Horizontal Transfer of DNA by the Uptake of Apoptotic Bodies
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Summary
The findings suggest that apoptotic bodies derived from EBV-carrying B lymphocytes may serve as the source of viral transfer to cells that lack receptors for the EBV virus in vivo.
- Type
- article
- Published
- 1999-06-01
- Cited by
- 270
- References
- 46
- OpenAlex
- https://openalex.org/W1931655778
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2938353
Keywords
Biology, Apoptosis, Molecular biology, In situ hybridization, Epstein–Barr virus
References
- B cell phenotype-dependent expression of the Epstein-Barr virus nuclear antigens EBNA-2 to EBNA-6: studies with somatic cell hybrids.
- Association of Epstein-Barr virus with undifferentiated gastric carcinomas with intense lymphoid infiltration. Lymphoepithelioma-like carcinoma.
- Gene transfer in fungi.
- Stable transfection of Epstein-Barr virus (EBV) nuclear antigen 2 in lymphoma cells containing the EBV P3HR1 genome induces expression of B-cell activation molecules CD21 and CD23
- Apoptotic neutrophils are phagocytosed by fibroblasts with participation of the fibroblast vitronectin receptor and involvement of a mannose/fucose-specific lectin.
- Genetic instabilities in human cancers
- Loss of the p21(Cip1/Waf1) cyclin kinase inhibitor results in propagation of horizontally transferred DNA.
- When Epstein-Barr virus persistently infects B-cell lines, it frequently integrates
- Functional gene transfer of HIV DNA by an HIV receptor-independent mechanism.
- Epstein-Barr virus-associated gastric adenocarcinoma.
- Expression of Epstein‐Barr virus‐encoded proteins in nasopharyngeal carcinoma
- The role of methylation in the phenotype-dependent modulation of Epstein-Barr nuclear antigen 2 and latent membrane protein genes in cells latently infected with Epstein-Barr virus.
- The association of Epstein-Barr virus with smooth-muscle tumors occurring after organ transplantation.
- Cellular localization of an Epstein‐Barr virus (EBV)‐associated complement‐fixing antigen in producer and non‐producer lymphoblastoid cell lines
- Cloning and mapping of BamHi endonuclease fragments of DNA from the transforming B95-8 strain of Epstein-Barr virus.
- Antiangiogenis restricted tumor dormancy
- Release of infectious Epstein-Barr virus by transformed marmoset leukocytes.
- Horizontal transfer of oncogenes by uptake of apoptotic bodies
- Oral somatic transgene vaccination using attenuated S. typhimurium.
- Sensitivity of Epstein‐Barr virus (EBV) producer and non‐producer human lymphoblastoid cell lines to superinfection with EB‐virus
Cited by
- Immunohistochemical and in situ hybridization studies of the liver and kidney in human leptospirosis
- The Paradoxical Dynamism of Marrow Stem Cells: Considerations of Stem Cells, Niches, and Microvesicles
- Microvesicles: ubiquitous contributors to infection and immunity
- Primo-Vascular System as Presented by Bong Han Kim
- Tumacrophage: macrophages transformed into tumor stem-like cells by virulent genetic material from tumor cells
- Exosomal miRNAs as novel cancer biomarkers: Challenges and opportunities
- Genetic Defects as Tumor Markers
- Horizontal transfer of DNA and the "genometastasis hypothesis".
- Circulating nucleic acids in plasma and serum (CNAPS) and its relation to stem cells and cancer metastasis: state of the issue.
- The disposal of dying cells in living tissues
- Circulating DNA markers of gastro-intestinal cancers
- Do Circulating Tumor Cells, Exosomes, and Circulating Tumor Nucleic Acids Have Clinical Utility?: A Report of the Association for Molecular Pathology.
- Etude des vésicules membranaires produites par les Archées hyperthermophiles marines de l’ordre des Thermococcales
- Infection and inflammation : impacts on oncogenesis
- Triggering of Dendritic Cell Responses after Exposure to Activated, but Not Resting, Apoptotic PBMCs1
- Co-opting macrophage traits in cancer progression: a consequence of tumor cell fusion?
- Loss of the p21(Cip1/Waf1) cyclin kinase inhibitor results in propagation of horizontally transferred DNA.
- The contributions of Santiago Ramón y Cajal to cancer research — 100 years on
- Apoptosis-mediated enhancement of DNA-raised immune responses by mutant caspases
- Cell-derived microparticles: new targets in the therapeutic management of disease.
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