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Molecular and Cellular Biology|February 1, 1989
The C-terminal domain of transcription factor IIIA interacts differently with different 5S RNA genesY Y Xing, A WorcelGenes & Development|July 1, 1989
A 3' exonuclease activity degrades the pseudogene 5S RNA transcript and processes the major oocyte 5S RNA transcript in Xenopus oocytesY Y Xing, A WorcelCell|July 1, 1985
The positive transcription factor of the 5S RNA gene induces a 5S DNA-specific gyration in Xenopus oocyte extractsE B Kmiec, A WorcelThe Journal of Cell Biology|September 1, 1986
The positive transcription factor of the 5S RNA gene proteolyses during direct exchange between 5S DNA sitesE B Kmiec, A WorcelMolecular and Cellular Biology|October 1, 1988
Characterization of the repressed 5S DNA minichromosomes assembled in vitro with a high-speed supernatant of Xenopus laevis oocytesA Shimamura, D Tremethick, A WorcelGene|August 1, 1983
A simple procedure for parallel sequence analysis of both strands of 5'-labeled DNAF Razvi, G Gargiulo, A WorcelThe Journal of Biological Chemistry|March 25, 1990
The transcription complex of the 5 S RNA gene, but not transcription factor IIIA alone, prevents nucleosomal repression of transcriptionD Tremethick, K Zucker, A WorcelCell|September 1, 1984
Assembly of transcriptionally active chromatin in Xenopus oocytes requires specific DNA binding factorsG Gargiulo, F Razvi, A WorcelProceedings of the National Academy of Sciences of the United States of America|March 1, 1981
Structure of chromatin and the linking number of DNAA Worcel, S Strogatz, D RileyCell|November 1, 1976
A model for chromatin based upon two symmetrically paired half-nucleosomesH Weintraub, A Worcel, B AlbertsPageof 4