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Methods in Molecular Biology (Clifton, N.J.)|October 28, 2004
Human papillomavirus type 31 life cycle: methods for study using tissue culture modelsFrauke Fehrmann, Laimonis A LaiminsOncogene|August 12, 2003
Human papillomaviruses: targeting differentiating epithelial cells for malignant transformationFrauke Fehrmann, Laimonis A LaiminsJournal of Virology|May 14, 2005
Role of the E1--E4 protein in the differentiation-dependent life cycle of human papillomavirus type 31Regina Wilson, Frauke Fehrmann, Laimonis A LaiminsJournal of Virology|February 14, 2003
Human papillomavirus type 31 E5 protein supports cell cycle progression and activates late viral functions upon epithelial differentiationFrauke Fehrmann, David J Klumpp, Laimonis A LaiminsJournal of Virology|October 28, 2004
Role of the PDZ domain-binding motif of the oncoprotein E6 in the pathogenesis of human papillomavirus type 31Choongho Lee, Laimonis A LaiminsTrends in Microbiology|November 6, 2010
Persistence of human papillomavirus infection: keys to malignant progressionJason Bodily, Laimonis A LaiminsPlos Pathogens|April 18, 2013
The JAK-STAT transcriptional regulator, STAT-5, activates the ATM DNA damage pathway to induce HPV 31 genome amplification upon epithelial differentiationShiyuan Hong, Laimonis A LaiminsTrends in Cancer|September 13, 2016
Human papillomaviruses: research priorities for the next decadeErika Langsfeld, Laimonis A LaiminsFuture Microbiology|November 26, 2013
Regulation of the life cycle of HPVs by differentiation and the DNA damage responseShiyuan Hong, Laimonis A LaiminsJournal of Virology|March 8, 2013
Human papillomaviruses modulate microRNA 145 expression to directly control genome amplificationVignesh Gunasekharan, Laimonis A LaiminsPageof 8