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Genes & Development|December 1, 1989
Flexible recognition of rapidly evolving promoter sequences by mitochondrial transcription factor 1R P Fisher, M A Parisi, D A ClaytonJournal of Molecular Biology|May 26, 1995
Addition of a 29 residue carboxyl-terminal tail converts a simple HMG box-containing protein into a transcriptional activatorD J Dairaghi, G S Shadel, D A ClaytonThe Journal of Biological Chemistry|February 15, 1986
Both the conserved stem-loop and divergent 5'-flanking sequences are required for initiation at the human mitochondrial origin of light-strand DNA replicationJ E Hixson, T W Wong, D A ClaytonBasic Life Sciences|January 1, 1975
Absence of a pyrimidine dimer repair mechanism for mitochondrial DNA in mouse and human cellsD A Clayton, J N Doda, E C FriedbergThe Journal of Biological Chemistry|October 25, 1992
Characterization of a Xenopus laevis ribonucleoprotein endoribonuclease. Isolation of the RNA component and its expression during developmentJ L Bennett, S Jeong-Yu, D A ClaytonMolecular Reproduction and Development|November 1, 1995
Distribution of RNase MRP RNA during Xenopus laevis oogenesisA F Davis, S Jeong-Yu, D A ClaytonCell|October 9, 1987
Yeast mitochondrial RNA polymerase is homologous to those encoded by bacteriophages T3 and T7B S Masters, L L Stohl, D A ClaytonJournal of Virology|August 1, 1974
DNA of a human hepatitis B virus candidateW S Robinson, D A Clayton, R L GreenmanCell|July 17, 1987
Promoter selection in human mitochondria involves binding of a transcription factor to orientation-independent upstream regulatory elementsR P Fisher, J N Topper, D A ClaytonThe Journal of Biological Chemistry|August 25, 1983
Identification of the 3'-ends of the two mouse mitochondrial ribosomal RNAs. The 3'-end of 16 S ribosomal RNA contains nucleotides encoded by the gene for transfer RNALeuUURR A Van Etten, J W Bird, D A ClaytonPageof 14