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Journal of Virology|April 1, 1990
Analysis of human papillomavirus type 16 late mRNA 3' processing signals in vitro and in vivoI M Kennedy, J K Haddow, J B ClementsThe Journal of General Virology|August 1, 1996
Immediate early protein IE63 of herpes simplex virus type 1 binds RNA directlyA Ingram, A Phelan, J Dunlop, et al.Biochemical Society Transactions|May 27, 2005
The herpes simplex virus ICP27 protein: a multifunctional post-transcriptional regulator of gene expressionR W P Smith, P Malik, J B ClementsJournal of Virology|April 1, 1991
A negative regulatory element in the human papillomavirus type 16 genome acts at the level of late mRNA stabilityI M Kennedy, J K Haddow, J B ClementsJournal of Virology|December 1, 1992
An autophosphorylating but not transphosphorylating activity is associated with the unique N terminus of the herpes simplex virus type 1 ribonucleotide reductase large subunitJ Conner, J Cooper, J Furlong, et al.Journal of Virology|November 1, 1984
A tandemly reiterated DNA sequence in the long repeat region of herpes simplex virus type 1 found in close proximity to immediate-early mRNA 1F J Rixon, M E Campbell, J B ClementsJournal of Virology|July 1, 1979
Separation and characterization of herpes simplex virus type 1 immediate-early mRNA'sR J Watson, C M Preston, J B ClementsThe EMBO Journal|January 1, 1982
The immediate-early mRNA that encodes the regulatory polypeptide Vmw 175 of herpes simplex virus type 1 is unsplicedF J Rixon, M E Campbell, J B ClementsJournal of Virology|March 1, 1996
Regulation of herpes simplex virus poly (A) site usage and the action of immediate-early protein IE63 in the early-late switchF McGregor, A Phelan, J Dunlop, et al.Journal of Epidemiology and Community Health|July 16, 2008
When can group level clustering be ignored? Multilevel models versus single-level models with sparse dataP ClarkePageof 83