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Molecular and Cellular Biology|October 1, 1983
Identification of multiple RNases in Xenopus laevis oocytes and their possible role in tRNA processingA Solari, M P DeutscherCell|August 9, 1996
Maturation pathways for E. coli tRNA precursors: a random multienzyme process in vivoZ Li, M P DeutscherBiochemical and Biophysical Research Communications|October 31, 1991
The NH2-terminal extension of rat liver arginyl-tRNA synthetase is responsible for its hydrophobic propertiesS Huang, M P DeutscherProceedings of the National Academy of Sciences of the United States of America|February 1, 1980
Apparent involvement of ribonuclease D in the 3' processing of tRNA precursorsH Cudny, M P DeutscherThe Journal of Biological Chemistry|August 10, 2000
Active aminoacyl-tRNA synthetases are present in nuclei as a high molecular weight multienzyme complexL Nathanson, M P DeutscherProceedings of the National Academy of Sciences of the United States of America|July 18, 1995
The tRNA processing enzyme RNase T is essential for maturation of 5S RNAZ Li, M P DeutscherProceedings of the National Academy of Sciences of the United States of America|August 1, 1995
A channeled tRNA cycle during mammalian protein synthesisR Stapulionis, M P DeutscherGene|September 21, 1992
The Escherichia coli rna gene encoding RNase I: sequence and unusual promoter structureL Zhu, M P DeutscherThe Journal of Biological Chemistry|April 5, 1990
Free fatty acids associated with the high molecular weight aminoacyl-tRNA synthetase complex influence its structure and functionP Sivaram, M P DeutscherThe Journal of Biological Chemistry|December 10, 1980
Dissection of the active site of rabbit liver tRNA nucleotidyltransferase. Specificity and properties of the tRNA and acceptor subsites determined with model acceptor substratesP Masiakowski, M P DeutscherPageof 32