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Nucleic Acids Research|January 25, 1992
In vitro definition of the yeast RNA polymerase I promoterS Y Choe, M C Schultz, R H ReederDevelopmental Biology|April 1, 1984
Anucleolate frog embryos contain ribosomal DNA sequences and a nucleolar antigenR E Steele, P S Thomas, R H ReederProceedings of the National Academy of Sciences of the United States of America|December 1, 1977
Sites of transcription initiation in vivo on Xenopus laevis ribosomal DNAR H Reeder, B Sollner-Webb, H L WahnProceedings of the National Academy of Sciences of the United States of America|February 1, 1991
Specific initiation by RNA polymerase I in a whole-cell extract from yeastM C Schultz, S Y Choe, R H ReederProceedings of the National Academy of Sciences of the United States of America|November 1, 1983
Transcription in cloned spacers of Xenopus laevis ribosomal DNAG T Morgan, R H Reeder, A H BakkenThe Journal of Biological Chemistry|July 5, 1996
The yeast transcription terminator for RNA polymerase I is designed to prevent polymerase slippageS W Jeong, W H Lang, R H ReederMolecular and Cellular Biology|May 1, 1993
In vitro definition of the yeast RNA polymerase I enhancerM C Schultz, S Y Choe, R H ReederMolecular and Cellular Biology|November 1, 1995
The release element of the yeast polymerase I transcription terminator can function independently of Reb1pS W Jeong, W H Lang, R H ReederMolecular and Cellular Biology|April 1, 1984
Plasmids containing mouse rDNA do not recombine with cellular ribosomal genes when introduced into cultured mouse cellsR E Steele, A H Bakken, R H ReederCell|February 1, 1978
DNA synthesis in a multi-enzyme system from Xenopus laevis eggsR M Benbow, M R Krauss, R H ReederPageof 9