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- W2324688524 abstract "Future VirologyVol. 11, No. 3 EditorialHuman cancers and mammalian retroviruses: should we worry about bovine leukemia virus?Andrew C Munro & Charlotte HouldcroftAndrew C Munro School of Clinical Medicine, University of Cambridge, Long Road, Cambridge, CB2 0SP, UKSearch for more papers by this author & Charlotte Houldcroft*Author for correspondence: E-mail Address: c.houldcroft@ucl.ac.uk UCL Institute of Child Health, Guilford Street, London, WC1N 1EH, UKSearch for more papers by this authorPublished Online:22 Feb 2016https://doi.org/10.2217/fvl.16.5AboutSectionsView ArticleView Full TextPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsPermissionsReprints ShareShare onFacebookTwitterLinkedInReddit View articleKeywords: breast cancerHTLVvirologyXMRVzoonosisReferences1 Zur Hausen H, De Villiers EM. Dairy cattle serum and milk factors contributing to the risk of colon and breast cancers. Int. J. Cancer 137(4), 959–967 (2015).Crossref, Medline, CAS, Google Scholar2 Whitley C, Gunst K, Muller H, Funk M, Zur Hausen H, De Villiers EM. Novel replication-competent circular DNA molecules from healthy cattle serum and milk and multiple sclerosis-affected human brain tissue. Genome Announc. 2(4), pii:e00849-14 (2014).Crossref, Medline, Google Scholar3 Buehring GC, Shen HM, Jensen HM, Jin DL, Hudes M, Block G. Exposure to bovine leukemia virus is associated with breast cancer: a case–control study. PLoS ONE 10(9), e0134304 (2015).Crossref, Medline, Google Scholar4 Biswas HH, Kaidarova Z, Garratty G et al. Increased all-cause and cancer mortality in HTLV-II infection. J. Acquir. Immune. Defic. Syndr. 54(3), 290–296 (2010).Crossref, Medline, Google Scholar5 Voisset C, Weiss RA, Griffiths DJ. Human RNA ‘rumor’ viruses: the search for novel human retroviruses in chronic disease. Microbiol. Mol. Biol. Rev. 72(1), 157–196 (2008).Crossref, Medline, CAS, Google Scholar6 Buehring GC, Kramme PM, Schultz RD. Evidence for bovine leukemia virus in mammary epithelial cells of infected cows. Lab. Invest. 71(3), 359–365 (1994).Medline, CAS, Google Scholar7 Buehring GC, Philpott SM, Choi KY. Humans have antibodies reactive with bovine leukemia virus. AIDS Res. Hum. Retroviruses 19(12), 1105–1113 (2003).Crossref, Medline, CAS, Google Scholar8 Buehring GC, Shen HM, Jensen HM, Choi KY, Sun D, Nuovo G. Bovine leukemia virus DNA in human breast tissue. Emerg. Infect. Dis. 20(5), 772–782 (2014).Crossref, Medline, CAS, Google Scholar9 Tang KW, Alaei-Mahabadi B, Samuelsson T, Lindh M, Larsson E. The landscape of viral expression and host gene fusion and adaptation in human cancer. Nat. Commun. 4, 2513 (2013).Crossref, Medline, Google Scholar10 Vinner L, Mourier T, Friis-Nielsen J et al. Investigation of human cancers for retrovirus by low-stringency target enrichment and high-throughput sequencing. Sci. Rep. 5, 13201 (2015).Crossref, Medline, CAS, Google Scholar11 Fimereli D, Gacquer D, Fumagalli D et al. No significant viral transcription detected in whole breast cancer transcriptomes. BMC Cancer 15, 147 (2015).Crossref, Medline, Google Scholar12 Banerjee S, Wei Z, Tan F et al. Distinct microbiological signatures associated with triple negative breast cancer. Sci. Rep. 5, 15162 (2015).Crossref, Medline, CAS, Google Scholar13 Jackson RB, Little CC. The existence of non-chromosomal influence in the incidence of mammary tumors in mice. Science 78(2029), 465–466 (1933).Crossref, Medline, CAS, Google Scholar14 Segev N, Hizi A, Kirenberg F, Keydar I. Characterization of a protein, released by the t47d cell line, immunologically related to the major envelope protein of mouse mammary tumor virus. Proc. Natl Acad. Sci. USA 82(5), 1531–1535 (1985).Crossref, Medline, CAS, Google Scholar15 Moore DH, Sarkar NH, Kelly CE, Pillsbury N, Charney J. Type B particles in human milk. Tex. Rep. Biol. Med. 27(4), 1027–1039 (1969).Medline, CAS, Google Scholar16 Joshi D, Buehring GC. Are viruses associated with human breast cancer? Scrutinizing the molecular evidence. Breast Cancer Res. Treat. 135(1), 1–15 (2012).Crossref, Medline, Google Scholar17 Urisman A, Molinaro RJ, Fischer N et al. Identification of a novel gammaretrovirus in prostate tumors of patients homozygous for R462Q RNASEL variant. PLoS Pathog. 2(3), e25 (2006).Crossref, Medline, Google Scholar18 Lee D, Das Gupta J, Gaughan C et al. In-depth investigation of archival and prospectively collected samples reveals no evidence for XMRV infection in prostate cancer. PLoS ONE 7(9), e44954 (2012).Crossref, Medline, CAS, Google Scholar19 Hue S, Gray ER, Gall A et al. Disease-associated XMRV sequences are consistent with laboratory contamination. Retrovirology 7(1), 111 (2010).Crossref, Medline, CAS, Google Scholar20 Katzourakis A, Hue S, Kellam P, Towers GJ. Phylogenetic analysis of murine leukemia virus sequences from longitudinally sampled chronic fatigue syndrome patients suggests PCR contamination rather than viral evolution. J. Virol. 85(20), 10909–10913 (2011).Crossref, Medline, CAS, Google Scholar21 Erlwein O, Robinson MJ, Dustan S, Weber J, Kaye S, Mcclure MO. DNA extraction columns contaminated with murine sequences. PLoS ONE 6(8), e23484 (2011).Crossref, Medline, CAS, Google Scholar22 Paprotka T, Delviks-Frankenberry KA, Cingoz O et al. Recombinant origin of the retrovirus XMRV. Science 333(6038), 97–101 (2011).Crossref, Medline, CAS, Google Scholar23 Naccache SN, Greninger AL, Lee D et al. The perils of pathogen discovery: origin of a novel parvovirus-like hybrid genome traced to nucleic acid extraction spin columns. J. Virol. 87(22), 11966–11977 (2013).Crossref, Medline, CAS, Google Scholar24 Salter SJ, Cox MJ, Turek EM et al. Reagent and laboratory contamination can critically impact sequence-based microbiome analyses. BMC Biol. 12, 87 (2014).Crossref, Medline, Google Scholar25 Kincaid RP, Burke JM, Sullivan CS. RNA virus microRNA that mimics a B-cell oncomir. Proc. Natl Acad. Sci. USA 109(8), 3077–3082 (2012).Crossref, Medline, CAS, Google ScholarFiguresReferencesRelatedDetailsCited ByBovine milk transcriptome analysis reveals microRNAs and RNU2 involved in mastitis15 November 2019 | The FEBS Journal, Vol. 287, No. 9Current Trends in Diagnostics of Viral Infections of Unknown Etiology14 February 2020 | Viruses, Vol. 12, No. 2A survey on human T-cell lymphotropic virus type 1 (HTLV-1) and xenotropic murine leukemia virus-related virus (XMRV) coinfection in Tehran, IranJournal of Pharmacy And Bioallied Sciences, Vol. 10, No. 3Clinical and biological insights from viral genome sequencing16 January 2017 | Nature Reviews Microbiology, Vol. 15, No. 3 Vol. 11, No. 3 Follow us on social media for the latest updates Metrics Downloaded 82 times History Published online 22 February 2016 Published in print March 2016 Information© Future Medicine LtdKeywordsbreast cancerHTLVvirologyXMRVzoonosisFinancial & competing interests disclosureC Houldcroft is funded by GOSH/UCL NIHR Biomedical Resource Centre and Action Medical Research grant GN2424. The authors have no other relevant affiliations or financial involvement with any organization or entity with a financial interest in or financial conflict with the subject matter or materials discussed in the manuscript apart from those disclosed.No writing assistance was utilized in the production of this manuscript.PDF download" @default.
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