Search PubMedSearch

SEARCH · Search PubMed

Results for “lytic reactivation”

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 19 recordsLinked to original sources

Spontaneous lytic reactivation drives a persistent B cell-vector pathway for epithelial dissemination of the Epstein-Barr virus.

The Epstein-Barr virus (EBV) establishes lifelong B cell infection via oral transmission; however, it paradoxically drives carcinomas in anatomically distant organs with striking geographic disparities. While genomic studies frequently link specific EBV variants to these epithelial cancers, the mechanisms bridging ubiquitous infection to distant, strain-dependent malignancies remain largely unresolved. Using an induction-free primary B cell system, we identify a circulating B cell-vector pathway driving immortalized epithelial dissemination. We demonstrate that B cells infected with carcinoma-associated strains exhibit markedly higher epithelial transmission compared with those carrying lymphoid strains. This contact-dependent process requires spontaneous lytic reactivation, viral DNA replication, and de novo virion production. Crucially, those infected B cells retain their transmission capacity for months, supporting sustained epithelial seeding. Mechanistically, entry requires gH/gL engagement of EphA2/desmocollin-2 (DSC2), with actin- and PI3K-dependent endocytosis. These findings define a lytic-coupled, receptor-dependent pathway by which the EBV exploits B cells to access the epithelium, offering a mechanistic framework for understanding strain tropism and host-virus interactions.

B cell vector

Expression of fetal antigens by normal human skin cells grown in tissue culture.

Normal human sera are capable of causing complement-mediated lysis of normal human skin cells grown in tissue culture. This lytic reactivity can be completely removed by absorption with first trimester fetal tissue. Absorption with a variety of normal adult human tissues including lymphocytes, decidua, skin, and muscle are incapable of absorbing reactivity. Absorption of reactivity by fetal tissue is specific and not due to the introduction of anti-complementary or other nonspecific factors, as evidenced by the inability of simultaneous fetal absorption to remove reactivity from antisera with specificity for HLA antigens. Similarly, absorption of lytic sera with fetal calf serum proteins was incapable of removing reactivity against normal cells in tissue culture. It thus appears that normal human cells in tissue culture express antigens shared by the first trimester human fetus, but not present on a variety of adult human tissues. This "neoantigen" present on normal human cells when grown in tissue culture is a potential source of confusion and must be accounted for in searching for human tumor-specific antigens utilizing tissue culture cells.

Antigens

Heat shock factor 2 regulates oncogenic gamma-herpesvirus gene expression by remodeling the chromatin at the ORF50 and BZLF1 promoter.

The Human gamma-herpesviruses Kaposi's sarcoma herpesvirus (KSHV) and Epstein-Barr virus (EBV) are causally associated to a wide range of cancers. While the default infection program for these viruses is latent, sporadic lytic reactivation supports virus dissemination and oncogenesis. Despite its relevance, the repertoire of host factors governing the transition from latent to lytic phase is not yet complete, leaving much of this complex process unresolved. Here we show that heat shock factor 2 (HSF2), a transcription factor involved in regulation of stress responses and specific cell differentiation processes, promotes gamma-herpesvirus lytic gene expression. In lymphatic endothelial cells infected with KSHV and in gastric cancer cells positive for EBV, ectopic HSF2 enhances the expression of lytic genes; While knocking down HSF2 significantly decreases their expression. HSF2 overexpression is accompanied by decreased levels of repressive histone marks at the promoters of the lytic regulators KSHV ORF50 and EBV BZLF1, both characterized by poised chromatin features. Our results demonstrate that endogenous HSF2 binds to the promoters of KSHV ORF50 and EBV BZLF1 genes and shifts the bivalent chromatin state towards a more transcriptionally permissive state. We detected HSF2 binding to the ORF50 promoter in latent cells, in contrast, in lytic cells, HSF2 occupancy at the ORF50 promoter is lost in conjunction with its proteasomal degradation. These findings identify HSF2 as a regulator of gamma-herpesvirus lytic gene expression in latency and offer new insights on the function of this transcription factors at poised gene promoters, improving our understanding of its role in differentiation and development.

Humans

EBV reactivation priming of the peripheral immune system in multiple sclerosis relapse.

Despite decades of research, the cellular and molecular events preceding multiple sclerosis (MS) relapse remain incompletely understood. Here, in this observational study of longitudinal blood samples from patients with relapsing-remitting MS, we used single-cell RNA sequencing, bulk transcriptomics, multiparameter flow cytometry and targeted viral reverse transcription quantitative polymerase chain reaction (RT-qPCR) to construct a time-resolved atlas of immune perturbations surrounding relapse. A reproducible pre-relapse signature in monocytes and B cells, emerging up to 3 months before clinical onset, was enriched for host genes responsive to Epstein-Barr virus (EBV) lytic reactivation factors. RT-qPCR confirmed elevated EBV LMP-1 transcripts in pre-relapse B cells, and flow cytometry demonstrated expansion of CD11c+ atypical B cell populations displaying EBV surface protein gp350. Pre-relapse transcriptional modules overlapped with MS genome-wide association study (GWAS) risk loci and EBNA-2-bound enhancers, suggesting that inherited MS susceptibility and EBV-responsive programs operate through shared regulatory elements. How this peripheral activation relates to central nervous system lesion formation remains to be established. These findings nonetheless suggest that EBV reactivation, when occurring within a genetically predisposed peripheral immune environment, is a proximal precursor of MS relapse.

Journal Article

Effect of Vibrio cholerae neuraminidase on the generation of cell-mediated cytotoxicity in vitro.

Vibrio cholerae neuraminidase (VCN))12.5 units/2 X 10(6) cells/ml) continuously present for a standard 5-day MLC will significant (p less than 0.02) increase the cytotoxic activity generated by a given number of responding spleen cells without reducing the specificity. Heat-inactiviated VCN produced no such augmentation. This augmented cytotoxicity could be reproduced by preincubating (1 hr) the responding spleen cells with VCN (25 units/2.5 X 10(6) cells/ml) before addition of stimulating spleen cells. Preincubating the stimulator spleen cells with VCN had no effect. VCN preincubation of target cells or presensitized effector cells produced no augmentation. The addition of soluble VCN to the killing assay also did not increase cytotoxicity. Thus, VCN acts only during the generation of specifically sensitized cytotoxic T cells. When the effect of VCN on MLC reactivity, cell recovery and total cytotoxicity (lytic units/10(6) cells) were compared, it became apparent that VCN increases the proliferation of responder cells after stimulation resulting in both an increased number of cells and also an increase in the proportion of specifically sensitized cytotoxic cells in the culture. VCN treatment of responder cell membrane apparently permits a more ready response to allogenic antigens in culture facilitating both increased proliferation and the increased development of specific cytotoxic killers.

Animals

Cell-mediated reactivity to antigens shared by Moloney-virus-induced lymphomas (LSTRA) and certain 3-methylcholanthrene-induced mouse sarcomas.

Spleen cells (SC) both from BALB/c mice whose primary Moloney sarcoma virus (MSV)-induced sarcomas had spontaneously regressed and from normal, untreated BALB/c mice, were co-cultivated for 5 days with mitomycin-C-treated LSTRA cells; LSTRA is a BALB/c Moloney lymphoma which shares cell surface antigens with MSV-indiced sarcomas. These SC, referred to as CMR and CU cells, respectively, were shown to be cytotoxic to LSTRA cells in 3 h 51Cr-release assays; CMR cells showed, in most cases, the greatest lytic activity against LSTRA targets. The same SC were also reactive, in 20-h microcytotoxicity and 51Crassays, against target cells from a variety of transplanted sarcomas indiced by 3-methylcholanthrene (MCA) in Balb/c mice. The highest reactivity was seen when CMR or CU cells were tested against target cells from sarcoma lines that expressed an NB-ecotropic MuLV cross-reacting serologically with Moloney virus. Reactivity against isotope-labelled tumor cells expressing MuLV-associated cell surface antigens could be competititively inhibited by adding unlabelled tumor cells expressing such antigens. Finally, Winn assays were performed in which CMR cells strongly inhibited the outgrowth of cells from three sarcoma lines that express the NB-ecotropic MuLV. There was less but significant inhibition of cells from some other MCA sarcomas, either negative for the expression of MuLV-associated antigens or expressing the N-ecotropic endogenous BALB/c MuLV. CU cells enhanced tumor outgrowth in Winn assays at least as often as they inhibited it.

Animals

Cross-reacting antigens in chemically induced sarcomas are fetal determinants.

Serologic cross-reactivity has been demonstrated among three MCA-induced sarcomas in C57BL/6N female mice (MCA-2, MCA-3, and MCA-12) with a microcytotoxicity assay. Serum from mice bearing MCA-3 tumor was cytotoxic to both MCA-2 and MCA-3 tumor cells at a titer of 1:8. Sequential absorptions of this serum with syngeneic embryo cells completely eliminate cytotoxicity against MCA-2 cells without affecting the cytotoxic titer against MCA-3 cells. Serum hyperimmune to the MCA-3 tumor reacted with MCA-3, MCA-2, and MCA-12 tumors. Absorption of this serum with embryo cells eliminated cytotoxicity against MCA-2 and MCA-12 cells, but was incapable of lowering the titer against MCA-3 cells below 1:40. Similarly, serum hyperimmune to MCA-2 tumor was lytic to MCA-2, MCA-3, and MCA-12 before absorption, but was lytic only to MCA-2 cells after absorption with sygeneic embryo cells. Thus, the in vitro cross-reactivity between MCA-induced sarcomas is due to a common fetal antigen(s), which is distinct from the individual tumor-specific antigens of each tumor. Since these tumors do not exhibit cross-reactivity in in vivo challenge experiments, it appears that this fetal antigen is not responsible for in vivo immune protection.

Animals

Traumatic lesions of the discovertebral junction in the lumbar spine.

Lumbar discovertebral abnormalities thought to be due to endogenous or subclinical trauma were evaluated in 22 cases. These consisted of predominantly lytic areas due to intrabody disc herniation in five cases, broad zones of vertebral body sclerosis due to reactive osteitis in 11, and destruction of the vertebral endplates surrounded by diffuse sclerosis in six. Spinal biopsy and negative bacterial cultures were consistent with the diagnosis in eight cases. Follow-up roentgenograms and further clinical evaluation in the remaining 14 showed either no progression or changes consistent with trauma. Only four cases had a history of exogenous trauma. Intrabody disc herniations usually affected the upper vertebral body with characteristic sparing of the adjacent endplate. The sclerotic lesions tended to occur in the anterior portion of the vertebral body, with the inferior aspect of L4 most frequently involved. These may be confused with osteoblastic metastases, particularly if adjacent disc narrowing is minimal. The lack of progressive vertebral fragmentation helps to distinguish this condition from neuroarthropathy. Lesions characterized by destruction of the vertebral endplates and reactive sclerosis simulate infection; absence of a soft tissue mass and clinical signs of sepsis as well as lack of progression are important differential features.

Adult

Bone lesions in systemic acne (acne fulminans).

An 18-year-old West Indian male presented with severe sternal pain and an exacerbation of facial acne. Radiographs of the sternum revealed several lytic lesions which appeared as hot areas on successive technetium bone scans. Painful areas over the right iliac crest and left greater trochanter likewise appeared as transient hot areas on successive scans. Histology of affected bone revealed reactive changes only. High dose prednisolone provided rapid alleviation of pain, which recurred on reducing the dose to less than 10 mg daily. Auto-immune complex disease has been considered the most likely aetiological mechanism of systemic acne (acne fulminans), but lytic lesions of bone have never previously been reported in auto-immune disorders.

Acne Vulgaris

Low density of Thy 1 antigen on mouse effector cells mediating natural cytotoxicity against tumor cells.

Mouse effector cells mediating natural cell-mediated cytotoxicity against tumor cells were found to contain a low density of Thy 1 antigen. Treatment of nude spleen cells, or spleen cells from mice in which natural reactivity was boosted, with anti-Thy 1.2 plus complement resulted in a substantial decrease in cytotoxicity. The spontaneous cytotoxic reactivity of young, thymus-bearing mice was resistant to such treatment, but repeated exposure to anti-Thy 1.2 plus complement did cause a decrease in lytic activity. By use of congenic anti-Thy 1.2 and effector cells from mice congenic for Thy 1, the effects of the treatment were shown to be specific for Thy 1.2 antigen.

Animals

Biochemical and immunological characterization of deoxythymidine kinase of thymidine kinaseless HeLa cells biochemically transformed by herpes simplex virus type.

Thymidine kinase (TK) from herpes simplex virus type 1 (HSV-1) biochemically transformed HeLa cells, purified by affinity chromatography, has been characterized with respect to its electrophoretic mobility, molecular weight, activation energy, substrate specificity, and immunological specificity. TK purified from HSV-1-transformed HeLa cells has the same electrophoretic mobility as TK purified from HeLa cells lytically infected with HSV-1. The sedimentation velocity of purified TK from transformed cells was similar to that previously reported for the lytic enzyme, and its molecular weight was estimated to be 70,000. The activation energy of purified transformed-cell TK was 18.3 kcal/mol. Antiserum prepared against purified HSV-1 TK, although it showed some cross-reactivity, preferentially neutralized homologous TK. The transformed-cell TK antiserum also neutralized the deoxycytidine kinase activity of HSV-1-infected cell extracts but had no effect on deoxycytidine kinase activity of HSV-2-infected cell extract. These results further support the notion that TK acquired by HeLa cells transformed by HSV-1 is of viral and not of cellular origin.

Adenosine Triphosphate

Herpes simplex virus tumor-associated antigens in cancer patients.

Data are reported on the HSV nonstructural antigens detected in GPK and RK cells after infection with the same strain of virus. Both the HSV types 1 and 2 NV antigens consist of more than one component for which the immunized guinea pigs produce distinct antibodies. It was possible to separate by PAGE, HSV-induced markers not only from cells undergoing lytic infection by the virus but also from viable cells from squamous cell carcinoma of the head and neck and the urogenital tract. These fractions were tested with sera from cancer patients, and the percentages of their CF reactivity are reported. The specificity of the antibody to the antigen from the cancer cells was less high than that of the antibody to the antigen from HSV-infected cells. It is suggested that the use of these PAGE separate antigens would eliminate the need for removal of the virion antibody from the cancer sera prior to testing them for the NV-specific antibody.

Animals

Lymphoid cell fractionation by aggregated immunoglobulin-agarose columns.

Fractionation by columns of aggregated rat immunoglobulin (Agg Ig)-agarose was investigated as a method of separating different populations of lymphoid cells. With rat spleen cells, Agg Ig columns retained phagocytes, IgM- and IgG-antibody-forming-cells, cells mediating antibody- or PHA-induced lysis of chicken erythrocytes, and specifically immune splenocytes lytic to chicken erythrocytes without exogenous antibody. Agg Ig columns did not selectively remove 'B lymphocytes' (surface-Ig-bearing lymphocytes with or without EAC' receptors), or T lymphocytes capable of PHA-induced proliferation or graft-versus-host reactivity. With mouse spleen cells, Agg Ig columns retained alloimmune cytotoxic T cells.

Animals

Do natural killer cells engage in regulated reactions against self to ensure homeostasis?

Host reactivities not requiring immunization in the mouse, especially natural resistance of irradiated animals to accept grafts of normal or malignant hemopoietic cells, were compared with NK activity against the YAC-1 lymphoma. The effects of several independent variables known to influence natural resistance in vivo had a similar effect on the NK system. Figure 12 lists an impressive array of shared properties and positive correlations. In contrast, the distinctions were few and minor. Many of the positive correlations were of particular significance since the experimental variables either have opposing or no effects on conventional induced immunity. The multiplicity and pervasiveness of these correlations suggest that the cellular mechanisms underlying natural reactivities are similar or common. Cytotoxic effectors mediating natural resistance to normal cells, tumors, and cells infected with intracellular pathogens may be distinct in terms of target selectivity, yet belong to a single cell lineage subject to common regulatory influences for differentiation and function. Regulation of reactivity via suppressor cells was studied in the NK system only. The spleens of mice selected for low levels of NK activity (resulting from young age, irradiation, and treatment with the macrophage-active agents l-carrageenan or hydrocortisone acetate) contained cells capable of inhibiting the lytic function of NK effectors taken from untreated adult donors. All the suppressor cells studied were thymus-independent, as judged by their occurrence in spleens of genetically athymic mice; the suppressive function was resistant to 2000 rads of gamma-rays administered in vitro and was not restricted by the major histocompatibility complex, without exception. However, two major classes of suppressors were identified: (a) macrophagelike cells inducible by l-carrageenan or hydrocortisone acetate, and (b) nonadherent cells found in spleens of untreated infants and of irradiated adult mice. It is proposed that the suppression of NK cytolysis demonstrated in vitro was a manifestation of regulatory mechanisms modulating the level of NK activity in vivo. Macrophagelike cells that are induced, activated, or inactivated by bacteria, viruses, hormones, and other agents may act as regulators of differentiation, maturation, and function of cells belonging to the NK lineage. Nonadherent cells could be either a distinct class of suppressors or immature NK cells capable of binding but not lysing target cells. In the latter case, regulation would be achieved via competitive binding of targets by pre-NK cells presumably in dynamic equilibrium with functional (i.e. matured) NK effectors.

Animals

The preparation and chemical composition of fractions from Aspergillus fumigatus wall and protoplasts possessing antigenic activity.

A detergent-soluble fraction was prepared from the fragmented wall of Aspergillus fumigatus mycelium using the non-ionic detergent Triton X-100, and a wall-free extract was prepared from the same source in the form of protoplasts, released by a lytic enzyme system from Trichoderma harzianum. These extracts were examined by polyacrylamide gel electrophoresis and their detailed chemical composition was established. They were compared with the water-soluble fraction prepared from total mycelium, which is used routinely in this laboratory for serological tests. All fractions had immunological reactivity towards an antiserum prepared in rabbits against this water-soluble fraction of the mycelium, as shown by double diffusion. Both protein and carbohydrate moieties appear to be involved in the antigenic sites, with carbohydrate reactivity predominantly associated with the protoplast fraction. The fact that all preparations contained at least one common antigenic determinant, as judged by lines of identity to a single antiserum, is discussed in relation to antigen location.

Antigens, Fungal

Repression of varicella zoster virus gene expression during quiescent infection in the absence of detectable histone deposition.

Varicella zoster virus (VZV) is a human-specific herpesvirus that establishes latency in peripheral neurons. The only transcripts detected in infected human trigeminal ganglia (TG) obtained shortly after death correspond to the VZV latency-associated transcript (VLT) and associated VLT-ORF63 splice variants. In vitro studies showed that VLT-ORF63 is translated into a protein (pVLT-ORF63) that induces VZV transcription. The mechanisms that lead to this restricted gene expression and the transition to lytic replication remain unknown, partly due to the difficulty of working with human neurons. In this study, we addressed whether the neuroblastoma-derived cell line SH-SY5Y could serve as a model to investigate the mechanisms that lead to repression of VZV gene expression followed by reactivation. VZV productively infected differentiated SH-SY5Y (dSH-SY5Y) whereas incubation with acyclovir (ACV) inhibited virus replication and induced a progressive repression of the virus. Upon removal of ACV there was production of viral particles in a subset of cells, while others contained non-replicating VZV genomes and VLT-containing transcripts for at least 20 days post-infection (dpi). Exogenous expression of VLT-ORF63 induced productive infection, suggesting that the non-replicating and repressed genomes remained functional. Interestingly, histone deposition was undetectable at VZV genomes in quiescently infected dSH-SY5Y cells, pointing to a potential novel mechanism leading to VZV repression in this neuronal setting.

Humans

Tumor immunity to murine plasma cell tumors. III. Detection of common and unique tumor-associated antigens on BALB/c, C3H, and NZB plasmacytomas by in vivo and in vitro induction of tumor-immune responses.

Tumor-associated antigens (TAA) were demonstrated on plasmacytomas derived from BALB/c, NZB, and C3H mouse strains, by in vivo and in vitro techniques. By immunizing the appropriate F1 hybrid mice with these tumors, it was possible to show that all the plasmacytomas expressed cross-reactive tumor-associated transplantation antigens. When cytotoxic lymphocytes (CL) were induced in vitro by the coculturing of syngeneic or F1 hybrid spleen cells with irradiated plasmacytoma cells, "shared" and "unique" plasmacytoma TAA were demonstrable. This was accomplished by inducing CL in vitro against one syngeneic plasmacytoma and assaying for lytic activity on a range of 51Cr-labeled BALB/c, NZB and C3H plasmacytoma cells in vitro. In a second in vitro assay, unlabeled plasmacytoma cells were tested for their ability to inhibit the lysis of a particular 51Cr-labeled plasmacytoma, with the use of CL induced in vitro against it. The possibility that these TAA were "self" antigens was excluded by demonstrating in the inhibition assay that they were not present on T lymphomas and spleen cells of the same strain, and that CL "autosensitized" in vitro could not significantly lyse 51Cr-labeled plasmacytoma cells in vitro. From both in vivo and in vitro studies of immunity to these tumors, it was concluded that any one plasmacytoma line possesses multiple TAA of both shared and unique types.

Animals

A competitive labeling method for the determination of the chemical properties of solitary functional groups in proteins.

The properties of the functional groups in a protein can be used as built-in-probes of the structure of the protein. We have developed a general procedure whereby the ionization constant and chemical reactivity of solitary functional groups in proteins may be determined. The method may be applied to the side chain of histidine, tyrosine, lysine, and cysteine, as well as to the amino terminus of the protein. The method, which is an extension of the competitive labeling technique using [3H]- and [14C]1-fluoro-2,4-dinitrobenzene (N2ph-F) in a double-labeling procedure, is rapid and sensitive. Advantage is taken of the fact that after acid hydrolysis of a dinitrophenylated protein, a derivative is obtained which must be derived from a unique position in the protein. The method has been applied to the solitary histidine residue of lysozyme, alpha-lytic protease, and Streptomyces griseus (S.G.) trypsin, as well as to the amino terminus of the latter protein. The following parameters were obtained for reaction with N2ph-F at 20 degrees C in 0.1 N KCl: the histidine of hen egg-white lysozyme, pKa of 6.4 and second-order velocity constant of 0.188 M-1 min-1; the histidine of alpha-lytic protease, pKa of 6.5 and second-order velocity constant of 0.0235 M-1 min-1; the histidine of S.G. trypsin, pKa of 6.5 and second-order velocity constant of 0.0328 M-1 min-1; the valyl amino terminus of S.G. trypsin, pKa of 8.1 and second-order velocity constant of 0.403 M-1 min-1. In addition, the results obtained provide clues as to the microenvironments of these functional groups, and indicate that the proteins studied undergo pH-dependent conformational changes which affect the microenvironment, and hence the chemical reactivity of these groups.

Binding Sites