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Cell|September 20, 1996
Translational recoding induced by G-rich mRNA sequences that form unusual structuresB C Horsburgh, H Kollmus, H Hauser, et al.RNA (New York, N.Y.)|April 1, 1996
Regulated ribosomal frameshifting by an RNA-protein interactionH Kollmus, M W Hentze, H HauserJournal of Virology|September 1, 1994
The sequences of and distance between two cis-acting signals determine the efficiency of ribosomal frameshifting in human immunodeficiency virus type 1 and human T-cell leukemia virus type II in vivoH Kollmus, A Honigman, A Panet, et al.Journal of Virology|September 1, 1993
A heptanucleotide sequence mediates ribosomal frameshifting in mammalian cellsH Reil, H Kollmus, U H Weidle, et al.The Journal of Infectious Diseases|September 5, 1998
Recurrent acyclovir-resistant herpes simplex in an immunocompromised patient: can strain differences compensate for loss of thymidine kinase in pathogenesis?B C Horsburgh, S H Chen, A Hu, et al.Trends in Biochemical Sciences|May 1, 1995
Cytoplasmic mRNA-protein interactions in eukaryotic gene expressionJ E McCarthy, H KollmusVirus Research|November 1, 1995
Cloning, sequencing and expression of the S protein gene from two geographically distinct strains of canine coronavirusB C Horsburgh, T D BrownNucleic Acids Research|April 1, 1996
Analysis of eukaryotic mRNA structures directing cotranslational incorporation of selenocysteineH Kollmus, L Flohé, J E McCarthyZeitschrift Fur Ernahrungswissenschaft|April 29, 1998
Test system for quantification of stop codon suppression by selenocysteine insertion in mammalian cell linesH Kollmus, J E McCarthy, L FlohéThe Journal of Antimicrobial Chemotherapy|October 1, 1986
General aspects of virus drug resistance with special reference to herpes simplex virusD M CoenPageof 47