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Gene|June 23, 2009
Classification and nomenclature of endogenous retroviral sequences (ERVs): problems and recommendationsJonas Blomberg, Farid Benachenhou, Vidar Blikstad, et al.Journal of Virology|July 29, 2004
Human endogenous retrovirus family HERV-K(HML-5): status, evolution, and reconstruction of an ancient betaretrovirus in the human genomeLaurence Lavie, Patrik Medstrand, Werner Schempp, et al.International Journal of Oncology|August 13, 2008
Tumor hypoxia: Impact on gene amplification in glioblastomaUlrike Fischer, Jens Radermacher, Jens Mayer, et al.Journal of Virology|February 15, 2005
Human endogenous retrovirus HERV-K14 families: status, variants, evolution, and mobilization of other cellular sequencesAline Flockerzi, Stefan Burkhardt, Werner Schempp, et al.Genome Biology and Evolution|January 23, 2013
Transcriptional profiling of human endogenous retrovirus group HERV-K(HML-2) loci in melanomaKatja Schmitt, Jörg Reichrath, Alexander Roesch, et al.BMC Evolutionary Biology|January 21, 2018
HERV-W group evolutionary history in non-human primates: characterization of ERV-W orthologs in Catarrhini and related ERV groups in PlatyrrhiniNicole Grandi, Marta Cadeddu, Jonas Blomberg, et al.Journal of Virology|December 23, 2004
CpG methylation directly regulates transcriptional activity of the human endogenous retrovirus family HERV-K(HML-2)Laurence Lavie, Milena Kitova, Esther Maldener, et al.Mobile DNA|March 10, 2015
HERV-K(HML-2) rec and np9 transcripts not restricted to disease but present in many normal human tissuesKatja Schmitt, Kristina Heyne, Klaus Roemer, et al.Acta Neuropathologica Communications|July 18, 2020
C9orf72-associated SMCR8 protein binds in the ubiquitin pathway and with proteins linked with neurological diseaseJohn L Goodier, Alisha O Soares, Gavin C Pereira, et al.Genome Research|November 3, 2004
The human L1 promoter: variable transcription initiation sites and a major impact of upstream flanking sequence on promoter activityLaurence Lavie, Esther Maldener, Brook Brouha, et al.Pageof 9