Citation: My. Galperin et Mj. Jedrzejas, Conserved core structure and active site residues in alkaline phosphatase superfamily enzymes, PROTEINS, 45(4), 2001, pp. 318-324
Citation: My. Galperin et al., Novel domains of the prokaryotic two-component signal transduction systems(vol 203, pg 11, 2001), FEMS MICROB, 204(1), 2001, pp. 213-214
Authors:
Tatusov, RL
Natale, DA
Garkavtsev, IV
Tatusova, TA
Shankavaram, UT
Rao, BS
Kiryutin, B
Galperin, MY
Fedorova, ND
Koonin, EV
Citation: Rl. Tatusov et al., The COG database: new developments in phylogenetic classification of proteins from complete genomes, NUCL ACID R, 29(1), 2001, pp. 22-28
Authors:
Jordan, IK
Natale, DA
Koonin, EV
Galperin, MY
Citation: Ik. Jordan et al., Independent evolution of heavy metal-associated domains in copper chaperones and copper-transporting ATPases, J MOL EVOL, 53(6), 2001, pp. 622-633
Citation: My. Galperin et Nv. Grishin, The synthetase domains of cobalamin biosynthesis amidotransferases CobB and CobQ belong to a new family of ATP-dependent amidoligases, related to dethiobiotin synthetase, PROTEINS, 41(2), 2000, pp. 238-247
Citation: My. Galperin et al., Aldolases of the DhnA family: a possible solution to the problem of pentose and hexose biosynthesis in archaea, FEMS MICROB, 183(2), 2000, pp. 259-264
Authors:
Tatusov, RL
Galperin, MY
Natale, DA
Koonin, EV
Citation: Rl. Tatusov et al., The COG database: a tool for genome-scale analysis of protein functions and evolution, NUCL ACID R, 28(1), 2000, pp. 33-36
Citation: Lb. Sanchez et al., Acetyl-CoA synthetase from the amitochondriate eukaryote Giardia lamblia belongs to the newly recognized superfamily of acyl-CoA synthetases (nucleoside diphosphate-forming), J BIOL CHEM, 275(8), 2000, pp. 5794-5803
Authors:
Makarova, KS
Aravind, L
Galperin, MY
Grishin, NV
Tatusov, RL
Wolf, YI
Koonin, EV
Citation: Ks. Makarova et al., Comparative genomics of the archaea (Euryarchaeota): Evolution of conserved protein families, the stable core, and the variable shell, GENOME RES, 9(7), 1999, pp. 608-628
Citation: My. Galperin et D. Frishman, Towards automated prediction of protein function from microbial genomic sequences, METH MICROB, 28, 1999, pp. 245-263
Citation: My. Galperin et Ev. Koonin, Functional genomics and enzyme evolution - Homologous and analogous enzymes encoded in microbial genomes, GENETICA, 106(1-2), 1999, pp. 159-170
Citation: My. Galperin et al., A superfamily of metalloenzymes unifies phosphopentomutase and cofactor-independent phosphoglycerate mutase with alkaline phosphatases and sulfatases, PROTEIN SCI, 7(8), 1998, pp. 1829-1835