Structural basis for the 3′‐5′ exonuclease activity of Escherichia coli DNA polymerase I: a two metal ion mechanism. LS Beese, TA Steitz The EMBO journal 10 (1), 25-33, 1991 | 1353 | 1991 |
Structure of DNA polymerase I Klenow fragment bound to duplex DNA LS Beese, V Derbyshire, TA Steitz Science 260 (5106), 352-355, 1993 | 714 | 1993 |
Visualizing DNA replication in a catalytically active Bacillus DNA polymerase crystal JR Kiefer, C Mao, JC Braman, LS Beese Nature 391 (6664), 304-307, 1998 | 697 | 1998 |
Crystal structure of protein farnesyltransferase at 2.25 angstrom resolution HW Park, SR Boduluri, JF Moomaw, PJ Casey, LS Beese Science 275 (5307), 1800-1805, 1997 | 490 | 1997 |
Genetic and crystallographic studies of the 3′, 5′-exonucleolytic site of DNA polymerase I V Derbyshire, PS Freemont, MR Sanderson, L Beese, JM Friedman, ... Science 240 (4849), 199-201, 1988 | 477 | 1988 |
Cocrystal structure of an editing complex of Klenow fragment with DNA. PS Freemont, JM Friedman, LS Beese, MR Sanderson, TA Steitz Proceedings of the National Academy of Sciences 85 (23), 8924-8928, 1988 | 471 | 1988 |
Structure of the human MutSα DNA lesion recognition complex JJ Warren, TJ Pohlhaus, A Changela, RR Iyer, PL Modrich, LS Beese Molecular cell 26 (4), 579-592, 2007 | 406 | 2007 |
Error-prone replication of oxidatively damaged DNA by a high-fidelity DNA polymerase GW Hsu, M Ober, T Carell, LS Beese Nature 431 (7005), 217-221, 2004 | 388 | 2004 |
Processive DNA synthesis observed in a polymerase crystal suggests a mechanism for the prevention of frameshift mutations SJ Johnson, JS Taylor, LS Beese Proceedings of the National Academy of Sciences 100 (7), 3895-3900, 2003 | 353 | 2003 |
Structures of mismatch replication errors observed in a DNA polymerase SJ Johnson, LS Beese Cell 116 (6), 803-816, 2004 | 351 | 2004 |
Crystallographic analysis of CaaX prenyltransferases complexed with substrates defines rules of protein substrate selectivity TS Reid, KL Terry, PJ Casey, LS Beese Journal of molecular biology 343 (2), 417-433, 2004 | 346 | 2004 |
Thematic review series: lipid posttranslational modifications. Structural biology of protein farnesyltransferase and geranylgeranyltransferase type I KT Lane, LS Beese Journal of lipid research 47 (4), 681-699, 2006 | 289 | 2006 |
Crystal structure of farnesyl protein transferase complexed with a CaaX peptide and farnesyl diphosphate analogue CL Strickland, WT Windsor, R Syto, L Wang, R Bond, Z Wu, J Schwartz, ... Biochemistry 37 (47), 16601-16611, 1998 | 283 | 1998 |
Structural evidence for the rare tautomer hypothesis of spontaneous mutagenesis W Wang, HW Hellinga, LS Beese Proceedings of the National Academy of Sciences 108 (43), 17644-17648, 2011 | 279 | 2011 |
Crystal structures of the Klenow fragment of DNA polymerase I complexed with deoxynucleoside triphosphate and pyrophosphate LS Beese, JM Friedman, TA Steitz Biochemistry 32 (51), 14095-14101, 1993 | 267 | 1993 |
Reaction path of protein farnesyltransferase at atomic resolution SB Long, PJ Casey, LS Beese Nature 419 (6907), 645-650, 2002 | 247 | 2002 |
Cocrystal Structure of Protein Farnesyltransferase Complexed with a Farnesyl Diphosphate Substrate, SB Long, PJ Casey, LS Beese Biochemistry 37 (27), 9612-9618, 1998 | 237 | 1998 |
Crystal structure of a thermostable Bacillus DNA polymerase l large fragment at 2.1 Å resolution JR Kiefer, C Mao, CJ Hansen, SL Basehore, HH Hogrefe, JC Braman, ... Structure 5 (1), 95-108, 1997 | 230 | 1997 |
Structures of human exonuclease 1 DNA complexes suggest a unified mechanism for nuclease family J Orans, EA McSweeney, RR Iyer, MA Hast, HW Hellinga, P Modrich, ... Cell 145 (2), 212-223, 2011 | 199 | 2011 |
Electron microscopy of thin filaments decorated with a Ca2+-regulated myosin R Craig, AG Szent-Györgyi, L Beese, P Flicker, P Vibert, C Cohen Journal of Molecular Biology 140 (1), 35-55, 1980 | 186 | 1980 |