the HCMV IE1 gene product on the HIV-1 LTR in Vero cells was also observed when the HIV-1 tat gene (pLTR-TAT) was contransfected into Vero cells with pLTR-CAT and pMP12. However, when the HCMV IE1 gene was cotransfected into rhabdomyosarcoma (RD) cells with proviral HIV-1 DNA, an increase in viral production, as monitored by measurement of HIV-1 reverse transcriptase activity, was observed. In electrophoretic mobility shift assays, nuclear extracts obtained 15 hr post-HCMV infection (hpi) were found to contain a lower level of interaction with an oligonucleotide which corresponded to the HIV-1 LTR Sp-1 binding motif. Nuclear extracts obtained 40 hpi of MRC-5 cells had a greater level of interaction with, and changed the mobility of, the Sp-1 oligonucleotide relative to the uninfected nuclear extracts. HCMV-infected MRC-5 cell nuclear extracts also contain a factor(s) which interacted with the HIV-1 LTR between nucleotide positions -15 to -2 relative to the HIV-1 mRNA start site.

Animals

[Transformation and identification of recombinant plasmid pAT153 containing HCMV gene Hind III F fragment and its clinical application].

Transformation of the recombinant plasmid pAT153 containing human cytomegalovirus (HCMV) gene Hind III F fragment into E.coli strain HB 101 was made by the CaCl2 method with a 24% of transformation efficiency. The bacterial colonies containing the recombinant plasmid were selected in colony hybridization with 32P-labelled HCMV Hind III F fragment. The recombinant plasmid was isolated by the modified alkaline lysis method which is characterized by high quality, great quantity, and time-saving. HCMV Hind III F fragment has no homology to the other herpes virus. The 32P-labelled HCMV Hind III F fragment probe could detect 0.25 pg homological sequences of HCMV DNA. The use of this probe allows the detection of HCMV in clinical specimens with the advantages of quickness, good sensitivity and specificity.

Cytomegalovirus

Human cytomegalovirus strain Towne pp28 gene: sequence comparison to pp28 of HCMV AD169 and stable expression in Chinese hamster ovary cells.

Human cytomegalovirus (HCMV) contains a 28-kDa (pp28) matrix phosphoprotein which has been shown to be highly immunogenic in humans. We have cloned and sequenced the gene encoding pp28 of HCMV Towne strain (pp28Towne) and have expressed this gene in stable Chinese hamster ovary (CHO) cell lines in order to examine the structural, functional, and antigenic properties of this protein. The pp28Towne gene had 99% nucleotide and 98.4% amino acid similarity to the pp28 gene of HCMV AD169 strain (pp28AD169). We identified three amino acid substitutions (Gly70 to Ser70, Ser76 to Asn76, and Thr85 to Ala85) in pp28Towne, all clustered in a short 16 amino acid stretch located in the N-terminal half of the protein. The pp28Towne gene was expressed in CHO cells using a vector in which transcription was driven by a human beta-actin promoter. The expressed protein, having an electrophoretic mobility similar to that of HCMV-derived pp28, reacted strongly in immunoblot analysis with pp28-specific murine monoclonal antibodies as well as HCMV-seropositive human sera.

Animals

A combination of human cytomegalovirus (HCMV)-specific murine monoclonal antibodies exhibits synergistic antiviral activity in vitro.

A combination of HCMV-specific monoclonal antibodies (MAbs) reactive with glycoproteins in gcI complexes which exhibit synergistic antiviral activity in vitro is described. MAbs directed against different structural and biological properties of HCMV have been selected to increase the antiviral activity against all possible strains, and to reduce the likelihood that resistant strains will emerge with prolonged exposure. Furthermore, in vitro analysis demonstrates that certain of the MAbs in the combination augment the virus-neutralizing activity of other component antibodies, thereby decreasing the amount of total antibody protein required to inhibit HCMV infection. Certain MAbs have been selected to inactivate extracellular virus during the early phase of HCMV infection, whereas others have been selected to prevent its spread once cells have been infected. These data suggest that a MAb cocktail may be useful for prophylaxis and treatment of patients at risk of life-threatening HCMV infections.

Antibodies, Monoclonal