Citation: Cy. Lu et al., ADENOVIRUS-MEDIATED INCREASE OF EXOGENOUS AND INHIBITION OF ENDOGENOUS FOSB GENE-EXPRESSION IN CULTURED PULMONARY ARTERIAL SMOOTH-MUSCLE CELLS, Journal of Molecular and Cellular Cardiology, 28(8), 1996, pp. 1703-1713
Citation: Kc. Rogers et al., AMINOACYLATION OF TRANSFER-RNAS WITH 2-THIOURIDINE DERIVATIVES IN THEWOBBLE POSITION OF THE ANTICODON, Biochimie, 77(1-2), 1995, pp. 66-74
Citation: Kc. Rogers et D. Soll, DIVERGENCE OF GLUTAMATE AND GLUTAMINE AMINOACYLATION PATHWAYS - PROVIDING THE EVOLUTIONARY RATIONALE FOR MISCHARGING, Journal of molecular evolution, 40(5), 1995, pp. 476-481
Citation: Cy. Lu et al., ADENOVIRUS-MEDIATED INCREASE OR INHIBITION OF FOSB GENE-EXPRESSION INPULMONARY ARTERIAL SMOOTH-MUSCLE CELLS, Circulation, 92(8), 1995, pp. 1415-1415
Authors:
ROGERS MJ
WEYGANDDURASEVIC I
SCHWOB E
SHERMAN JM
ROGERS KC
ADACHI T
INOKUCHI H
SOLL D
Citation: Mj. Rogers et al., SELECTIVITY AND SPECIFICITY IN THE RECOGNITION OF TRANSFER-RNA BY E-COLI GLUTAMINYL-TRANSFER-RNA SYNTHETASE, Biochimie, 75(12), 1993, pp. 1083-1090
Citation: Kc. Rogers et D. Soll, DISCRIMINATION AMONG TRANSFER-RNAS INTERMEDIATE IN GLUTAMATE AND GLUTAMINE ACCEPTOR IDENTITY, Biochemistry, 32(51), 1993, pp. 14210-14219
Authors:
SYLVERS LA
ROGERS KC
SHIMIZU M
OHTSUKA E
SOLL D
Citation: La. Sylvers et al., A 2-THIOURIDINE DERIVATIVE IN TRANSFER RNA(GLU) IS A POSITIVE DETERMINANT FOR AMINOACYLATION BY ESCHERICHIA-COLI GLUTAMYL-TRANSFER RNA-SYNTHETASE, Biochemistry, 32(15), 1993, pp. 3836-3841