Authors:
Gutgsell, N
Englund, N
Niu, LH
Kaya, Y
Lane, BG
Ofengand, J
Citation: N. Gutgsell et al., Deletion of the Escherichia coli pseudouridine synthase gene truB blocks formation of pseudouridine 55 in tRNA in vivo, does not affect exponential growth, but confers a strong selective disadvantage in competition with wild-type cells, RNA, 6(12), 2000, pp. 1870-1881
Citation: Lh. Niu et al., High-affinity binding to the GM-CSF receptor requires intact N-glycosylation sites in the extracellular domain of the beta subunit, BLOOD, 95(11), 2000, pp. 3357-3362
Citation: J. Conrad et al., 16S ribosomal RNA pseudouridine synthase RsuA of Escherichia coli: Deletion, mutation of the conserved Asp102 residue, and sequence comparison among all other pseudouridine synthases, RNA, 5(6), 1999, pp. 751-763
Citation: S. Raychaudhuri et al., Functional effect of deletion and mutation of the Escherichia coli ribosomal RNA and tRNA pseudouridine synthase RluA, J BIOL CHEM, 274(27), 1999, pp. 18880-18886
Citation: Lh. Niu et al., Kinetic resolution of two mechanisms for high-affinity granulocyte-macrophage colony-stimulating factor binding to its receptor, BLOOD, 94(11), 1999, pp. 3748-3753
Citation: Lh. Niu et J. Ofengand, Cloning and characterization of the 23S RNA pseudouridine 2633 synthase from Bacillus subtilis, BIOCHEM, 38(2), 1999, pp. 629-635