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Proceedings of the National Academy of Sciences of the United States of America|May 1, 1989
High initiation rates at the ribosomal gene promoter do not depend upon spacer transcriptionP Labhart, R H ReederNucleic Acids Research|September 11, 1990
Functional difference between the sites of ribosomal 40S precursor 3' end formation in Xenopus laevis and Xenopus borealisP Labhart, R H ReederProceedings of the National Academy of Sciences of the United States of America|January 1, 1987
Heat shock stabilizes highly unstable transcripts of the Xenopus ribosomal gene spacerP Labhart, R H ReederCell|May 1, 1984
Enhancer-like properties of the 60/81 bp elements in the ribosomal gene spacer of Xenopus laevisP Labhart, R H ReederCell|July 3, 1987
Ribosomal precursor 3' end formation requires a conserved element upstream of the promoterP Labhart, R H ReederMolecular and Cellular Biology|May 1, 1987
A 12-base-pair sequence is an essential element of the ribosomal gene terminator in Xenopus laevisP Labhart, R H ReederCell|May 9, 1986
Characterization of three sites of RNA 3' end formation in the Xenopus ribosomal gene spacerP Labhart, R H ReederGenes & Development|February 1, 1990
A point mutation uncouples RNA 3'-end formation and termination during ribosomal gene transcription in Xenopus laevisP Labhart, R H ReederNucleic Acids Research|December 20, 1985
Xenopus ribosomal gene enhancers function when inserted inside the gene they enhanceP Labhart, R H ReederGene Expression|January 1, 1992
Characterization of two types of ribosomal gene transcription in Xenopus laevis oocytesP LabhartPageof 9